Elastic module and elastic cushion for furniture
By adopting an elastic module composed of a conical spring sheet and a flexible belt, combined with a removable structural design, the existing mattress is difficult to disassemble, store and clean, achieving higher comfort and stability.
Patent Information
- Application Number
- JP2022522915
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-10-15
- Filing Date
- 2020-10-16
- Publication Date
- 2025-05-07
- Estimated Expiration
- 2040-10-16
AI Technical Summary
The existing mattress is designed to achieve easy removal, easy storage and easy cleaning functions, while affecting comfort and stability.
An elastic module consisting of a conical spring sheet and a plurality of flexible belts is adopted. Through the connection between the flexible belt and the conical spring sheet, the independent compression and release of the elastic module is achieved, combining the removable spring sheet support structure and a detachable external cover layer.
It realizes easy removal and storage of the mattress, improves cleaning and comfort, while enhancing the stability and adjustability of the mattress.
Smart Images

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Abstract
Description
[Technical field]
[0001] The present invention relates to the furniture field, and in particular to an elastic module and an elastic cushion for use in furniture. [Background technology]
[0002] Large furniture such as beds are an essential part of people's lives. Most existing large furniture is not easy to dismantle or difficult to restore after dismantling. However, with the development of modern life, in order to meet the needs of population transition and outdoor play, furniture, especially beds, are required to be dismantled and assembled more and more frequently. During the process of transportation, dismantling and assembling beds is very difficult, so beds that are still usable are often discarded to reduce the burden of transportation.
[0003] A bed generally consists of a bed frame, an elastic cushion, and an outer cover, and the existing elastic cushion is generally a one-piece, non-removable, integral pad formed by multiple stacked layers and springs. The one-piece pad is large in size and difficult to remove and store.
[0004] The existing spring bed pad packaged in independent bags is intended to prevent two or more people sleeping on the bed at the same time from interfering with each other (for example, if the weight difference between individuals is large, it is inevitable that one of them will affect the other when turning over or moving). In this type of bed pad, each spring is packaged independently in a bag or tube made of nonwoven fabric or other materials. The spring bags are arranged in a pattern, and the outside of the arranged spring bag set is covered with the whole foam rubber by bonding, adhesion, etc., thereby forming a spring pad required for furniture pad or type of furniture pad. However, the spring bed pad packaged in independent bags is still a whole product, which is not removable and difficult to transport. And in the spring bed pad packaged in independent bags, the nonwoven fabrics for wrapping the springs packaged in the bags stick and pull each other, and when the bed pad is pressed, the springs packaged in the multiple bags cannot move up and down completely independently, which affects the comfort of the bed pad.
[0005] In addition, existing bed pads have the disadvantage of being difficult to clean. For normal bed pads, only the bed cover is removable, but the sponge part is not removable, making it difficult to clean. Although latex may have a certain degree of dust mite prevention effect, one bed pad may be used for several years, so the sponge part that is difficult to clean poses a great risk to hygiene.
[0006] Therefore, there is a need to improve the design of the elastic cushion so that it can be easily removed, moved and reassembled, can be stored in a compact space, is easy to clean, and has better comfort. Summary of the Invention [Problem to be solved by the invention]
[0007] In response to the problems existing in the prior art, the present invention provides an elastic module for use in an elastic cushion for furniture, and an elastic cushion including the elastic module. The elastic module of the present invention has at least the following advantages: the structure is simple, and it is easy to assemble together with a sponge pad or the like to form an elastic cushion, the elastic cushion thus formed is easy to remove, and the removed elastic module can be compressed or stacked and fitted in, greatly saving space during storage and transportation, the elastic module has a flexible connection part located outside the spring, so that the spring in the elastic module is difficult to wind with the spring in the adjacent elastic module or other parts, whether in a state where it is assembled into an elastic cushion or in a state where it is stacked and fitted in, and the elastic module has a base with a larger force-receiving area and more stability than an independent spring. Therefore, the elastic cushion is more stable when used; the initial pressure of the spring in the elastic module can be predetermined according to demand so that the elastic module has the required hardness, and elastic modules with different hardness can be installed at different parts of the elastic cushion according to demand; the elastic modules in the elastic cushion can truly achieve compression and release movements independent of each other, so that the elastic cushion of the present invention has better comfort than the existing spring bed pads packaged in bags; and the sponge part (sponge block and / or sponge pad) in the elastic cushion is removable, easy to clean, and more hygienic. The elastic cushion of the present invention can be used in furniture with elastic cushions, such as, but not limited to, bed pads, sofas, soft benches, etc. [Means for solving the problem]
[0008] In one form, the present invention provides an elastic module of an elastic cushion for making furniture, the elastic module comprising: a cone-shaped spring; and a plurality of flexible bands, each of the flexible bands comprising a band-shaped main body portion including a first end and a second end opposite to the first end along a longitudinal direction of the flexible band; a first hook located at the first end of the main body portion; and a second hook located at the second end of the main body portion, the first hook configured to be removably hung on a large diameter end of the cone-shaped spring, and the second hook configured to be removably hung on a small diameter end of the cone-shaped spring, and when the first hook and the second hook are each hung on the cone-shaped spring, the plurality of flexible bands are located outside the cone-shaped spring.
[0009] According to one preferred embodiment of the present invention, the lengths of the flexible bands are set so that the cone-shaped spring has a predetermined initial compression force when the first hook and the second hook are respectively hooked on the cone-shaped spring. A technical effect of the preferred embodiment is at least that the flexible band has an ideal initial compression force.
[0010] According to one preferred embodiment of the present invention, the flexible band is a one-piece molded integral member. The technical effect of this preferred embodiment is at least that the flexible band is low cost to manufacture and robust.
[0011] According to one preferred embodiment of the present invention, the flexible band is made of plastic. The technical effect of this preferred embodiment is at least that the flexible band is low in manufacturing cost and robust.
[0012] According to one preferred embodiment of the present invention, the body part of the flexible band is made of fabric, and the first hook and the second hook of the flexible band are made of metal or plastic. The technical effect of the preferred embodiment is at least that the flexible band can meet different demands in different parts by being made of different materials, for example, the body part of the flexible band can be more flexible, while the hook of the flexible band can be more rigid.
[0013] According to one preferred embodiment of the present invention, the width and / or thickness of the body portion of the flexible band decreases or increases along its length from the first end to the second end, the technical effect of which is at least that the shape of the flexible band can correspond to the shape of a spring.
[0014] According to one preferred embodiment of the present invention, at least a portion of the cone-shaped spring is a double wire spring portion, the technical effect of which is at least that the elastic module can have an ideal hardness or elastic modulus.
[0015] According to one preferred embodiment of the present invention, the double wire spring portion extends from the large diameter end of the cone-shaped spring to about 2 / 3 of the height of the cone-shaped spring. The technical effect of the preferred embodiment is at least that the elastic module can have an ideal hardness or elastic modulus.
[0016] In another aspect, the present invention further provides an elastic cushion for furniture, the elastic cushion including: a first sponge pad having a plurality of elastic modules as described in the above embodiments, each of the holes being configured to allow a portion of a corresponding elastic module to pass therethrough; a second sponge pad laid on one or more of the first sponge pads; and an outer cover covered by the second sponge pad to encase the elastic module, the first sponge pad and the second sponge pad.
[0017] According to one preferred embodiment of the present invention, the first sponge pad includes a plurality of separate parts arranged side by side, each separate part having different hardness and color. The technical effect of the preferred embodiment is at least that different hardness can be provided at different positions on the bed pad according to personal preference or ergonomics, and the sponge pad parts with different hardness are easy to distinguish.
[0018] According to a preferred embodiment of the present invention, the elastic cushion further comprises a fastening net disposed under the first sponge pad, the fastening net comprises a number of annular portions, each of which is configured so that a part of the corresponding elastic module can pass through it. The technical effect of this preferred embodiment is at least that the integral fastening net contributes to fixing the position and attitude of the elastic module, making the whole more stable and less likely to fall off.
[0019] According to one preferred embodiment of the present invention, when the fastening net is installed on the elastic module, the vertical distance of the annular part from the top end of the elastic module is about 1 / 3 of the total height of the elastic module. The technical effect of this preferred embodiment is at least that the connection between multiple elastic modules is more stable and less likely to tip over.
[0020] According to one preferred embodiment of the present invention, the elastic cushion further comprises a fastening net assembly, the fastening net assembly comprises a flexible strip with a plurality of holes and a plurality of cap members, each cap member comprises a cavity and a flange extending around the cavity, the size of the hole is larger than the size of the wall forming the cavity and smaller than the size of the flange, so that the wall can pass through the hole, the flange can join the part of the flexible strip around the hole, the flange is fixedly connected to the part of the flexible strip around the hole by adhesive or ultrasonic welding, and the cavity can accommodate the top of the elastic module. The technical effect of this preferred embodiment is at least that the fastening net assembly contributes to fixing the position and attitude of the elastic module, and the whole is more stable and less likely to fall off.
[0021] According to one preferred embodiment of the present invention, the elastic cushion further comprises a fastening net assembly, the fastening net assembly comprises: a flexible piece without holes; a plurality of upper cap members each having a first engaging feature located on one side of the flexible piece; and a plurality of lower cap members each having a second engaging feature located on the other side of the flexible piece, the first engaging feature of the upper cap member is configured to engage with the second engaging feature of the lower cap member, and the flexible piece is sandwiched between the upper cap member and the lower cap member, and the lower cap member is configured to receive the top of the elastic module. The technical effect of this preferred embodiment is at least that the fastening net assembly contributes to fixing the position and attitude of the elastic module, and the whole is more stable and less likely to fall off.
[0022] Of course, elements or configurations described in a single embodiment above can also be used alone or in combination in other embodiments. [Brief description of the drawings]
[0023] The dimensions and proportions in the drawings do not represent those of the actual product. The drawings are used for explanation only, and some unnecessary parts or configurations have been omitted for convenience of explanation.
[0024] [Figure 1A] 1 is a perspective view illustrating an exemplary elastic module according to one preferred embodiment of the present invention; [Figure 1B] 1B exemplarily illustrates a spring of the elastic module in FIG. 1A. [Figure 1C] 1B exemplarily illustrates a spring supporter of the elastic module in FIG. 1A. [Figure 1D] FIG. 1B is an exemplary exploded view of the elastic module in FIG. 1A. [Figure 1E] FIG. 1B is a front view illustrating an example of the elastic module in FIG. 1A. [Figure 1F] FIG. 1B is a bottom view illustrating an example of the elastic module in FIG. 1A. [Diagram 2] 1 is an exemplary perspective view of a mounting frame according to one preferred embodiment of the present invention; [Figure 3A] 3 is a front view exemplarily showing the mounting frame in FIG. 2 in an unfolded state. FIG. [Figure 3B] 3 is a bottom view exemplarily showing the mounting frame in FIG. 2 in an unfolded state. FIG. [Figure 3C] 3 is a side view exemplarily showing the mounting frame in FIG. 2 in a folded state. FIG. [Figure 3D] 3 is a front view exemplarily showing the mounting frame in FIG. 2 in a folded state. FIG. [Figure 4A] 1B is a schematic diagram showing an example of the elastic module in FIG. 1A assembled to the mounting frame in FIG. 2; [Figure 4B] FIG. 4B is a partially enlarged view illustratively showing part I in FIG. 4A. [Figure 4C] 1B is a partial front view showing an example of the elastic module in FIG. 1A assembled to the mounting frame in FIG. 2. [Figure 4D] 3 is a perspective view showing an example of the elastic module in FIG. 1A assembled to the mounting frame in FIG. 2; [Figure 5A] FIG. 13 is a perspective view illustrating an exemplary elastic module according to another preferred embodiment of the present invention. [Figure 5B] 5B exemplarily illustrates a spring supporter of the elastic module in FIG. 5A. [Figure 5C] FIG. 5B is an exemplary exploded view of the elastic module in FIG. 5A. [Figure 5D] 5B is a bottom view exemplarily illustrating the elastic module in FIG. 5A. FIG. [Figure 5E] 5B is a partial front view exemplarily showing the elastic module in FIG. 5A assembled to the mounting frame in FIG. 2. FIG. [Figure 5F] 5B exemplarily illustrates how the flexible connect tab of the elastic module in FIG. 5A may be connected to the flexible connect tab of an adjacent elastic module. [Figure 5G] 5B exemplarily illustrates a flexible connect tab of the elastic module in FIG. 5A. [Figure 5H] 5B exemplarily illustrates how the flexible connect tab of the elastic module in FIG. 5A is connected to the flexible connect tab of the adjacent elastic module when the elastic module is attached to the mounting frame. [Figure 6] 1B shows an example of how a plurality of the elastic modules of FIG. 1A may be stacked and fitted together. [Figure 7A] 1 shows an exemplary elastic module with a screw. [Figure 7B] 7B is an exemplary diagram showing a state in which a plurality of the elastic modules of FIG. 7A are stacked and fitted together. [Figure 7C] 10 illustrates an exemplary resilient module with a snap-engagement structure. [Figure 7D] 7D exemplarily illustrates how a plurality of the elastic modules of FIG. 7C may be stacked and fitted together. [Figure 7E] FIG. 7E is a partially enlarged view exemplarily showing part II in FIG. 7D. [Figure 8]13 is a perspective view exemplarily illustrating a state in which an elastic module according to yet another preferred embodiment of the present invention is attached to a mounting frame according to another preferred embodiment of the present invention; FIG. [Figure 9A] 9 is a partial perspective view exemplarily showing a longitudinally extending profile of the mounting frame in FIG. 8. FIG. [Figure 9B] 9 is a perspective view showing an example of a flexible connector of the mounting frame in FIG. 8. FIG. [Figure 9C] 9 is a partial front view exemplarily showing the mounting frame in FIG. 8 in an expanded state. FIG. [Figure 9D] 9 is a front view exemplarily showing the mounting frame in FIG. 8 in a folded state. [Figure 10A] FIG. 9 is a perspective view illustrating an example of the elastic module in FIG. 8. [Figure 10B] 9 is a front view exemplarily illustrating the elastic module in FIG. 8. [Figure 10C] 10B exemplarily illustrates a first half of the spring supporter of the elastic module in FIG. 10A. [Figure 10D] 10B exemplarily illustrates a second half of the spring supporter of the elastic module in FIG. 10A. [Figure 11A] 9 is a partial front view exemplarily illustrating the elastic module and the mounting frame in FIG. 8 in a first assembled state. [Figure 11B] 9 is a partial front view exemplarily illustrating the elastic module and the mounting frame in FIG. 8 in a second assembled state. [Figure 12A] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 12B] 12B is a perspective view exemplarily illustrating a spring supporter of the elastic module in FIG. 12A. [Figure 12C] 12B is a front view exemplarily showing the spring supporter in FIG. 12A. FIG. [Figure 12D] 12B is a plan view exemplarily showing the spring supporter in FIG. 12A. FIG. [Figure 13A] 12B is a schematic diagram illustrating an example of the elastic module in FIG. 12A assembled to the mounting frame; FIG. [Figure 13B] FIG. 13B is a partially enlarged view illustratively showing part III in FIG. 13A. [Figure 13C] 13B is a partial front view exemplarily showing the elastic module in FIG. 13A assembled to the mounting frame. FIG. [Figure 13D] FIG. 13D is a partially enlarged view exemplarily showing a portion IV in FIG. 13C. [Figure 14A] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 14B] FIG. 14B is an exemplary exploded view of the elastic module in FIG. 14A. [Figure 14C] FIG. 14B is a front view illustrating an example of the elastic module in FIG. 14A. [Figure 14D] FIG. 14B is an exemplary side view of the elastic module in FIG. 14A. [Figure 14E] FIG. 14B is a plan view exemplarily illustrating the elastic module in FIG. 14A. [Figure 15] 14B exemplarily illustrates how a plurality of the elastic modules of FIG. 14A may be stacked and fitted together. [Figure 16] 14B is a schematic diagram illustrating an example of the elastic module in FIG. 14A being assembled to a mounting frame of the elastic cushion. FIG. [Figure 17A] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 17B] 17B is an exemplary exploded view of the elastic module in FIG. 17A. [Figure 17C] 17B is a front view exemplarily illustrating the elastic module in FIG. 17A. [Figure 17D] 17B is an exemplary side view of the elastic module in FIG. 17A. FIG. [Figure 17E] 17B is a plan view exemplarily illustrating the elastic module in FIG. 17A. FIG. [Figure 18] 17B is an exemplary diagram showing how a plurality of the elastic modules of FIG. 17A may be stacked and fitted together. [Figure 19]17B is a schematic diagram exemplarily showing the elastic module in FIG. 17A being assembled to the mounting frame of the elastic cushion; FIG. [Figure 20A] 1 illustrates an exemplary resilient cushion according to one preferred embodiment of the present invention. [Figure 20B] 20B exemplarily illustrates the internal structure of the elastic cushion in FIG. 20A. [Figure 20C] 20B is an exploded view exemplarily illustrating the elastic cushion in FIG. 20A. [Figure 21A] 13 illustrates an exemplary integral fastening mesh for use in a resilient module in a resilient cushion according to one preferred embodiment of the present invention. [Figure 21B] 21B is an exemplary diagram showing the integral fastening net in FIG. 21A when covered with an elastic module. [Figure 22A] 13 illustrates an exemplary integral fastening net for use with elastic modules in a resilient cushion according to another preferred embodiment of the present invention; [Figure 22B] 22B is a schematic diagram showing an example of the periphery of the integrated fastening net in FIG. 22A being folded. FIG. [Figure 22C] 22B is an exemplary diagram showing the state when the integrated fastening net in FIG. 22A is hung on a mounting frame while covering the elastic module. [Figure 22D] FIG. 22D is a partially enlarged view illustratively showing a portion V in FIG. 22C. [Figure 23A] 1 illustrates an exemplary top structure of a sponge cover used in an elastic cushion according to one preferred embodiment of the present invention. [Figure 23B] 23B is a cross-sectional view illustrating an example of the top structure of the sponge cover in FIG. 23A. [Figure 24A] 1 shows an example of a filled sponge strip used in a resilient cushion according to one preferred embodiment of the present invention. [Figure 24B] 24B is an exploded view showing an example of an elastic cushion having a filled sponge strip shown in FIG. 24A. [Figure 24C] An example of an integral fastening net is shown in FIG. 24B. [Figure 25A] 1 illustrates an exemplary gap-filling elastic module for use in an elastic module in an elastic cushion according to one preferred embodiment of the present invention. [Figure 25B] 25B is an exemplary exploded view of an elastic cushion including the gap-filling elastic module shown in FIG. 25A. [Figure 25C] An example of an integral fastening net is shown in FIG. 25B. [Figure 25D] 25B is an exemplary illustration of how the gap-filling elastic module of FIG. 25A may be assembled into the integral fastening mesh of FIG. 25C. [Figure 25E] 25B is an exemplary perspective view of the gap-filling elastic module in FIG. 25A. [Figure 26A] 13 shows an exemplary elastic module with restricting holes. [Figure 26B] 13 shows an exemplary elastic module with restricting holes. [Figure 27A] 13 shows an exemplary limiting device for limiting the elastic modulus. [Figure 27B] 13 shows an exemplary limiting device for limiting the elastic modulus. [Figure 27C] 13 shows an exemplary limiting device for limiting the elastic modulus. [Figure 27D] 27A to 27C are stacked and fitted together as an example. [Figure 27E] 27A to 27C are illustrative views of the restrictor when installed on an elastic module. [Figure 28A] 1 shows an exemplary pivot fastening device for the elastic module. [Figure 28B] 1 shows an exemplary pivot fastening device for the elastic module. [Figure 28C] 1 shows an exemplary pivot fastening device for the elastic module. [Figure 28D] 28A-28C show an example of how two elastic modules may be secured together by the pivot fastening device shown in FIG. [Figure 28E]28A-28C show an example of how two elastic modules may be secured together by the pivot fastening device shown in FIG. [Figure 28F] FIG. 28E is an enlarged view of a portion of FIG. 28E. [Figure 29A] 13 illustrates an exemplary embodiment of a locking structure for an elastic module. [Figure 29B] 13 illustrates an exemplary embodiment of a locking structure for an elastic module. [Figure 29C] 29C exemplarily illustrates how multiple elastic modules are locked to one another by the locking structure shown in FIG. 29A and FIG. 29B. [Figure 30A] 13 illustrates an exemplary embodiment of a locking structure for an elastic module. [Figure 30B] 13 illustrates an exemplary embodiment of a locking structure for an elastic module. [Figure 30C] 30C exemplarily illustrates how multiple elastic modules are combined using the locking structure shown in FIG. 30A and FIG. 30B. [Figure 30D] 13 illustrates, by way of example, yet another embodiment of a locking structure for an elastic module; [Figure 30E] 30D show two exemplary states when multiple elastic modules are combined using the lock structure shown in FIG. 30D. [Figure 30F] 30D show two exemplary states when multiple elastic modules are combined using the lock structure shown in FIG. 30D. [Figure 31A] 1 illustrates an exemplary embodiment of a resilient module with a T-shaped connection. [Figure 31B] 1 illustrates an exemplary embodiment of a resilient module with a T-shaped connection. [Figure 31C] 31C is an exemplary diagram showing how two elastic modules having T-shaped connectors shown in FIGS. 31A and 31B are connected by a U-shaped connector. [Figure 31D]31C shows an example of how multiple rows of elastic modules having T-shaped connectors as shown in FIG. 31A and FIG. 31B may be connected by a U-shaped connector as shown in FIG. 31C. [Figure 31E] 10 exemplarily illustrates another embodiment of a resilient module with a T-shaped connection. [Fig. 31F] 31E shows an exemplary U-shaped connector for connecting the elastic module shown in FIG. 31E. [Figure 31G] 31C is an exemplary diagram showing how a plurality of elastic modules shown in FIG. 31E are connected by an U-shaped connector shown in FIG. 31F. [Fig. 31H] 31C is an exemplary diagram showing how a plurality of elastic modules shown in FIG. 31E are connected by an U-shaped connector shown in FIG. 31F. [Fig. 31I] 1 illustrates an exemplary embodiment of a resilient module with wedge joints. [Figure 31J] 1 illustrates an exemplary embodiment of a resilient module with wedge joints. [Figure 31K] 31C is an exemplary diagram showing how the two elastic modules shown in FIG. 31I and FIG. 31J are joined together. [Figure 31L] 31E to 31H are combined using the elastic modules and U-shaped connectors to exemplarily show elastic cushions of different sizes. [Figure 31M] 31E to 31H are combined using the elastic modules and U-shaped connectors to exemplarily show elastic cushions of different sizes. [Figure 31N] 31A to 31K and the U-shaped connector shown in FIG. 31F are used to combine elastic cushions of different sizes, as an example. [Figure 31P] 31A to 31K and the U-shaped connector shown in FIG. 31F are used to combine elastic cushions of different sizes, as an example. [Figure 32A]1 illustrates an exemplary resilient module engageable with a base and end cover according to one preferred embodiment of the present invention. [Figure 32B] 32B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 32A. [Figure 32C] 32B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 32A. [Fig. 32D] 32B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 32A. [Figure 32E] 32B are a perspective view and a plan view, respectively, showing an example of an end cover of the elastic module shown in FIG. 32A. [Fig. 32F] 32B are a perspective view and a plan view, respectively, showing an example of an end cover of the elastic module shown in FIG. 32A. [Fig. 32G] 32B are perspective and plan views, respectively, illustrating an example of the elastic module base and end cover engaged as shown in FIG. 32A. [Fig. 32H] 32B are perspective and plan views, respectively, illustrating an example of the elastic module base and end cover engaged as shown in FIG. 32A. [Fig. 32I] 32C is an exemplary diagram showing a state in which a plurality of elastic modules in the compressed configuration shown in FIG. 32G and FIG. 32H are stacked. [Fig. 32J] 10A and 10B show exemplary resilient modules engageable with a base and an end cover, respectively, in accordance with another preferred embodiment of the present invention. [Figure 32K] 10A and 10B show exemplary resilient modules engageable with a base and an end cover, respectively, in accordance with another preferred embodiment of the present invention. [Figure 32L] 10A and 10B show exemplary resilient modules engageable with a base and an end cover, respectively, in accordance with another preferred embodiment of the present invention. [Figure 32M] 10A and 10B show exemplary resilient modules engageable with a base and an end cover, respectively, in accordance with another preferred embodiment of the present invention. [Figure 33A]13 illustrates an exemplary resilient module engageable with a base and an end cover in accordance with another preferred embodiment of the present invention; [Figure 33B] FIG. 33B is an exemplary exploded view of the elastic module shown in FIG. 33A. [Figure 33C] 33B is a perspective view showing an example of a spring package in the elastic module shown in FIG. 33A. [Figure 33D] 33B is an exemplary diagram showing the state when the base and end cover of the elastic module shown in FIG. 33A are engaged; [Figure 33E] 33B exemplarily illustrates a base of the elastic module shown in FIG. 33A. [Figure 33F] 33B exemplarily illustrates an end cover of the elastic module shown in FIG. 33A. [Figure 33G] 33B is an exemplary diagram showing the state when the base and end cover of the elastic module shown in FIG. 33A are engaged; [Fig. 33H] 13 illustrates an exemplary resilient module engageable with a base and an end cover in accordance with yet another preferred embodiment of the present invention; [Figure 33I] 33H shows an exemplary state when the base and end cover of the elastic module shown in FIG. 33H are engaged. [Figure 33J] 33B is an exemplary diagram showing how a plurality of the elastic modules shown in FIG. 33A may be connected by a flexible underpad. [Figure 33K] 33H shows an example of how a plurality of elastic modules shown in FIG. 33H may be connected by a flexible underpad. [Figure 33L] FIG. 33C exemplarily illustrates how two rows of elastic modules as shown in FIG. 33H may be connected by a flexible underpad. [Figure 33M] FIG. 33L shows an exemplary folded state of an underpad having two rows of elastic modules attached thereto. [Figure 33N] FIG. 33L shows an exemplary folded state of an underpad having two rows of elastic modules attached thereto. [Figure 33P] 33C is an exemplary illustration of a resilient cushion comprising the resilient module and flexible underpad shown in FIG. 33L. [Figure 34A] 13 illustrates an exemplary resilient module engageable with a base and an end cover in accordance with yet another preferred embodiment of the present invention; [Figure 34B] 34B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 34A. [Figure 34C] 34B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 34A. [Fig. 34D] 34B are a perspective view, a plan view, and a side view, respectively, showing an example of the base of the elastic module shown in FIG. 34A. [Figure 34E] 34B are a perspective view and a plan view, respectively, showing an example of an end cover of the elastic module shown in FIG. 34A. [Fig. 34F] 34B are a perspective view and a plan view, respectively, showing an example of an end cover of the elastic module shown in FIG. 34A. [Figure 34G] 33B is an exemplary diagram showing the state when the base and end cover of the elastic module shown in FIG. 33A are engaged; [Figure 35A] 1A and 1B are a perspective view and a side view, respectively, illustrating an elastic module according to another preferred embodiment of the present invention. [Figure 35B] 1A and 1B are a perspective view and a side view, respectively, illustrating an elastic module according to another preferred embodiment of the present invention. [Figure 35C] 1A and 1B are perspective and side views, respectively, illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 35D] 1A and 1B are perspective and side views, respectively, illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 35E] 35A to 35D are shown in an exemplary manner when fitted together. [Fig. 35F]1A and 1B are an exploded view and a cross-sectional view, respectively, illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 35G] 1A and 1B are an exploded view and a cross-sectional view, respectively, illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Fig. 35H] FIG. 35G is an enlarged view of a portion of FIG. [Fig. 35I] 35C shows an example of how a plurality of elastic modules shown in FIG. 35F and FIG. 35G may be fitted together. [Fig. 35J] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 35K] 35J shows an exemplary cone-shaped spring in the elastic module shown in FIG. [Figure 36A] 1A and 1B are a perspective view and a transparent view, respectively, illustrating an elastic module according to yet another preferred embodiment of the present invention. [Figure 36B] 1A and 1B are a perspective view and a transparent view, respectively, illustrating an elastic module according to yet another preferred embodiment of the present invention. [Figure 36C] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 36D] 36D exemplarily illustrates the elastic module shown in FIG. 36C when compressed and stored in a storage box. [Figure 36E] 36D is a diagram showing an example of how the storage boxes shown in FIG. 36D may be stacked. [Figure 37] FIG. 13 is a perspective view illustrating an exemplary elastic module according to yet another preferred embodiment of the present invention. [Figure 38A] 1A and 1B are an exploded perspective view and a cross-sectional perspective view, respectively, illustrating an elastic module (spring package) according to yet another preferred embodiment of the present invention. [Figure 38B] 1A and 1B are an exploded perspective view and a cross-sectional perspective view, respectively, illustrating an elastic module (spring package) according to yet another preferred embodiment of the present invention. [Figure 39A]38A and 38B are illustrative diagrams showing how the spring packages shown in FIGS. 38A and 38B are fixed to a base in different fixing configurations, respectively. [Figure 39B] 38A and 38B are illustrative diagrams showing how the spring packages shown in FIGS. 38A and 38B are fixed to a base in different fixing configurations, respectively. [Figure 39C] 39C exemplarily illustrates a state in which a plurality of elastic modules shown in FIG. 39A or FIG. 39B are fitted together. [Figure 40A] 10A-10C are illustrative diagrams showing different embodiments of non-cone shaped springs for use in the elastic module of the present invention; [Figure 40B] 10A-10C are illustrative diagrams showing different embodiments of non-cone shaped springs for use in the elastic module of the present invention; [Figure 40C] 10A-10C are illustrative diagrams showing different embodiments of non-cone shaped springs for use in the elastic module of the present invention; [Figure 40D] 40C exemplarily illustrates an elastic module having a spring as shown in FIG. 40B. [Figure 40E] 10 illustrates, by way of example, another embodiment of a cone-shaped spring for use in the elastic module of the present invention; [Diagram 40F] FIG. 40E exemplarily illustrates an elastic module with a cone-shaped spring. [Figure 40G] 10 illustrates, by way of example, another embodiment of a cone-shaped spring for use in the elastic module of the present invention; [Figure 40H] 40G shows an exemplary elastic module with a cone-shaped spring. [Figure 41A] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 41B] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 41C] 41C exemplarily shows a sponge pad in the elastic cushion shown in FIG. 41B. [Figure 41D]13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 42A] 13 illustrates an exemplary fastening netting assembly for use in a resilient cushion in accordance with yet another preferred embodiment of the present invention; [Figure 42B] FIG. 42B is an exemplary partial cross-sectional view of the anchoring net assembly shown in FIG. 42A. [Figure 42C] FIG. 13 is an exemplary exploded view of a fastening net assembly for use in a resilient cushion according to yet another preferred embodiment of the present invention. [Fig.42D] FIG. 42D is an exemplary partial cross-sectional view of the anchoring net assembly shown in FIG. 42C. [Figure 42E] FIG. 42D is an exemplary partial cross-sectional view of the anchoring net assembly shown in FIG. 42C. [Fig.42F] FIG. 42D is an exemplary partial cross-sectional view of the anchoring net assembly shown in FIG. 42C. [Fig.42G] FIG. 42D is an exemplary partial cross-sectional view of the anchoring net assembly shown in FIG. 42C. [Fig. 42H] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Fig.42I] FIG. 42C is a cross-sectional view exemplarily illustrating the elastic cushion shown in FIG. 42H. [Fig.42J] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 42K] 42J is a cross-sectional view showing an example of the elastic cushion shown in FIG. 42J. [Figure 42L] 42H and 42J show exemplary spring pads in the elastic cushions shown in FIG. [Figure 42M] FIG. 42C is a partial cross-sectional view exemplarily showing the spring pad shown in FIG. 42L. [Figure 42N] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 42P] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 42Q]42P exemplarily illustrates a stored state of the elastic cushion illustrated in FIG. [Figure 43A] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 43B] 13 illustrates, by way of example, a resilient cushion according to yet another preferred embodiment of the present invention; [Figure 43C] 43A and 43B show an example of an outer cover having a compartment for the elastic cushion shown in FIG. 43A and FIG. 43B. [Fig. 43D] 43A and 43B are illustrative views of the bottom cloth in the elastic cushion, in which the curtain of the bottom cloth is in an open state; [Figure 43E] 43A and 43B show an example of the bottom cloth in the elastic cushion, in which the curtain of the bottom cloth is in a closed state; [Figure 43F] 13A-13C are exemplary illustrations of outer covers with compartments of different shapes / sizes according to further embodiments of the present invention; [Figure 43G] 13A-13C are exemplary illustrations of outer covers with compartments of different shapes / sizes according to further embodiments of the present invention; [Fig. 43H] 13A-13C are exemplary illustrations of outer covers with compartments of different shapes / sizes according to further embodiments of the present invention; [Figure 43I] 1 shows an exemplary outer cover with honeycomb-shaped (hexagonal) compartments according to one preferred embodiment of the present invention. [Figure 44A] 1 illustrates an exemplary sponge block according to another embodiment of the present invention; [Figure 44B] 1 illustrates an exemplary sponge block according to another embodiment of the present invention; [Figure 44C] 1 illustrates an exemplary sponge block according to another embodiment of the present invention; [Fig.44D] 1 illustrates an exemplary sponge block according to another embodiment of the present invention; [Figure 44E] 1 illustrates an exemplary sponge block according to another embodiment of the present invention; [Figure 45A]1 illustrates an exemplary sponge block according to one preferred embodiment of the present invention. [Figure 45B] 45B is an exemplary illustration of the sponge block shown in FIG. 45A in a folded / compressed state. [Figure 45C] 13 shows an example of how a sponge block in a folded / compressed state is stored in a storage cup. [Figure 46A] 45B is an exemplary diagram showing a state in which a plurality of sponge blocks shown in FIG. 45A are stored in a rod-shaped storage bag. [Figure 46B] Each of these figures exemplifies a method for packaging a rod-shaped storage bag containing a plurality of sponge blocks shown in FIG. 46A. [Figure 46C] Each of these figures exemplifies a method for packaging a rod-shaped storage bag containing a plurality of sponge blocks shown in FIG. 46A. [Figure 47A] 4 illustrates, by way of example, another method for packaging a sponge block according to the present invention. [Figure 47B] 4 illustrates, by way of example, another method for packaging a sponge block according to the present invention. [Figure 47C] 4 illustrates, by way of example, another method for packaging a sponge block according to the present invention. [Figure 48A] 1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Figure 48B] 1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Figure 48C] 1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Figure 48D] 1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Figure 48E] 1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Fig.48F]1 illustrates an exemplary sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. [Figure 49A] 1 illustrates an exemplary outer cover for use with a resilient cushion according to one preferred embodiment of the present invention. [Figure 49B] 1 illustrates an exemplary outer cover for use with a resilient cushion according to one preferred embodiment of the present invention. [Figure 50A] 13 illustrates an exemplary outer cover for use with a resilient cushion according to another preferred embodiment of the present invention; [Figure 50B] 13 illustrates an exemplary outer cover for use with a resilient cushion according to another preferred embodiment of the present invention; [Figure 51A] 49A, 49B and 50A, 50B show exemplary configurations of different parts of the outer cover, respectively. [Figure 51B] 49A, 49B and 50A, 50B show exemplary configurations of different parts of the outer cover, respectively. [Figure 51C] 49A, 49B and 50A, 50B show exemplary configurations of different parts of the outer cover, respectively. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0025] The elastic module and the elastic cushion of the present invention will now be described in detail with reference to the drawings. What is described here is only a preferred embodiment of the present invention, and those skilled in the art may imagine other embodiments that can realize the present invention based on the preferred embodiment, and the other embodiments are also included in the scope of the present invention.
[0026] 1A to 1F exemplarily show an elastic module 100 according to a first preferred embodiment of the present invention. As shown in the drawings, the elastic module 100 includes a spring support 120 and a cone-shaped spring 110 installed in the spring support 120. The spring support 120 is for removably mounting the elastic module 100 to a foldable mounting frame. The spring support 120 includes a base 121, an end cover 122, and a plurality of flexible bands 123. In one preferred embodiment, the number of the flexible bands 123 is four and is uniformly distributed around the outer periphery of the spring support 120. Of course, the number of the flexible bands 123 may be two, six, or another number. The base 121 includes a spring mounting seat, has an opening 1211 at the center of the spring mounting seat, and includes a spring fixing portion for fixing the cone-shaped spring 110. The base 121 optionally further includes a module mounting portion for removably mounting the elastic module to a mounting frame. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing portion, and the small diameter end of the cone-shaped spring 110 abuts against the end cover 122. In each embodiment of the present invention, the spring fixing portion may be a hook-shaped member or a groove, and in this embodiment, the spring fixing portion is a plurality of hook-shaped members 1212 evenly arranged around the inner circumference of the opening 1211. The flexible bands 123 are located outside the cone-shaped springs 110, and both ends of each flexible band 123 are fixedly connected to the base 121 and the end cover 122, respectively. The springs 110 may be provided with a predetermined initial pressure so that the elastic module has an ideal stiffness after being attached to the spring supporter 120. With the support of the springs, the elastic module 100 has an overall truncated cone shape.
[0027] Preferably, the spring support 120 is a one-piece molded integral spring support, but it may of course be an assembly in which multiple members are assembled.
[0028] As described above, the spring supporter 120 is approximately truncated cone in shape, which allows the end cover 122 of the elastic module 100 to enter the interior of the other elastic module through the opening 1211 in the base 121 of the other elastic module to form an engagement, as shown in FIG. 6.
[0029] In order to form a more secure fit, preferably, the top of the base 121 is provided with a ring-shaped wall extending around the opening 1211, and a screw 124 is installed on the outside of the ring-shaped wall (shown in FIG. 7A). When multiple elastic modules 100 form a fit, the bottom wall of the slide track 1213 of one of the elastic modules 100 can be rotated to screw into between the screw 124 of the other elastic module 100 and the top of the base 121, thereby forming a secure fit (shown in FIG. 7B). Alternatively or additionally, the outer periphery of the base 121 is provided with one or more snap engagement portions 125 extending upward and one or more snap engagement recesses 126 located below the snap engagement portions 125 (shown in FIG. 7C), so that when multiple elastic modules 100 form an engagement, the snap engagement portions 125 of the elastic modules located below can engage with the corresponding snap engagement recesses 126 of the elastic modules located above, thereby forming a firm engagement (shown in FIGS. 7D and 7E).
[0030] Preferably, the module mounting portion is two parallel slide tracks 1213 installed at the bottom of the base 121, and the base 121 is slidably mounted on the slide rails of the foldable mounting frame by the slide tracks 1213, and the slide tracks 1213 are hook-shaped portions that can be hooked onto the slide rails of the mounting frame to prevent the elastic module 100 from separating from the mounting frame.
[0031] Preferably, the opening 1211 is a circular opening, and an arc portion that matches the circular arc of the opening 1211 is formed in the middle of each slide track 1213, as shown in part A in Fig. 1F, so as not to interfere with stacking and fitting of multiple elastic modules. Alternatively, each slide track 1211 may be a divided slide track that is cut in the middle.
[0032] 2 and 3A to 3D exemplarily show a mounting frame 400 according to a first preferred embodiment of the present invention. As shown in the drawings, the mounting frame 400 includes two side frames 410 located on both sides of the mounting frame 400, a plurality of center frames 420 located between the two side frames 410, and a plurality of connectors 430 rotatably connecting the side frames 410 and the center frame 420. Since the side frames 410 and the center frame 420 can rotate around the connectors 430, the mounting frame 400 can be folded, and the mounting frame 400 in the folded state is shown in FIGS. 3C and 3D.
[0033] Preferably, the side frame 410, the center frame 420 and the connector 430 are all made of metal, more preferably, the side frame 410 and the center frame 420 are made of rebar by bending and welding, and the connector 430 is made of a metal strip by rolling. And, as shown in Fig. 2, the side frame 410 and the center frame 420 are all closed frames.
[0034] As shown in FIG. 2, the side frame 410 has a vertical extension portion 411 extending in its length direction and a plurality of horizontal protrusions 412 extending to one side perpendicular to the vertical extension portion, the center frame 420 has a vertical extension portion 421 extending in its length direction and a plurality of horizontal protrusions 422 extending to both sides perpendicular to the vertical extension portion, and the connector 430 rotatably connects the corresponding horizontal protrusions of two adjacent frames, thereby enabling the mounting frame 400 to be foldable.
[0035] As described above, the reinforcing bar at the vertical extension 411 can be slidably connected to the slide track 1213 of the base 121, so that the base 121 of the elastic module 100 is configured to be slidably mounted on the mounting frame 400 along the vertical extensions 411, 421 of the mounting frame. That is, the vertical extensions 411, 421 are used as slide rails that cooperate with the slide track 1213 of the base 121. Preferably, the middle parts 413, 423 of the reinforcing bar at the vertical ends of the side frame 410 and the center frame 420 protrude along a direction perpendicular to the plane where the vertical extensions and the horizontal protrusions are located (the direction shown in the figure is downward) so that the slide track of the elastic module can easily slide along the vertical extensions 411, 421 by translating through the ends of the frames.
[0036] In one preferred embodiment of the present invention, two types of side frames and two types of center frames with different lengths may be provided to better facilitate folding of the mounting frame. For example, the side frame 410 may include a first side frame 410A with a long length and a second side frame 410B with a short length, and the center frame 420 may include a plurality of first center frames 420A and a plurality of second center frames 420B arranged at intervals from each other, similarly, the longitudinal length of the first center frame 420A is slightly longer than that of the second center frame 420B. The purpose of providing frame members with different lengths is that when folding the frame, the protruding parts 413, 423 at the ends of the adjacent frame members do not interfere with each other, so that folding can be easily achieved. Figures 3C and 3D show the folded state of the frame 400 with frame members with different lengths, in which the end A of the longer frame member and the end B of the shorter frame member are offset from each other and do not interfere with each other.
[0037] 4A to 4D exemplarily show a state in which the elastic module 100 according to the first preferred embodiment of the present invention is mounted on the mounting frame 400 according to the first preferred embodiment of the present invention. As shown in the drawings, the slide track 1213 of the elastic module 100 can be mounted on the vertical extensions 411 and 421 of the frame member by sliding through the recesses formed by the protrusions 413 and 423.
[0038] 5A to 5E are illustrative views of an elastic module 200 according to a second preferred embodiment of the present invention and how it is attached to a mounting frame 400. As shown in the drawings, the elastic module 200 includes a spring supporter 220 and a cone-shaped spring 110 installed in the spring supporter 220. The spring supporter 220 is for removably mounting the elastic module 200 to a foldable mounting frame 400. The spring supporter 220 includes a base 221, an end cover 222, and a plurality of flexible bands 223. In one preferred embodiment, the number of the flexible bands 223 is four and is uniformly distributed around the outer periphery of the spring supporter 220. The base 221 includes a spring mounting seat, has an opening 2211 at the center of the spring mounting seat, and includes a spring fixing portion for fixing the cone-shaped spring 110. The base 221 further includes a module mounting portion for removably mounting the elastic module to the mounting frame. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing part, and the small diameter end of the cone-shaped spring 110 abuts against the end cover 222. In this preferred embodiment, the spring fixing part is a plurality of hook-shaped members 2212 evenly arranged around the inner circumference of the opening 2211. The flexible bands 223 are located on the outer side of the cone-shaped spring 110, and both ends of each flexible band 223 are fixedly connected to the base 221 and the end cover 222, respectively. The spring 110 may have a predetermined initial pressure so that the elastic module has an ideal stiffness after being attached to the spring supporter 120. Due to the support of the spring, the elastic module 200 has a truncated cone shape as a whole. The difference from the spring supporter 120 is that the end cover 222 of the spring supporter 220 has a circular opening 224 at the center, that is, the end cover 222 is an annular end cover.
[0039] Preferably, the spring supporter 220 is a one-piece molded integral spring supporter, but it may of course be an assembly in which multiple members are assembled.
[0040] As described above, the spring supporter 220 is generally frustoconical, so that the end cover 222 of the elastic module 200 can enter the inside of the other elastic module through the opening 2211 of the base 221 of the other elastic module to form a fit. To form a stronger fit, the screw and snap-fit structure provided on the base 121 of the elastic module 100 can be applied to the base 221 of the elastic module 200 as well.
[0041] Preferably, the module mounting portion of the elastic module 200 is two parallel slide tracks 2213 installed at the bottom of the base 121, and the slide tracks 2213 are outward-facing slide tracks whose opening directions are opposite to each other, unlike the inward-facing slide track 1213 whose opening directions are opposite to each other. The base 221 can be slidably mounted on the vertical extensions 411 and 421 of the frame members, which are slide rails of the mounting frame 400, by the slide tracks 2213. In this embodiment, as shown in FIG. 5D, each slide track 2213 is a split slide track that is cut in the middle. And, similar to the slide track 1213, the slide track 2213 is a hook-shaped portion, and can be hooked on the slide rail of the mounting frame to prevent the elastic module 200 from being separated from the mounting frame.
[0042] 5E to 5G show an example of a flexible connect tab structure applicable to the elastic module 200. This flexible connect tab structure is used to form a connection relationship between multiple elastic modules mounted on a mounting frame, which makes it difficult for a single elastic module to collapse and come off, and makes it more difficult for the springs of the multiple elastic modules to be wound around each other. As shown in the drawings, a flexible connect tab 225 may be integrally formed on the outer side of the flexible band 223. When multiple elastic modules 200 are mounted on the mounting frame, the flexible connect tab 225 of one of the elastic modules can be detachably connected to the corresponding flexible connect tab 225 of the other adjacent elastic module. Preferably, the flexible connect tab 225 comprises a neck 2251 and a T-shaped groove 2252, the dimensions of which are set such that one flexible connect tab of two adjacent flexible connect tabs 225 can be removably engaged with the T-shaped groove 2252 of the other flexible connect tab by means of said neck 2251. More preferably, the vertical distance of the flexible connect tab 225 from the end cover 222 is about ⅓ of the overall height of the elastic module 200.
[0043] FIG. 5H exemplarily illustrates a state in which multiple elastic modules 200 attached to the mounting frame are connected to each other by flexible connect tabs 225.
[0044] As will be appreciated by those skilled in the art, the flexible connect tab structure described above can be similarly applied to the flexible bands of the elastic modules of other preferred embodiments of the present invention, such as the elastic module 100 and the elastic module 300 described below.
[0045] 8 and 9A to 9D exemplarily show a foldable mounting frame 500 according to a second preferred embodiment of the present invention. As shown in the drawings, the mounting frame 500 includes a plurality of longitudinally extending mold members 510 and a plurality of flexible connectors 520 located between and connecting the longitudinally extending mold members, and a middle portion 522 of the flexible connector 520 is thin and bendable, forming a flexible hinge therein. Both the longitudinal mold members 510 and the flexible connector 520 may be made of plastic, and the longitudinal mold member 510 may be a plastic member manufactured by extrusion molding. As clearly shown in Figures 9A and 9B, the middle part of the vertical section 510 is provided with two T-shaped grooves 511 with their openings facing downward, and the top of the flexible connector 520 is provided with a T-shaped convex block 521 that matches the shape of the T-shaped groove 511. As shown in Figure 9C, the T-shaped groove 511 slidably receives the T-shaped convex block 521, so that multiple vertical sections 510 can be connected by the flexible connector 520.
[0046] Since the middle portion 522 of the flexible connector 520 is thin and bendable, the entire mounting frame 500 is foldable, and FIG. 9D shows the mounting frame 500 in the folded state.
[0047] As shown in Figures 9A and 9B, the vertical profile 510 has a pair of first lateral protrusions 512 extending laterally and a pair of second lateral protrusions 513 located above them, and the distance between the pair of first lateral protrusions 512 is greater than the distance between the pair of second lateral protrusions 513.
[0048] 10A to 10D exemplarily show an elastic module 300 according to a third preferred embodiment of the present invention. As shown in the drawings, similar to the elastic modules 100 and 200, the elastic module 300 includes a spring supporter 320 and a cone-shaped spring 110 installed in the spring supporter 320. The spring supporter 320 is for removably mounting the elastic module 300 to a foldable mounting frame 500. The spring supporter 320 includes a base 321, an end cover 322, and a plurality of flexible bands 323. In one preferred embodiment, the number of the flexible bands 323 is four and is uniformly distributed around the outer periphery of the spring supporter 320. The base 321 includes a spring mounting seat, has an opening 3211 at the center of the spring mounting seat, and includes a spring fixing portion for fixing the cone-shaped spring 110. The base 321 further includes a module mounting portion for removably mounting the elastic module to the mounting frame. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing portion, and the small diameter end of the cone-shaped spring 110 abuts against the end cover 322. In this preferred embodiment, the spring fixing portion is an annular groove 3212 formed around the inner circumference of the opening 3211. The flexible bands 323 are located outside the cone-shaped spring 110, and both ends of each flexible band 323 are fixedly connected to the base 321 and the end cover 322, respectively. After being mounted on the spring supporter 320, the spring 110 may be provided with a predetermined initial pressure so that the elastic module has an ideal stiffness. With the support of the spring, the elastic module 300 has an overall truncated cone shape.
[0049] As described above, the spring supporter 320 is generally frustoconical, so that the end cover 322 of the elastic module 300 can enter the inside of the other elastic module through the opening 3211 of the base 321 of the other elastic module to form a fit. In order to form a stronger fit, the split screw and snap-fit structure provided on the bases 121 and 221 of the elastic modules 100 and 200 can be similarly applied to the base 321 of the elastic module 300.
[0050] Preferably, the module mounting portion of the elastic module 300 includes two parallel slide tracks 327 installed at the bottom of the base 321, and the base 321 can be slidably mounted on the first horizontal protrusion 512 of the vertical section 510, which is the slide rail of the mounting frame 500, through the slide tracks 327. As shown in FIG. 11A, the slide track 327 at the bottom of the base 321 can be slidably connected to the first horizontal protrusion 512, so that the elastic module 300 can be mounted on the mounting frame 500 through the base 321. Alternatively or additionally, as shown in FIG. 11B, the module mounting portion of the elastic module further includes two parallel slide tracks 328 installed at the top of the end cover 322, and the slide track 328 can be slidably connected to the second horizontal protrusion 513, which is the slide rail of the vertical section 510, so that the elastic module 300 can be mounted on the mounting frame 500 through the end cover 322.
[0051] Unlike the elastic modules 100 and 200, the spring supporter 320 of the elastic module 300 is a two-piece type spring supporter, and a first half 320A shown in FIG. 10C and a second half 320B shown in FIG. 10D are removably assembled by a snap-engagement device, for example, consisting of an insert 325 and a receiving seat 326. The first half 320A and the second half 320B each include one or more complete flexible bands 323, a portion of the base 321, and a portion of the end cover 322, and both the first half 320A and the second half 320B are integrally molded. Preferably, the first half 320A and the second half 320B each include two complete flexible bands 323, half the base 321, and half the end cover 322.
[0052] 12A to 12D exemplarily show an elastic module 700 according to a fourth preferred embodiment of the present invention. As shown in the drawings, the elastic module 700 includes a spring supporter 720 and a cone-shaped spring 110 installed in the spring supporter 720. The spring supporter 720 is for removably mounting the elastic module 700 to a foldable mounting frame 700. The spring supporter 720 includes a base 721, an end cover 722, and a plurality of flexible bands 723. In one preferred embodiment, the number of the flexible bands 723 is four and is uniformly distributed around the outer periphery of the spring supporter 720. The base 721 includes a spring mounting seat, has a circular opening 7211 at the center of the spring mounting seat, and includes a spring mounting portion 7212 for mounting the cone-shaped spring 110. The base 721 further includes a module mounting portion 7213 for removably mounting the elastic module to the mounting frame. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing part 7212, and the small diameter end of the cone-shaped spring 110 abuts against the end cover 722. In each embodiment of the present invention, the spring fixing part may be a hook-shaped member or a groove. In this embodiment, the spring fixing part is a groove 7212 that is installed around the inner circumference of the circular opening 7211. The flexible bands 723 are located outside the cone-shaped spring 110, and both ends of each flexible band 723 are fixedly connected to the base 721 and the end cover 722, respectively. After being mounted on the spring supporter 720, the spring 110 may have a predetermined initial pressure so that the elastic module has an ideal stiffness. With the support of the spring, the elastic module 700 has an overall truncated cone shape.
[0053] As described above, the spring supporter 720 is generally frusto-conical, thereby allowing the end cover 722 of the elastic module 700 to enter the interior of the other elastic module through the circular opening 7211 in the base 721 of the other elastic module to form an engagement.
[0054] Preferably, the spring supporter 720 is an integrally molded one-piece spring supporter, and as shown in Figures 12A to 12D, the base 721 of the spring supporter 720 is formed by joining four parts, which are a first part 721A, a second part 721B, a third part 721C, and a fourth part 721D. The second part 721B and the first part 721A are arranged parallel to each other and facing each other, the third part 721C is arranged adjacent to the first part 721A and perpendicular to the first part 721A, and the fourth part 721D and the third part 721C are arranged parallel to each other and facing each other, and adjacent to the first part 721A and the second part 721B. At least one flexible band 723 is fixedly connected to the top surface of each of the four parts, and the four parts are butt-connected detachably by a locking device 7216 to form the base 721.
[0055] Preferably, the module mounting portion 7213 is two parallel slide tracks 7213 formed on the outside of the third part 721C and the fourth part 721D of the base 721, so that the base 721 can be slidably assembled to the mounting frame 600 by sliding the slide tracks 7213 and the slide rails 611 of the mounting frame 600 (described later). That is, the elastic module 700 can be assembled to the mounting frame 600 so that the rough end faces downward. In addition, two second slide tracks 7221 parallel to the slide tracks 7213 are further installed on the top surface of the end cover 722, so that the end cover 722 can be slidably assembled to the mounting frame 600 by sliding the slide tracks 7221 and the slide rails 621 of the mounting frame 600, that is, the elastic module 700 can be assembled to the mounting frame 600 so that the narrow end faces downward.
[0056] Preferably, in order to make the relative positions of the multiple elastic modules 700 more stable and less likely to come off, flexible connecting bands 7214 are respectively installed on the outside of the third part 721C and the fourth part 721D of the base 721 and on both sides of the end of the sliding track 7213, and holes are respectively installed at the ends of the flexible connecting bands 7214, and two protrusions 7222 are respectively installed on the outside of the sliding track 7221 on the top surface of the end cover 722. When the multiple elastic modules 700 are assembled on the mounting frame 600, the multiple elastic modules 700 can be assembled on the mounting frame 600 with the rough ends and the thin ends facing downward alternately, so as to fully utilize the space. Among them, the flexible connect band 7214 of one elastic module 700 (thin end facing downward) assembled to the mounting frame 600 by the end cover 722 can snap-engage with the protrusion 7222 of the adjacent other elastic module 700 (coarse end facing downward) assembled to the mounting frame 600 by the base 721 through the end hole, thereby making the relative positional relationship between the multiple elastic modules 700 more stable.
[0057] More preferably, in order to make the relative positions of the elastic modules 700 assembled in the same direction more stable and less likely to come off, at least one pillar-shaped pin 7215 (two in the figure) is provided on the outer side of the first part 721A of the base 721, and at least one receiving hole 7217 (two in the figure) is provided on the corresponding position on the outer side of the second part 721B of the base 721. When a plurality of elastic modules 700 are assembled in a row to the mounting frame 600, the pillar-shaped pin 7215 of one of the elastic modules 700 can be inserted into the corresponding receiving hole 7217 of the other adjacent elastic module 700, thereby assisting alignment and fastening.
[0058] 13A to 13D exemplarily show a foldable mounting frame 600 according to a third preferred embodiment of the present invention. As shown in the drawings, the mounting frame 600 includes a plurality of first mold members 610 extending in the vertical direction and a plurality of second mold members 620 extending in the vertical direction, the first mold member 610 includes a flat body extending in the vertical direction and a first slide rail 611 extending in the vertical direction located on both sides of the flat body in the horizontal direction, and the second mold member 620 includes a flat body extending in the vertical direction and a second slide rail 621 extending in the vertical direction located at the middle position of the top surface of the flat body. The first mold member 610 and the second mold member 620 are arranged with a gap between them along the horizontal direction and are connected by a plurality of flexible connectors, and the mounting frame 600 can be folded by bending the flexible connectors.
[0059] Furthermore, the base 721 of the elastic module 700 can be slidably assembled to the mounting frame 600 by the sliding fit between the slide track 7213 and the slide rail 611, and the end cover 722 of the elastic module 700 can be slidably assembled to the mounting frame 600 by the sliding fit between the slide track 7221 and the slide rail 621. The vertical members 610, 620 and the flexible connector can be made of plastic, and the vertical members 610, 620 can be plastic members made by extrusion molding. As clearly shown in FIG. 13D, the cross-sectional shape of the slide rail 621 is approximately an inverted trapezoid, and the gap shape between the two slide tracks 7221 matches the cross-sectional shape of the slide rail 621, so that the elastic module 700 assembled with its narrow end facing downward cannot move along a direction perpendicular to the mounting frame 600. Similarly, the slide rail 611 is a hook-shaped portion, which prevents the elastic module 700 assembled with its rough end facing downward from moving along a direction perpendicular to the mounting frame 600 .
[0060] Although the elastic module described in the above embodiment has only a single cone-shaped spring, the elastic module according to the present invention may have multiple cone-shaped springs, thereby reducing the number of times the elastic module is assembled and disassembled on the elastic cushion.
[0061] 14A to 14E exemplarily show an elastic module 5000 according to a fifth preferred embodiment of the present invention. As shown in the drawings, the elastic module 5000 includes a spring supporter 5220 and three cone-shaped springs 110 arranged in a row in the spring supporter 5220. The spring supporter 5220 is for removably mounting the elastic module 5000 to a mounting frame of an elastic cushion. The spring supporter 5220 includes a common base 5221, a plurality of end covers 5222, and a plurality of flexible bands 5223, and both ends of each of the plurality of flexible bands 5223 are fixedly connected to the base 5221 and a corresponding one of the end covers 5222. In one preferred embodiment, four flexible bands 5223 are connected to each end cover 5222, and the four flexible bands are uniformly distributed around the outer periphery of the corresponding cone-shaped spring 110. The base 5221 has three spring mounting seats, each of which has a spring mounting portion 52212 for fixing the cone-shaped spring 110. The base 5221 further has a module mounting portion 52213 for removably mounting the elastic module to a mounting frame. Each end cover 5222 and the multiple flexible bands 5223 connected thereto are generally frustoconical, and the internal shape thereof matches the shape of the cone-shaped spring 110. Each end cover 5222 forms a small diameter end of a truncated cone, and the corresponding spring mounting seats of the base 5221 form multiple large diameter ends of a truncated cone. The base 5221 has one opening 52211 at the center of each large diameter end, so that the multiple end covers 5222 and most or all of the flexible bands 5223 of the other elastic module 5000 can enter the inside of the elastic module 5000 through the corresponding opening 52211 to form an insertion. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing portion 52212 of the corresponding spring mounting seat, and the small diameter end of the cone-shaped spring 110 abuts against the end cover 5222.In this preferred embodiment, the spring fixing portion 52212 is a plurality of hook-shaped members 52212 uniformly distributed around the inner circumference of the opening 52211. The flexible band 5223 is located outside the cone-shaped spring 110, and both ends of each flexible band 5223 are fixedly connected to the base 5221 and the corresponding end cover 5222, respectively. The spring 110 may have a predetermined initial pressure so that the elastic module has an ideal stiffness after being mounted on the spring supporter 5220. The center of the end cover 5222 of the spring supporter 5220 may have a circular opening 5224, that is, the end cover 5222 may be an annular end cover.
[0062] Preferably, the spring support 5220 is a one-piece molded integral spring support.
[0063] As described above, the spring supporter 5220 has a shape that is roughly conical in cross section, thereby allowing the end cover 5222 of the elastic module 5000 to enter the interior of the other elastic module through the opening 52211 in the base 5221 of the other elastic module to form an engagement, as shown in FIG. 15.
[0064] Preferably, the module mounting portion of the elastic module 5000 is a pair or pairs of parallel slide tracks 52213 installed at the bottom of the base 5221. In the embodiment shown in FIG. 14A to FIG. 14E, the opening directions of the pair of slide tracks 52213 are opposite to each other, and as an alternative embodiment, the opening directions of each pair of slide tracks 52213 may face each other. The base 5221 can be slidably mounted to the mounting frame of the elastic cushion by the slide tracks 52213. As shown in FIG. 14C, each slide track 52213 is a split slide track cut in the middle, and corresponds to the number of the cone-shaped springs 110 and the openings 52211 in the extension direction of the slide track 52213. In this embodiment, each slide track 52213 has four sections 52213A, 52213B, 52213C, and 52213D. The purpose of dividing the section is to prevent the slide track 52213 from interfering with the opening 52211 and to reduce the size of the base 5221. The slide track 52213 is a hook-shaped portion, and by hanging it on the slide rail of the mounting frame, the elastic module 5000 can be prevented from being separated from the mounting frame.
[0065] FIG. 16 exemplarily shows a state in which an elastic module 5000 including a plurality of cone-shaped springs 110 is attached to a mounting frame of an elastic cushion.
[0066] 17A to 17E exemplarily show an elastic module 6000 according to a sixth preferred embodiment of the present invention. As shown in the drawings, the elastic module 6000 includes a spring supporter 6220 and four cone-shaped springs 110 arranged in a matrix in the spring supporter 6220. The spring supporter 6220 is for removably mounting the elastic module 6000 to a mounting frame of an elastic cushion. The spring supporter 6220 includes a common base 6221, a plurality of end covers 6222, and a plurality of flexible bands 6223, and both ends of each flexible band in the plurality of flexible bands 6223 are fixedly connected to the base 6221 and the corresponding end cover 6222, respectively. In one preferred embodiment, four flexible bands 6223 are connected to each end cover 6222, and the four flexible bands are uniformly distributed around the outer periphery of the corresponding cone-shaped spring 110. The base 5221 has four spring mounting seats, each of which has a spring mounting portion 62212 for fixing the cone-shaped spring 110. The base 6221 further has a module mounting portion 62213 for removably mounting the elastic module to a mounting frame. Each end cover 6222 and the multiple flexible bands 6223 connected thereto are generally frustoconical, and the internal shape thereof matches the shape of the cone-shaped spring 110. Each end cover 6222 forms a small diameter end of a truncated cone, and the corresponding spring mounting seats of the base 6221 form multiple large diameter ends of a truncated cone. The base 6221 has one opening 62211 at the center of each large diameter end, so that the multiple end covers 6222 and most or all of the flexible bands 6223 of the other elastic module 6000 can enter the inside of the elastic module 6000 through the corresponding opening 62211 to form an insertion. The large diameter end of the cone-shaped spring 110 is fixed to the spring fixing portion 62212 , and the small diameter end of the cone-shaped spring 110 abuts against the end cover 6222 .In the preferred embodiment, the spring fixing portion 62212 is a plurality of hook-shaped members 62212 uniformly distributed around the inner circumference of the opening 62211. The flexible band 6223 is located outside the cone-shaped spring 110, and both ends of each flexible band 6223 are fixedly connected to the base 6221 and the corresponding end cover 6222, respectively. The spring 110 may have a predetermined initial pressure so that the elastic module has an ideal stiffness after being mounted on the spring supporter 6220. The center of the end cover 6222 of the spring supporter 6220 may have a circular opening 6224, that is, the end cover 6222 may be an annular end cover.
[0067] Preferably, the spring support 6220 is a one-piece molded integral spring support.
[0068] As described above, the spring supporter 6220 has an approximately truncated cone shape, which allows the end cover 6222 of the elastic module 6000 to enter the interior of the other elastic module through the opening 62211 in the base 6221 of the other elastic module to form an engagement, as shown in FIG. 18.
[0069] Preferably, the module mounting portion of the elastic module 6000 is a pair or pairs of parallel slide tracks 62213 installed at the bottom of the base 6221. In the embodiment shown in Figures 17A to 17E, the opening directions of the two pairs of slide tracks 62213 are opposite to each other, and as an alternative embodiment, the opening directions of each pair of slide tracks 62213 may be opposite to each other. The base 6221 can be slidably mounted to the mounting frame of the elastic cushion by the slide tracks 62213. 17C, in this embodiment, each slide track 62213 is a divided slide track cut in the middle, which corresponds to the number of the cone-shaped springs 110 and the openings 62211 in the extending direction of the slide track 62213. In this embodiment, each slide track 62213 has three sections 62213A, 62213B, and 62213C, and the purpose of dividing the sections is to prevent the slide track 62213 from interfering with the openings 62211 and to reduce the size of the base 6221. The slide track 62213 is a hook-shaped part, and by hanging it on the slide rail of the mounting frame, it is possible to prevent the elastic module 6000 from being separated from the mounting frame.
[0070] FIG. 19 exemplarily shows a state in which an elastic module 6000 including a plurality of cone-shaped springs 110 is attached to a mounting frame of an elastic cushion.
[0071] As can be seen from the above illustrated embodiments, the elastic module according to the present invention may include any number of cone-shaped springs, and the multiple cone-shaped springs may be distributed in any pattern in the elastic module.
[0072] According to one preferred embodiment of the present invention, the elastic cushion 1000 may include an integral fastening net to better hold the elastic modules in the elastic cushion in place. Figures 21A and 21B show an integral fastening net 1300 according to a first preferred embodiment of the present invention, which comprises a number of annular portions 1310, each of which is configured such that a portion of a corresponding elastic module in the elastic cushion can pass through it. Preferably, when the integral fastening net 1300 is installed on the elastic module, the vertical distance of the annular portions 1310 from the end cover of the elastic module is about 1 / 3 of the overall height of the elastic module.
[0073] 22A-22D show a one-piece fastening net 1400 according to a second preferred embodiment of the present invention. As shown in the drawings, the one-piece fastening net 1400 is flexible and has a number of hooks 1420 on its edge, which can be hooked onto the mounting frame 400 when the one-piece fastening net 1400 is installed on the elastic module.
[0074] More preferably, the top of the sponge cover 1100 is provided with a plurality of bird's nest-shaped structures 1110, and as shown in Figures 23A and 23B, the positions of the plurality of bird's nest-shaped structures 1110 correspond to the positions of the end covers of each elastic module in the foldable mounting frame of the elastic cushion, so that the top of each elastic module is stored in the corresponding bird's nest-shaped structure, thereby restricting the lateral movement of the elastic module and preventing the elastic module from detaching or wrapping around adjacent springs.
[0075] As shown in Fig. 24A-24B, the elastic cushion 1000 according to the present invention may further include a plurality of filled sponge strips 900, which are placed on the integral fastening net 2300, and the size of the filled sponge strips 900 is designed to fill the gaps between the elastic modules in the elastic cushion and between the truncated cones of each elastic module, thereby avoiding the elastic modules from shaking and falling off, and improving the comfort of the elastic cushion. As shown in Fig. 24C, similar to the integral fastening net 1300, 1400, the integral fastening net 2300 has a plurality of rings 2310, each of which is configured so that a part of the corresponding elastic module in the elastic cushion can pass through it. Preferably, when the integral fastening net 2300 is placed on the elastic module, the vertical distance of the rings 2310 from the end cover of the elastic module is about 1 / 3 of the overall height of the elastic module.
[0076] As shown in Figures 25C and 25D, the elastic cushion 1000 of the present invention may include an integrated fastening net 3300, which in addition to a circular portion 3310 for restricting the elastic module, further includes a plurality of small circular portions 3320, each of which is located between the circular portions 3310, and the plurality of circular portions 3310 and the plurality of small circular portions 3320 are spaced apart from each other in an array-like configuration so that when the integrated fastening net 3300 is installed on the elastic module, the plurality of small circular portions 3320 are located just above the gaps between the elastic modules and between the truncated cones of each elastic module.
[0077] Similarly, when the fastening net 3300 is installed on a resilient module, the vertical distance of the annular portion 3310 from the end cover of the resilient module is approximately 1 / 3 of the overall height of the resilient module.
[0078] 25A and 25B, the elastic cushion 1000 of the present invention may further include a plurality of gap-filling elastic modules 800, the gap-filling elastic module 800 being substantially frustoconical and capable of filling the gaps between the elastic modules and between the frustoconical shapes of the elastic modules with the narrow end facing downward, thereby preventing the elastic modules from shaking and coming off and improving the comfort of the elastic cushion. The small diameter end of the gap-filling elastic module 800 may be fixed to the small annular portion 3320 to fill the gaps.
[0079] FIG. 25E exemplarily illustrates a gap-filling elastic module 800 for filling gaps according to a preferred embodiment of the present invention. As shown in the drawing, the gap-filling elastic module 800 includes a spring supporter 820 and a small cone-shaped spring 810 installed in the spring supporter 820. The spring supporter 820 is for removably assembling the gap-filling elastic module 800 to the integrated fastening net 3300. The spring supporter 820 includes a base 821, an end cover 822, and a plurality of flexible bands 823. In a preferred embodiment, the number of the flexible bands 823 is four, and the flexible bands 823 are uniformly distributed around the outer periphery of the spring supporter 820. The base 821 has a circular opening at its center, and the large-diameter end of the small cone-shaped spring 810 is fastened to a spring fastening part of the base 821, and the spring fastening part may be a ring-shaped groove formed around the inner periphery of the circular opening of the base 821. The small diameter end of the small cone-shaped spring 810 abuts against the end cover 822. The flexible bands 823 are located outside the small cone-shaped springs 810, and both ends of each flexible band 823 are fixedly connected to the base 821 and the end cover 822, respectively. The springs 810 may be provided with a predetermined initial pressure so that the elastic module 800 has an ideal stiffness after being attached to the spring supporter 820. With the support of the springs, the gap-filling elastic module 800 has an overall truncated cone shape.
[0080] Preferably, the spring supporter 820 is a one-piece molded integral spring supporter, but it may of course be an assembly in which multiple members are assembled.
[0081] As described above, the spring supporter 820 is approximately truncated cone shaped, which allows the end cover 822 of the gap-filling elastic module 800 to enter the interior of the other gap-filling elastic module through the circular opening in the base 821 of the other gap-filling elastic module to form an engagement.
[0082] Furthermore, in order to allow the end cover 822 of the gap-filling elastic module 800 to be more stably fixed to the small annular portion 3320 of the integrated fastening net 3300, a plurality of hooks 8221 extending toward the small diameter end of the small cone-shaped spring 810 may be formed on the outer periphery of the end cover 822, and the small diameter end of the gap-filling elastic module 800 may be fixed to the small annular portion 3320 by the hooks 8221 so as to fill the gap. Preferably, the plurality of hooks 8221 and the plurality of flexible bands 823 are arranged at intervals along the outer periphery of the gap-filling elastic module 800. Alternatively, the hooks 8221 may be an annular hook extending 360 degrees along the entire outer periphery of the end cover 822.
[0083] The present invention further provides an elastic cushion, and as shown in Figures 20A to 20C, an elastic cushion 1000 according to one preferred embodiment of the present invention may include a mounting frame 400, 500, 600 as described in the above embodiments and a plurality of elastic modules 100, 200, 300, 700, 5000, 6000, etc. attached to the mounting frame. The elastic cushion 1000 may further include a sponge cover 1100 covered by the plurality of elastic modules attached to the mounting frame, and a cloth cover 1200 covered by the sponge cover.
[0084] Each type of resilient module according to each embodiment of the present invention may also include other functional components / assemblies, which will now be described in more detail.
[0085] 26A and 26B show an elastic module with a restricting hole according to one preferred embodiment of the present invention, in which the end cover has a substantially planar main body portion, in which four restricting holes 224a may be provided uniformly distributed around the center of the end cover, and the restricting holes are configured to receive a restricting tool (FIG. 27A) to restrict the relative position between four adjacently arranged elastic modules. FIG. 27A to FIG. 27C show an example of a restricting tool 10 for restricting an elastic module, which includes a rectangular main body frame and four cylindrical parts 11 located at the four corners of the rectangular main body frame, and the rectangular main body frame has a reinforcing bar 12 extending along its diagonal line, as shown in the drawings. Each of the cylindrical portions 11 extends from the rectangular main body frame toward the same side along a direction perpendicular to the rectangular main body frame, and the dimensions of the main body frame and the cylindrical portion are designed so that each of the cylindrical portions 11 can be inserted into the corresponding limiting hole 224a in the end cover of the four elastic modules adjacent to each other. Each of the cylindrical portions 11 has a tapered end for guiding the insertion of the cylindrical portion 11 into the limiting hole 224a. As shown in FIG. 27C, an engagement portion 13 is provided on the outer surface of the cylindrical portion 11, and the engagement portion 13 is configured to be able to engage with the limiting hole 224a. As shown in FIG. 27B, the cylindrical portion 11 has a central hole 14, and a recessed groove 15 for receiving the engagement portion 13 is formed in the central hole 14. As shown in FIG. 27D, in order to fit a plurality of limiters 10 into each other, the dimensions of the central hole 14 are designed to receive the tapered end of the cylindrical portion 11 of the other limiter 10.
[0086] FIG. 27E exemplarily illustrates a state in which a plurality of elastic modules shown in FIG. 26A are secured by the limiter 10 shown in FIG. 27A.
[0087] 28A to 28C show an elastic module with a pivot fastening device according to a preferred embodiment of the present invention, the pivot fastening device includes a pair of protrusions 21 and a pair of arc-shaped openings 22 mounted on the end cover of the elastic module, the pair of protrusions 21 and the pair of arc-shaped openings 22 are mounted on the end cover along the circumferential direction in a centrally symmetrical manner, and the protrusions 21 and the arc-shaped openings 22 are alternately arranged along the circumferential direction of the end cover. Each protrusion 21 includes a narrow base 211a and a thick end 212a, the base 211a is essentially cylindrical, and the end 212a is essentially truncated cone. Each arc-shaped opening 22 includes a narrow arc-shaped extension 221a and a wide end opening 222a located at one end of the arc-shaped opening 22, i.e., the radial dimension of the end opening 222a is larger than the radial dimension of the arc-shaped extension 221a. The radial (width) dimension of the end opening portion 222a is designed to allow the thick ends 212a of the protrusions 21 to pass through, while the radial (width) dimension of the arc-shaped extension portion 221a is designed not to allow the thick ends 212a to pass through, so that when the end covers of two elastic modules are facing each other, a pair of protrusions 21 of one end cover can pass through a pair of end opening portions 222a of the other end cover, and a pair of protrusions 21 of the other end cover can pass through a pair of end opening portions 222a of the one end cover. As shown in Figures 28D and 28E, when the two elastic modules are screwed together in the locking direction, the base 211a of each protrusion 21 moves along the corresponding arc-shaped opening 22 to its arc-shaped extension portion 221a, and the thick end 212a of each protrusion engages with the narrow arc-shaped extension portion 221a, thereby fixing the two elastic modules in a form in which the end covers face each other.
[0088] Fig. 28F is a partially enlarged view of Fig. 28E, showing an optional interlocking device installed on the end cover, the interlocking device includes a pair of arc-shaped walls 23 and a pair of uprights 24 installed on the end cover along the circumferential direction of the end cover in a centrally symmetrical manner, the arc-shaped walls 23 and the uprights 24 are alternately arranged along the circumferential direction of the end cover. In response to the interlocking device, the dimension of the base 211a of the protrusion 21 of the pivot fastening device along the height direction of the elastic module is set to allow the two elastic modules to move a predetermined distance along the height direction of the elastic module relative to each other when the end covers are fastened in a facing manner, the distance is designed to be larger than the dimension of the uprights 24 along the height direction of the elastic module, thereby allowing the arc-shaped wall 23 of one elastic module to climb over the uprights 24 of the other elastic module when the two elastic modules are screwed together in the locking direction. As shown in Fig. 28F, when the two elastic modules are locked with their end covers facing each other, the upright 24 of one of the elastic modules is joined to one end of the arc-shaped wall 23 of the other elastic module, preventing the two elastic modules from rotating relative to each other in the unlocking direction, which is opposite to the locking direction. When removal is required, the two elastic modules can be moved away from each other by hand so that the arc-shaped wall 23 and the upright 24 are released from the joint, and then the two elastic modules can be rotated in the unlocking direction. Preferably, the interlock devices 23, 24 are located radially outside the pivot fixing devices 21, 22.
[0089] 29A and 29B show an elastic module with shape-matching locking structures 31, 32 according to a preferred embodiment of the present invention, the locking structures 31, 32 being disposed on the four sides of the base of the elastic module, and including a protrusion 31 extending outwardly perpendicular to the corresponding side along the horizontal direction of the base, and a recess 32 extending inwardly perpendicular to the corresponding side along the horizontal direction of the base. The protrusions 31 and the recess 32 are alternately arranged on the sides of the base, and the shape of the protrusions 31 matches the shape of the recess 32, so that the protrusions 31 and the recess 32 of one elastic module can be inserted and received into the corresponding recess 32 and the corresponding protrusions 31 of the other adjacent elastic module, respectively, along a direction perpendicular to the plane of the base, thereby restricting the relative movement between the adjacent elastic modules along the horizontal direction. The protrusions 31 include a neck and a head located at the end of the neck and wider than the neck. The recess 32 has an opening and a recess located inside the opening and enlarged wider than the opening, and the shapes of the opening and the enlarged recess respectively accommodate the neck and head of the protrusion, thereby allowing the protrusion 31 and the recess 32 of one elastic module to be inserted and received, respectively, into the corresponding recess and protrusion of the other elastic module arranged adjacently along a direction perpendicular to the surface on which the base is located.
[0090] Preferably, each protruding portion 31 further includes a slider 311a and an elastic member 312a. The slider 311a is configured to be able to slide outward and inward perpendicular to the corresponding side along the horizontal direction of the base in the protruding portion 31, and a tongue-shaped portion 3111a protruding outward is provided on the outer side of the slider 311a. One end of the elastic member 312a is fixed to the base, and the other end of the elastic member 312a is a free end. The elastic member 312a passes through the slider 311a, and the slider 311a is fixed to a position between the fixed end and the free end of the elastic member 312a, so that the elastic member 312a exerts an elastic force to slide outward relative to the slider. The base is provided with two position limiting members 313a and 314a for limiting the range of motion of the free end of the elastic member 312a, of which the first position limiting member 313a is for limiting the free end of the elastic member 312a to a first position so that the slider is in a retracted position, and the second position limiting member 314a is for limiting the free end of the elastic member 312a to a second position so that the slider is in an extended position. In each recess 32, a groove 322a is provided for receiving the tongue 3111a of the slider in the extended position, and the relative motion in the height (vertical) direction between adjacently arranged elastic modules is limited. Preferably, the edges of each recess 32 located on the upper and lower surfaces of the base are provided with guide slopes 321a for guiding the tongue 3111a to enter the recess 32. FIG. 29C illustrates an example of how multiple elastic modules are locked together by the interlocking device shown in FIG. 29A and FIG. 29B. As can be seen from the drawing, the protrusion 31 of each elastic module is aligned with the recess 32 of the adjacent elastic module, and the slider 311a is in the extended position, whereby the tongue portion 3111a is inserted into the groove 322a.
[0091] 30A and 30B show an elastic module with shape-matching locking structures 41, 42 according to another preferred embodiment of the present invention, in which the protrusions 41 and the recesses 42 are alternately arranged on the four sides of the base. As shown in the drawings, the elastic module includes locking structures installed on the four sides of the base, and the locking structures include protrusions 41 extending outwardly perpendicular to the corresponding side along the horizontal direction of the base, and recesses 42 extending inwardly perpendicular to the corresponding side along the horizontal direction of the base. The shape of the protrusions 41 and the shape of the recesses 42 match or complement each other, so that the protrusions 41 of one elastic module can be inserted into the recesses 42 of the other elastic module along the horizontal direction. Preferably, the protrusions 41 and the recesses 42 are substantially triangular. More preferably, a protruding base 411a is provided on the upper and / or lower surface of the protruding portion 41, and a through hole 421a is provided on the upper and / or lower wall of the recessed portion 42, so that the protruding base 411a can enter and leave the through hole 421a of the recessed portion of the other elastic module. Figure 30C exemplarily shows a state when multiple elastic modules are combined using the locking structure shown in Figures 30A and 30B, and since the locking structures of each side of the base of the elastic module are the same, they can be joined arbitrarily.
[0092] FIG. 30D shows an elastic module with a shape-matching locking structure according to yet another preferred embodiment of the present invention. As shown in the drawing, the elastic module includes a locking structure installed on the four sides of the base, the locking structure includes a protruding portion 43 extending outwardly perpendicular to the corresponding side along the horizontal direction of the base, and a recessed portion 44 extending inwardly perpendicular to the corresponding side along the horizontal direction of the base, and as shown in the drawing, the protruding portion 43 and the recessed portion 44 are arranged to face each other on the four sides of the base, for example, a pair of protruding portions 43 are installed on one side of the base, and a pair of recessed portions 44 are installed on the other side opposite to the side of the base. The shape of the protruding portion 43 and the shape of the recessed portion 44 match or complement each other, so that the protruding portion 43 of one elastic module can be inserted into the recessed portion 44 of the other elastic module along the horizontal direction. Preferably, the protruding portion 43 and the recessed portion 44 are approximately triangular. More preferably, a protruding base 431a is provided on the upper and / or lower surface of the protruding portion 43, and a through hole 441a is provided on the upper and / or lower wall of the recessed portion 44, so that the protruding base 431a can enter and leave the through hole 441a of the recessed portion of the other elastic module. Figures 30E and 30F exemplarily show two types of appearances when multiple elastic modules are combined by the lock structure shown in Figures 30C and 30D.
[0093] 31A and 31B show an elastic module with a T-shaped (or wedge-shaped) connector according to one preferred embodiment of the present invention. As shown in the drawings, a T-shaped (or wedge-shaped) connector 51 is provided on one or more sides of the base of the elastic module, extending along the corresponding side, and the T-shaped connector 51 includes a first flange 511a extending upward along the height direction of the elastic module and a second flange 511b extending downward along the height direction of the elastic module. When the two T-shaped connectors 51 of the two elastic modules are arranged adjacent to each other, the two T-shaped connectors 51 can be connected by a connector 52 (see FIG. 31C and FIG. 31F) including a pair of upper flanges 521a extending downward and a pair of lower flanges 521b extending upward, and the connector 52 can slide along the first flange 511a and the second flange 511b to connect the two elastic modules arranged in parallel. As shown in FIG. 31C, the connector 52 includes an intermediate wall and a pair of upper flanges 521a extending downward and a pair of lower flanges 521b extending upward, which are located on both sides of the intermediate wall, and the intermediate wall can connect two adjacent elastic modules by passing between two adjacent connecting parts 51 of the two adjacent elastic modules. The upper flange 521a and the lower flange 521b located on the same side of the dividing wall in the connector 52 form a slide track, and the first flange 511a and the second flange 511b of the elastic module can slide on the slide track. Preferably, the slide track may be wedge-shaped, and the first flange 511a and the second flange 511b may be formed in a wedge shape that matches the wedge shape of the slide track. FIG. 31D exemplarily illustrates a state in which elastic modules having the T-shaped connectors 51 shown in FIGS. 31A and 31B are connected to form a row by the U-shaped connector shown in FIG. 31C.
[0094] 31E shows an elastic module having a T-shaped (or wedge-shaped) connector 51 according to another preferred embodiment of the present invention. As shown in the drawing, the elastic module has a plurality of springs (the elastic module shown in the drawing includes four springs, but may include any other number of springs, for example, three, five, etc.), and the base of the elastic module has a T-shaped connector 51 on each of its four sides, and a stopper 511c for limiting the position of the U-shaped connector 52 is provided at the middle position of the second flange 511b, preventing the U-shaped connector 52 from sliding further inward.
[0095] 31G and 31H show an example of a state in which a plurality of elastic modules (without springs) shown in FIG. 31E are connected by the U-shaped connector shown in FIG. 31F, among which a three-in-one type (three springs are attached to one integrated spring supporter) elastic module and a four-in-one type (four springs are attached to one integrated spring supporter) elastic module are shown, but those skilled in the art will recognize that the elastic module may be an elastic module including a different number of springs. Any number of elastic modules may be joined in any form according to actual needs (e.g., the size of the elastic cushion).
[0096] Figures 31L and 31M show examples of elastic cushions of different sizes that are joined using the elastic modules and U-shaped connectors shown in Figures 31E to 31H, and all four sides of the base of the elastic module in this embodiment are provided with T-shaped (or wedge-shaped) connection portions 51, so that horizontally adjacent elastic modules and vertically adjacent elastic modules are all connected by U-shaped connectors 52.
[0097] 31I and 31J show an elastic module having wedge-shaped (or T-shaped) joints 53, 54 according to one preferred embodiment of the present invention. As shown in the drawings, a wedge-shaped (or T-shaped) groove 54 is provided on one side of the base, a wedge-shaped (or T-shaped) protrusion 55 that can be linked to the shape of the wedge-shaped (or T-shaped) groove 54 is provided on the side opposite to the side, and a wedge-shaped (or T-shaped) connection part 53 is provided on the remaining two opposite sides, and the wedge-shaped protrusion 55 can slide in the wedge-shaped groove 54 of the base of the other elastic module to connect the two elastic modules, and the wedge-shaped protrusion 53 of one elastic module and the wedge-shaped protrusion 53 of the other elastic module can be connected by a U-shaped connector 52 shown in FIG. 31F. Preferably, the two side walls 541a, 541b forming the wedge-shaped groove 54 are cut in the middle, and the side walls 541a, 541b are distributed in a shifted manner. Fig. 31K is an exemplary enlarged cross-sectional view of the two elastic modules shown in Figs. 31I and 31J joined by the wedge-shaped protrusion 55 and the wedge-shaped groove 54.
[0098] Figures 31N and 31P show examples of elastic cushions of different sizes that are joined using the elastic modules shown in Figures 31I to 31K and the U-shaped connector shown in Figure 31F. As shown in the drawings, a pair of opposing sides of the base of the elastic module in this embodiment are each provided with a wedge-shaped groove 54 and a wedge-shaped protrusion 55 that can be connected to each other, and the other pair of opposing sides are each provided with a T-shaped (or wedge-shaped) connecting portion 53, so that adjacent elastic modules in the horizontal direction (horizontal direction in the figure) are connected by the U-shaped connector 52, and adjacent elastic modules in the vertical direction (vertical direction in the figure) are connected by their own wedge-shaped groove 54 and wedge-shaped protrusion 55.
[0099] Fig. 32A shows an elastic module in which a base and an end cover are engaged to compress a spring between them according to a preferred embodiment of the present invention, and when the base and the end cover are engaged, the volume of the elastic module is greatly reduced, making it convenient for storage and transportation. Figs. 32B to 32D exemplarily show a perspective view, a plan view, and a side view of the base of the elastic module shown in Fig. 32A, respectively, and Figs. 32E and 32F exemplarily show a perspective view and a plan view of the end cover of the elastic module shown in Fig. 32A, respectively. As shown in the drawings, the elastic module includes a spring 110e and a spring supporter 120a that can hold and fix the spring, and the spring supporter 120a includes a base 121a, an end cover 122a, and a flexible connecting band 123a. The base 121a includes a spring mounting seat, the spring mounting seat having a first spring fixing portion 1212a, each of which can fix a first end of a spring 110e. The end cover 122a includes a spring mounting seat, the spring mounting seat having a second spring fixing portion 1222a, each of which can fix a second end of a spring. Both ends of a flexible connecting band 123a are fixedly connected to the base 121a and the end cover 122a, respectively, and are located outside each spring 110e. A screw lock assembly is installed on the base 121a and the end cover 122a, and the base and the end cover are configured to be releasably locked by the screw lock assembly so that the spring can be compressed therebetween. 32B-32F, the threaded locking assembly includes one or more locking posts 127a located at an outer region of the base 121a and one or more arcuate openings 128a located at a corresponding outer region of the end cover 122a. Each locking post 127a includes a base 1271a and an end 1272a having a cross-sectional dimension larger than the base. Each arcuate opening 128a includes an arcuate extension portion 1281a and an end opening portion 1282a located at one end of the arcuate opening and having a dimension larger than the arcuate extension portion.The dimensions of the end opening 1282a of each arcuate opening 128a are designed to allow the thick end 1272a of the corresponding locking post 127a to pass therethrough, and the dimensions of the narrower arcuate extension portion of each arcuate opening 128a are designed not to allow the thick end 1272a of the corresponding locking post 127a to pass therethrough, so that when the spring is compressed and the thick end of each locking post 127a passes through the corresponding end opening 1282a, by threading the base 121a and the end cover 122a in the locking direction, the base 1271a of each locking post 127a moves along the corresponding arcuate opening 128a to its arcuate extension portion 1281a and is engaged with the arcuate extension portion 1281a by the end 1272a, thereby releasably locking the base and the end cover. Figures 32G and 32H are perspective and plan views, respectively, of the elastic module shown in Figure 32A when the base and end covers are engaged. Figure 32I is an example of how a plurality of elastic modules in the compressed configuration shown in Figures 32G and 32H may be stacked together. Elastic modules compressed and locked in this manner can significantly save space during storage and transportation.
[0100] Figures 32J and 32K respectively show exemplary elastic modules that can be engaged with a base and an end cover according to another preferred embodiment of the present invention, in which the flexible connection part of the elastic module shown in Figure 32J is a flexible string 123b, and the flexible connection part of the elastic module shown in Figure 32K is an integrated flexible cover 123c that surrounds the spring 360 degrees.
[0101] 32L and 32M respectively show an example of an elastic module with a base and an end cover engageable according to another preferred embodiment of the present invention, in which the elastic module shown in FIG. 32L includes a spring supporter 120b capable of accommodating three springs, the spring supporter 120b including a base 121b and an end cover 122b to which the three springs can be attached, and the elastic module shown in FIG. 32M includes a spring supporter 120c capable of accommodating four springs, the spring supporter 120c including a base 121c and an end cover 122c to which the four springs can be attached. A module mounting portion 1213a for removably mounting the elastic module to the elastic cushion may be installed on the bottom surface of the bases 121a, 121b, and 121c of the elastic module described above. Preferably, the module mounting portion 1213a is a slide track or a slide rail, and the base of the elastic module is slidably assembled to the mounting frame of the elastic cushion. More preferably, the spring supports 120a, 120b, 120c may be integrally molded. More preferably, the springs are mounted in the spring supports with a predetermined initial compression. Optionally, an opening 1211a may be provided in the center of the base, and an opening 1221a may be provided in the center of the end cover.
[0102] 33A to 33F exemplarily show a base and end cover engageable elastic module and its members according to another preferred embodiment of the present invention. As shown in the drawings, the elastic module includes a base 121d, an end cover 122d, and a spring package. The base 121d includes a pair of first engagement mechanisms 1211d disposed around its periphery, and the end cover 122d includes a pair of second engagement mechanisms 1221d disposed around its periphery. The spring packages are removably secured between the base 121d and the end cover 122d, and each spring package includes a spring 110f and a flexible cover 123d encasing the spring. The base 121d and the end cover 122d are releasably engageable by the first engagement mechanism 1211d and the second engagement mechanism 1221d, thereby compressing the spring package between the base and the end cover. Preferably, the spring is packaged in the flexible cover 123d with a predetermined initial compression force. The springs shown in the figures are convex springs, but those skilled in the art will recognize that they may be cylindrical springs or concave springs. The engagement mechanisms 1211d and 1221d will now be described in detail with reference to Figures 33E to 33G. As shown in the drawings, the pair of first engagement mechanisms 1211d extend radially outward from the base 121d, and each first engagement mechanism includes a first protruding portion 12112d, and the first protruding portion is located between the first engagement mechanism 1211d and the base 121d. The pair of second engagement mechanisms 1221d extend radially outward from the end cover 122d, and each second engagement mechanism includes a tongue-like portion 12211d that has elasticity to move toward or away from the end cover 122d, and a second protruding portion 12212d located outside the tongue-like portion. The second protrusion 12212d can be mated to the first protrusion 12112d to engage the base and the end cover, and the second protrusion 12212d disengages from the first protrusion 12112d as the tongue 12211d moves towards the end cover, thereby releasing the end cover from the base.Preferably, each first engagement mechanism 1211d further includes a recess 12111d located at an intermediate position of the first engagement mechanism, and a user can press the tongue 12211d towards the end cover by said recess 12111d to release the end cover.
[0103] Fig. 33H exemplarily shows an elastic module with a base and an end cover engageable according to yet another preferred embodiment of the present invention, and Fig. 33I shows a compression structure of the elastic module. As shown in the drawing, the elastic module is different from the elastic module shown in Fig. 33A to Fig. 33G in that the elastic module includes a base 121e and an end cover 122e that can accommodate four spring packages. Similarly, the base 121e includes a pair of first engagement mechanisms 1211e installed on its periphery, and the end cover 122e includes a pair of second engagement mechanisms 1221e installed on its periphery. The spring packages are removably fixed between the base 121e and the end cover 122e, and the base 121e and the end cover 122e are releasably engaged by the first engagement mechanisms 1211e and the second engagement mechanisms 1221e, so that the spring packages can be compressed between the base and the end cover. The pair of first engagement mechanisms 1211e extend radially outward from the base 121e, and each first engagement mechanism includes a first protrusion 12112e, and the first protrusion is located between the first engagement mechanism 1211e and the base 121e. The pair of second engagement mechanisms 1221e extend radially outward from the end cover 122e, and each second engagement mechanism includes a tongue 12211e having elasticity that allows the second engagement mechanism to move toward or away from the end cover 122e, and a second protrusion 12212e located outside the tongue. The second protrusion 12212e can be joined to the first protrusion 12112e to engage the base and the end cover. As the tongue 12211e moves toward the end cover, the second protrusion 12212e is released from its engagement with the first protrusion 12112e, thereby releasing the end cover from the base.
[0104] Figures 33J to 33L exemplarily show a state in which a plurality of elastic modules shown in Figure 33A or 33H are connected to form a row by flexible underpads 60a, 60b, 60c, and as shown in the drawings, the elastic modules are fixed to a first surface of the flexible underpad, and as shown in Figures 33M and 33N, the flexible underpad can be folded to join a first portion of a second surface opposite to the first surface to a second portion of the second surface. Figure 33P exemplarily shows an elastic cushion including the elastic module shown in Figure 33L and flexible underpads 60b or 60c.
[0105] FIG. 34A exemplarily illustrates an elastic module in which a base and an end cover can be engaged according to yet another preferred embodiment of the present invention. FIG. 34B to FIG. 34D exemplarily illustrate a perspective view, a plan view, and a side view of the base of the elastic module shown in FIG. 34A, respectively, and FIG. 34E and FIG. 34F exemplarily illustrate a perspective view and a plan view of the end cover of the elastic module shown in FIG. 34A, respectively. As shown in the drawings, the elastic module includes a spring 110e, a base 121f, and an end cover 122f. The base 121f includes a spring mounting seat, and the spring mounting seat includes a first spring fixing portion 1212f to which a first end of the spring can be fixed, and the end cover 122f includes a spring mounting seat, and the spring mounting seat includes a second spring fixing portion 1222f to which a second end of the spring can be fixed. A threaded locking assembly is provided on the base and the end cover, and the base and the end cover are releasably locked by the threaded locking assembly, so that the spring can be compressed between the base and the end cover. Specifically, the threaded locking assembly includes one or more locking posts 127f provided on an outer region of the base and one or more arc-shaped openings 128f provided on a corresponding outer region of the end cover. Each locking post 127f includes a narrow base 1271f and a wide end 1272f. Each arc-shaped opening 128f includes a narrow arc-shaped extension portion 1281f and a wide end opening portion 1282f, and the end opening portion 1282f is located at one end of the arc-shaped opening 128f.The dimensions of the end opening 1282f of each arcuate opening 128f are designed to allow the end 1272f of the corresponding locking post 127f to pass therethrough, and the dimensions of the arcuate extension 1281f of each arcuate opening 128f are designed to not allow the end of the corresponding locking post to pass therethrough, so that when the spring is compressed and the end 1272f of each locking post passes through the corresponding end opening 1282f, the base and end cover can be threaded in a locking direction to move the base 1271f of each locking post along the corresponding arcuate opening 128f to its arcuate extension 1281f and engage with the end 1272f at the arcuate extension 1281f, thereby releasably locking the base and end cover. Figure 34G shows an exemplary state in which the base and end cover of the elastic module shown in Figure 34A are engaged. Preferably, the base 121f may further include a module mounting portion 1213f for removably mounting the elastic module to the elastic cushion, and the module mounting portion 1213f may be a slide track or a slide rail installed on the bottom surface of the base, and the base of the elastic module may be slidably assembled to the mounting frame in the elastic cushion by the module mounting portion 1213f. Optionally, an opening 1211f may be provided in the center of the base, and an opening 1221f may be provided in the center of the end cover.
[0106] 35A and 35B are respectively a perspective view and a side view of an elastic module according to another preferred embodiment of the present invention. As shown in the drawings, the elastic module includes a cone-shaped spring 110 and a plurality of flexible bands 123e, each of which includes a main body portion 1231e, a first hook 1232e located at one end of the main body portion, and a second hook 1233e located at the other end of the main body portion. The first hook 1232e is removably hooked on the large diameter end of the cone-shaped spring, and the second hook 1233e is removably hooked on the small diameter end of the cone-shaped spring, and the plurality of flexible bands 123e are all located outside the cone-shaped spring. Preferably, the length of the plurality of flexible bands 123e is designed so that the cone-shaped spring has a predetermined initial compression force. More preferably, the flexible bands 123e are integrally molded and made of plastic. Optionally, the width and / or thickness of the body portion 1231e of the flexible band 123e tapers from one end to the other.
[0107] 35C and 35D are respectively a perspective view and a side view of an elastic module according to another preferred embodiment of the present invention. As shown in the drawings, the elastic module includes a cone-shaped spring 110 and a plurality of flexible bands 123f, each of which includes a main body portion 1231f, a first hook 1232f located at one end of the main body portion, and a second hook 1233f located at the other end of the main body portion. The first hook 1232f is removably hooked on the large diameter end of the cone-shaped spring, and the second hook 1233f is removably hooked on the small diameter end of the cone-shaped spring, and the plurality of flexible bands 123f are all located outside the cone-shaped spring. Preferably, the length of the plurality of flexible bands 123f is designed so that the cone-shaped spring has a predetermined initial compression force. More preferably, the flexible band 123f has a main body portion 1231f made of fabric, and the first hook 1232f and the second hook 1233f made of metal or plastic. Optionally, the width and / or thickness of the main body portion 1231f of the flexible band 123f is tapered from one end to the other end.
[0108] FIG. 35E exemplarily illustrates how a plurality of the elastic modules shown in FIGS. 35A to 35D may be fitted together.
[0109] 35F and 35G are respectively an exploded view and a cross-sectional view of an elastic module according to another preferred embodiment of the present invention, and FIG. 35H is a partially enlarged view of FIG. 35G. As shown in the drawings, the elastic module includes a cone-shaped spring 110, an integrated flexible cover 1231g having a closed end and an open end, and one or more fasteners 129g. The cone-shaped spring 110 enters the interior of the integrated flexible cover 1231g through the open end thereof, so that the integrated flexible cover wraps around the outside of the cone-shaped spring, and the end of the open end of the integrated flexible cover 1231g is folded into the inside of the cone-shaped spring around the large diameter end of the cone-shaped spring 110, and is fixed to the adjacent portion of the integrated flexible cover 1231g located outside the cone-shaped spring 110 by the one or more fasteners 129g (see FIG. 35H). Preferably, the one-piece flexible cover 1231g and the one or more fasteners 129g are associated with each other so that the cone-shaped spring has a predetermined initial compression force. In one preferred embodiment, the one-piece flexible cover 1231g is a one-piece fabric cover, and the fasteners 129g are rivets. Figure 35I exemplarily shows how a plurality of elastic modules shown in Figures 35F and 35G are fitted together.
[0110] Fig. 35J exemplarily shows an elastic module according to yet another preferred embodiment of the present invention, and Fig. 35K shows its cone-shaped spring 110b. Different from the elastic module shown in Fig. 35F to Fig. 35H, its integral flexible cover 1231h and cone-shaped spring 110b are pyramidal.
[0111] Fig. 36A and Fig. 36B are respectively a perspective view and a see-through view of an elastic module according to another preferred embodiment of the present invention, the elastic module including a plurality of columnar cloth covers 1231i in a row and a plurality of columnar springs wrapped therein. Fig. 36C is a perspective view of an elastic module according to another preferred embodiment of the present invention, Fig. 36D is an example of the elastic module shown in Fig. 36C when it is compressed and stored in a storage box, and Fig. 36E is an example of the storage box shown in Fig. 36D when it is stacked.
[0112] FIG. 37 is a perspective view of an elastic module according to another preferred embodiment of the present invention. As shown in the drawing, the elastic module includes a cone-shaped spring 110, a base 121j, and a plurality of flexible bands 123j. The base includes a spring mounting seat, and the spring mounting seat includes a spring mounting portion 1212j for fixing the large diameter end of the cone-shaped spring. One end of each flexible band 123j is fixedly connected to the base, and the other end includes a hook portion 1233j for removably hooking the small diameter end of the cone-shaped spring. All of the flexible bands 123j are located outside the cone-shaped spring 110. Preferably, the length of the flexible bands 123j is designed so that the cone-shaped spring 110 has a predetermined initial compression force. More preferably, the flexible band 123j is entirely made of plastic. Alternatively, the main body of the flexible band 123j is made of fabric, and the hook portion 1233j is made of metal or plastic. Optionally, the width and / or thickness of the body of the flexible band 123j is gradually tapered from one end to the other end. In one preferred embodiment, a module mounting portion 1213j is further provided on the bottom surface of the base 121j for removably mounting the elastic module to the elastic cushion. Preferably, the module mounting portion 1213j is a slide track or slide rail provided on the bottom surface of the base, and the base can be slidably assembled to the mounting frame of the elastic cushion by the module mounting portion 1213j. In another preferred embodiment, the base 121j may further be provided with lock structures 31 and 32 shown in Figs. 29A to 29C, lock structures 41 and 42 shown in Figs. 30A to 30C, lock structures 43 and 44 shown in Figs. 30D to 30F, or a T-shaped (or wedge-shaped) connector 51 shown in Figs. 31A to 31D.
[0113] 38A and 38B are respectively an exploded perspective view and a cross-sectional perspective view of an elastic module (spring package) according to another preferred embodiment of the present invention. As shown in the drawings, the elastic module (spring package) includes a cone-shaped spring 110 and a double-layered flexible cover, the double-layered flexible cover includes a truncated cone-shaped outer layer 123m and a truncated cone-shaped inner layer 123n located inside the truncated cone-shaped outer layer 123m, the truncated cone-shaped outer layer has a closed end and an open end, the open end of the truncated cone-shaped outer layer has a first flange 1231m extending outward, the truncated cone-shaped inner layer 123n has a closed end and an open end, and the open end of the truncated cone-shaped inner layer 123n has a second flange 1231n extending outward. The radial dimension of the frustoconical inner layer 123n is smaller than the radial dimension of the frustoconical outer layer 123m, and the height dimension of the frustoconical inner layer 123n is approximately equal to the height dimension of the frustoconical outer layer 123m, and the cone-shaped spring 110 is located between the frustoconical outer layer 123m and the frustoconical inner layer 123n. The first flange 1231m of the frustoconical outer layer 123m and the second flange 1231n of the frustoconical inner layer 123n are fixedly connected, and the closed end of the frustoconical outer layer and the closed end of the frustoconical inner layer are fixedly connected. Preferably, the height dimension of the frustoconical outer layer 123m and the height dimension of the frustoconical inner layer 123n are designed so that the cone-shaped spring between them has a predetermined initial compression force. Preferably, the outer frusto-conical layer 123m and the inner frusto-conical layer 123n are connected by adhesive or ultrasonic welding.
[0114] 39A and 39B exemplarily show the spring packages shown in Fig. 38A and 38B fixed to the base in different fixing forms, respectively, where in Fig. 39A the spring packages are fixedly connected to the base by the engagement parts in the base, while in Fig. 39B the spring packages are fixedly connected to the base by fasteners. Fig. 39C exemplarily shows the state when multiple elastic modules shown in Fig. 39A or 39B are fitted. The base may further be provided with locking structures 31 and 32 shown in Fig. 29A to 29C, locking structures 41 and 42 shown in Fig. 30A to 30C, locking structures 43 and 44 shown in Fig. 30D to 30F, or T-shaped (or wedge-shaped) connector 51 shown in Fig. 31A to 31D.
[0115] Fig. 40A to Fig. 40C exemplarily show another embodiment of a non-pyramidal spring used in the elastic module, and Fig. 40D exemplarily shows an elastic module including the spring shown in Fig. 40B. Fig. 40E exemplarily shows another embodiment of a pyramidal spring used in the elastic module, and Fig. 40F exemplarily shows an elastic module 200a including the pyramidal spring shown in Fig. 40E, which includes a spring supporter 220a and a pyramidal spring 110b mounted therein.
[0116] Fig. 40G exemplarily shows another embodiment of the cone-shaped spring used in the elastic module of the present invention, in which at least a part of the cone-shaped spring is formed with a double helical thread, and preferably, the double wire spring part with the double helical thread occupies about 2 / 3 of the total height of the cone-shaped spring. Fig. 40H exemplarily shows an elastic module with the cone-shaped spring shown in Fig. 40G.
[0117] Meanwhile, the present invention further provides an elastic cushion including various elastic modules as described above.
[0118] Fig. 41A shows an example of an elastic cushion according to one preferred embodiment of the present invention. As shown in the drawing, the elastic cushion includes various elastic modules described in the above embodiments, a first sponge pad 1300a, a second sponge pad 1100a, and an outer cover 1200a, each first sponge pad has a plurality of holes, each hole is configured so that a part of the corresponding elastic module can pass through it, the second sponge pad 1100a is fitted into the first sponge pad 1300a, and the cover 1200a is fitted into the second sponge pad 1100a to enclose the elastic module, the first sponge pad, and the second sponge pad.
[0119] FIG. 41B illustrates an elastic cushion according to another preferred embodiment of the present invention, which differs from the elastic cushion shown in FIG. 41A in that, as shown in FIG. 41C, the first sponge pad 1300b includes multiple independent parts arranged side by side, and each independent part may have different hardness and color, so that they can be installed at different positions of the bed pad according to needs and are easy to distinguish.
[0120] Fig. 41D shows an elastic cushion according to another preferred embodiment of the present invention. As shown in the drawing, the elastic cushion is different from the elastic cushion shown in Fig. 41A and Fig. 41B in that the elastic cushion further comprises a fastening net 1400a, the fastening net 1400a comprises a plurality of annular portions, and each annular portion is configured so that a part of the corresponding elastic module can pass through it. When the fastening net 1400a is installed on the elastic module, the vertical distance of the annular portion from the top end of the elastic module is about 1 / 3 of the total height of the elastic module.
[0121] FIG. 42A illustrates an exemplary fastening mesh assembly 1400b for use in an elastic cushion according to one preferred embodiment of the present invention, and FIG. 42B illustrates an exemplary partial cross-sectional view of the fastening mesh assembly shown in FIG. 42A. As shown in the drawings, the fixed mesh net assembly 1400b includes a flexible piece 1410b having a plurality of holes and a plurality of cap members 1420b, the positions of the holes in the flexible piece 1410b corresponding to the positions of the elastic modules, and each cap member 1420b has a cavity 1421b for accommodating the top portion of the elastic module and a flange 1422b surrounding the cavity, wherein the dimension of the wall forming the cavity 1421b is smaller than the dimension of the hole so that the wall can pass through the hole, and the dimension of the flange 1422b is larger than the dimension of the hole so that the flange can join a portion of the flexible piece around the hole, and wherein the flange 1422b is fixedly connected to the portion of the flexible piece around the hole by adhesive or ultrasonic welding, and the cavity 1421b can accommodate the top of the elastic module.
[0122] 42C is an exploded view of a fastening net assembly 1400c used in an elastic cushion according to one preferred embodiment of the present invention, and as shown in the drawing, the fastening net assembly 1400c includes a flexible piece 1410c without holes, a plurality of upper cap members 1420c or 1420d located on one side of the flexible piece and each having a first engagement feature 1422c or 1422d, and a plurality of lower cap members 1430c or 1430d located on the other side of the flexible piece and each having a second engagement feature 1432c or 1432d. The first engagement feature of the upper cap member is engaged with the second engagement feature of the lower cap member, and is configured to sandwich the flexible piece between the upper cap member and the lower cap member, and the lower cap members 1430c, 1430d can receive the top of the elastic module.
[0123] Figures 42D and 42E exemplarily show the process of the upper cap member 1420c and the lower cap member 1430c clamping the flexible piece 1410c. As shown in the drawings, the upper cap member 1420c has a ring-shaped wall 1421c and an annular protrusion 1422c located outside the ring-shaped wall 1421c, and the lower cap member 1430c has a circular hole 1431c, and the annular protrusion 1422c can engage with the edge 1432c of the circular hole 1431c, thereby clamping the flexible piece 1410c between the two.
[0124] Figures 42F and 42G exemplarily show the process of the upper cap member 1420d and the lower cap member 1430d clamping the flexible piece 1410c. As shown in the drawings, the difference between the cap members 1420c and 1430c is that the inner and outer sides of the ring-shaped walls of the upper cap member 1420d are both provided with an annular protrusion 1422d, and the lower cap member 1430d is provided with an annular groove 1431d, and an engagement portion 1432d is installed in the annular groove 1431d, and the annular protrusion 1422d can engage with the engagement portion 1432d in the annular groove 1431d, thereby clamping the flexible piece 1410c between the two.
[0125] Fig. 42H shows an elastic cushion according to another preferred embodiment of the present invention, and Fig. 42I shows a cross-sectional view of the elastic cushion. As shown in the drawings, the elastic cushion includes the various elastic module assemblies shown in the above embodiments, particularly Fig. 33J to Fig. 33N. The elastic cushion of this embodiment further includes a spring pad 1500a laid on the elastic module assembly, and an outer cover 1600a covered by the spring pad 1500a to encase the elastic module assembly and the spring pad 1500a, and having a quilted sponge layer.
[0126] Further, Fig. 42L exemplarily illustrates the spring pad 1500a, and Fig. 42M exemplarily illustrates a partial cross-sectional view of the spring pad 1500a. As shown in the drawings, the spring pad 1500a includes a plurality of columnar springs 1530a, a first nonwoven fabric layer 1510a located on one side of the plurality of columnar springs 1530a, and a second nonwoven fabric layer 1520a located on the other side of the plurality of columnar springs 1530a. The first nonwoven fabric layer 1510a and the second nonwoven fabric layer 1520a are connected around each columnar spring 1530a by adhesive or ultrasonic welding, thereby separating adjacent columnar springs and fixing the columnar springs between the two nonwoven fabric layers to form an integral spring pad. In other words, the first nonwoven layer 1510a and the second nonwoven layer 1520a are connected around each small prismatic spring 1530a by adhesive or ultrasonic welding to form a compartment for accommodating the small prismatic springs, thereby isolating adjacent small prismatic springs from each other. The elastic modulus of the prismatic springs 1530a is preferably smaller than that of the springs in the elastic module located in the bottom layer, so as to provide a hardness close to that of a sponge. And the plurality of prismatic springs 1530a are preferably more densely packed than the plurality of elastic modules located in the bottom layer, so as to provide better comfort. In other words, the radial dimension of the prismatic springs 1530a is preferably smaller than that of the springs in the elastic module, and the number of the prismatic springs 1530a is preferably greater than the number of the elastic modules. The spring pad 1500a can replace a sponge pad, and is comfortable, breathable, and cost-saving.
[0127] FIG. 42J exemplarily shows an elastic cushion according to another preferred embodiment of the present invention, and FIG. 42K exemplarily shows a cross-sectional view of the elastic cushion. As shown in the drawings, the elastic cushion includes various elastic modules or elastic module assemblies shown in the above embodiments, particularly in FIG. 29A to FIG. 31P. The elastic cushion of this embodiment also includes a spring pad 1500a laid on the elastic module assembly, and an outer cover 1600a with a quilted sponge layer, which is covered by the spring pad 1500a and envelops the elastic module assembly and the spring pad 1500a. Different from the elastic cushion shown in FIG. 42H and FIG. 42I, the elastic cushion of this embodiment further includes a fastening net assembly 1400b or 1400c shown in FIG. 42A to FIG. 42G. The fastening net assembly 1400b or 1400c is placed between the elastic module and the spring pad 1500a.
[0128] Fig. 42N shows an example of an elastic cushion according to another preferred embodiment of the present invention. Different from the embodiment shown in Fig. 42J and Fig. 42K, in this embodiment, the sponge pad 1300a shown in Fig. 41A replaces the fastening net assembly 1400b or 1400c. As described above, the sponge pad 1300a has a plurality of holes, and each hole is configured so that a part of the corresponding elastic module can pass through it. Similarly, the sponge pad 1300a may be replaced by the sponge pad 1300b including a plurality of independent parts arranged side by side as shown in Fig. 41B and Fig. 41C.
[0129] Fig. 42P shows an elastic cushion according to another preferred embodiment of the present invention, which includes the above-mentioned spring pad 1500a and an outer cover 1700a covering the outside of the spring pad 1500a. As shown in the drawing, the outer cover 1700a has a quilted sponge layer 1710a, which is located on both the upper and lower sides of the spring pad 1500a. As described above, since the elastic modulus of the spring in the spring pad 1500a is low, the elastic cushion can be folded in a compressed state, which can save storage space. The compression and folding process is as shown in Fig. 42Q.
[0130] FIG. 43A shows an elastic cushion according to another preferred embodiment of the present invention. As shown in the drawing, the elastic cushion includes a bottom cloth 1200d, a first outer cover 1300d, a plurality of elastic modules described in the above-mentioned embodiments, and a plurality of sponge blocks 1400d, in which the first outer cover has an open bottom end and a closed top end, and the edge of the bottom end of the first outer cover 1300d is machine-sewn to the edge of the bottom cloth 1200d to form a closed storage space, and each elastic module includes a spring supporter and a spring mounted in the spring supporter, and the plurality of elastic modules are installed in the storage space, and the plurality of sponge blocks are installed in the storage space, and each sponge block is installed on the top of a corresponding elastic module in the plurality of elastic modules. The first outer cover 1300d includes a plurality of independent compartments, and in each of the compartments, one or more of the elastic modules and one or more of the sponge blocks 1400d are installed. The bottom cloth 1200d has a plurality of openings, each of which corresponds to one or more of the plurality of compartments, and each of the openings is provided with a curtain 1210d for opening and closing the opening, and a fastener 1220d provided on the curtain (see FIG. 43D). Preferably, as shown in FIG. 43B, the elastic cushion may further include a second outer cover 1500d fitted to the outside of the first outer cover 1300d.
[0131] FIG. 43C exemplarily shows an outer cover 1300d having compartments in the elastic cushion shown in FIG. 43A and FIG. 43B, and each compartment has the same shape.
[0132] In Fig. 43D and Fig. 43E, the first outer cover 1300d is exemplarily shown with the bottom cloth 1200d sewn by machine, in Fig. 43D, the curtain 1210d and the fastener 1220 of the bottom cloth are in an open state, and as can be seen from the drawing, each elongated opening of the bottom cloth corresponds to a row of compartments of the outer cover 1300d, and in Fig. 43E, the curtain 1210d and the fastener 1220 of the bottom cloth are in a closed state.
[0133] Figures 43F to 43H show an example of an outer cover with compartments of different shapes / sizes according to another embodiment of the present invention, which can be used to accommodate different types of elastic modules. Figure 43I shows an example of an outer cover with compartments in a honeycomb shape (hexagonal) according to one preferred embodiment of the present invention.
[0134] Figures 44A to 44E show an exemplary sponge block according to another embodiment of the present invention, and as can be seen from the drawings, the sponge block may be flat, may have protrusions or depressions, and may be used for different types of elastic modules.
[0135] FIG. 45A exemplarily shows a sponge block according to one preferred embodiment of the present invention. As shown in the drawing, the sponge block 1400d has a recess 1410d for receiving the top of an elastic module, and a groove 1420d located on the four sides of the recess 1410d, which contributes to folding and compressing the sponge block. FIG. 45B exemplarily shows the sponge block shown in FIG. 45A in a folded / compressed state, and as shown in FIG. 45C, the sponge block after folding can be stored in a storage cup. As shown in FIG. 46A to FIG. 46C, the sponge block 1400d may be placed in a long-shaped storage bag in its natural state, or the storage bag filled with the sponge block may be folded and placed in a box, or may be wrapped and fixed.
[0136] 47A to 47C exemplarily show another packaging method for the sponge blocks according to the present invention, in which each sponge block 1400d can be compressed and stored in one box.
[0137] 48A to 48F exemplarily show a sponge block storage box and a sponge block storage method according to one preferred embodiment of the present invention. As shown in the drawings, the sponge block storage box has a narrow hollow rectangular shape, and at least one end along the vertical direction of the sponge block storage box is provided with an opening 2010d for passing and inserting a sponge block 1400d. The sponge block storage box has a side wall that can be opened in its entirety to form a storage box cover 2020d in order to easily remove the sponge block 1400d stored therein. A flange 2030d is provided around the opening 2010d, and the flange 2030d receives the periphery of the stored sponge block 1400d so as to prevent the sponge block 1400d from being detached from the storage box through the opening 2010d. Optionally, an opening may also be provided at the other vertical end of the sponge block storage box.
[0138] Figures 49A and 49B show an example of an outer cover 2000d used in an elastic cushion according to one preferred embodiment of the present invention, in which the outer cover 2000d has an open bottom end (top end in the figure) and a closed top end (bottom end in the figure), and the outer cover 2000d includes a top portion 2100d having four edges 2110d and four side portions 2200d, each of which is machine-sewn to a corresponding edge of the four edges 2110d of the top portion 2100d, and a fastener 2210d is provided on each of the adjacent edges of each of two adjacent side portions 2200d, thereby detachably connecting each adjacent edge of the side portions 2200d so as to partially encase the multiple elastic modules. Preferably, the top surface portion 2100d includes, from the inside to the outside of the elastic cushion, a nonwoven fabric layer, a high-elasticity sponge layer, a nonwoven fabric layer, a quilted sponge layer, a cotton batting layer and a cloth layer, and each side portion 2200d includes, from the inside to the outside of the elastic cushion, a nonwoven fabric layer, a quilted sponge layer, a cotton batting layer and a cloth layer.
[0139] Preferably, each side portion 2200d includes a finish portion 2300d integrally sewn thereto, each finish portion including only a layer of fabric material.
[0140] In one preferred embodiment, the elastic cushion further includes one or more pairs of strings 2400d disposed on the finishing portion 2200d, which are used to tie the outer cover to the elastic modules.
[0141] 50A and 50B are illustrative diagrams showing an outer cover used in an elastic cushion according to another preferred embodiment of the present invention. As shown in the drawings, the outer cover 3000d is a closable outer cover, and includes a top portion 3100d, four side portions 3210d, 3220d, 3230d, and 3240d, and a bottom portion 3300d. A first edge of the top portion 3100d is machine-sewn to the first side portion 3210d, a second edge of the top portion opposite to the first edge is machine-sewn to the second side portion 3220d, a first edge of the bottom portion 3300d is machine-sewn to the first side portion 3210d, and two edges of the bottom portion 3300d perpendicular to the first edge are machine-sewn to the third side portion 3230d and the fourth side portion 3240d, respectively. Among them, the top surface portion 3100d, the four side surface portions 3210d, 3220d, 3230d, 3240d and the bottom surface portion 3300d all have a zipper 3400d installed on all of the non-sewn edges, thereby detachably connecting the non-sewn edges together so as to enclose a plurality of elastic modules. Preferably, the top surface portion 3100d includes, from the inside to the outside of the elastic cushion, a nonwoven fabric layer, a high-elastic sponge layer, a nonwoven fabric layer, a quilted sponge layer, a cotton layer and a fabric layer, while the side surface portions 3210d, 3220d, 3230d, 3240d include, from the inside to the outside of the elastic cushion, a nonwoven fabric layer, a quilted sponge layer, a cotton layer and a fabric layer, while the bottom surface portion 3300d includes only a fabric layer.
[0142] 51A to 51C show, in drawing form, the configurations of different portions of the outer cover of the elastic cushions marked with "AA", "BB", and "CC" in FIGS. 49A, 49B and 50A, 50B, respectively.
[0143] Those skilled in the art will recognize that the various springs, spring supporters, bases, end covers, flexible bands, flexible covers, and various functional assemblies / members (e.g., module mounting parts for mounting elastic modules to mounting frames, various engagement parts / assemblies for restricting or fixing the relative positional relationship between adjacent elastic modules, fixing parts / assemblies, locking structures / assemblies, limiters, etc.) described in the above embodiments may be arbitrarily combined as needed to form different elastic modules. In addition, the spring packages, elastic modules, mounting frames, sponge covers, sponge blocks, fixing nets, elastic cushion outer covers, elastic cushion bottom cloths, etc. described in the above embodiments may be arbitrarily combined as needed to form different elastic cushions.
[0144] The scope of protection of the present invention is determined solely by the claims. Based on the teachings of the present invention, those skilled in the art can easily imagine the replacement structures of the structures disclosed in the present invention as feasible replacement embodiments, or the combination of the embodiments disclosed in the present invention to create new embodiments, which also fall within the scope of the appended claims.
Claims
1. An elastic module of an elastic cushion for making furniture, comprising: The elastic module is A cone-shaped spring (110; 110a; 110b), a plurality of flexible bands (123e; 123f); Each of the flexible bands is a band-shaped main body portion (1231e; 1231f) including a first end and a second end opposite the first end along a longitudinal direction of the flexible band; a first hook (1232e; 1232f) located at the first end of the body portion; a second hook (1233e; 1233f) located at the second end of the body portion; The first hook is configured to be removably hooked onto a large diameter end of the cone-shaped spring, and the second hook is configured to be removably hooked onto a small diameter end of the cone-shaped spring, An elastic module, wherein when the first hook and the second hook are respectively hooked onto the cone-shaped spring, the plurality of flexible bands are positioned outside the cone-shaped spring.
2. The elastic module of claim 1 , wherein the lengths of the flexible bands are set so that when the first hook and the second hook are respectively hooked onto the cone-shaped spring, the cone-shaped spring has a predetermined initial compression force.
3. The elastic module of claim 1 , wherein the flexible band (123e) is a one-piece integrally molded member.
4. The elastic module according to claim 3, wherein said flexible band (123e) is made of plastic.
5. The elastic module of claim 2, wherein the body portion (1231f) of the flexible band (123f) is made of a fabric, and the first hook (1232f) and the second hook (1233f) of the flexible band (123f) are made of metal or plastic.
6. 3. The elastic module according to claim 2, wherein the width and / or thickness of the body portion (1231e; 1231f) of the flexible band (123e; 123f) decreases or increases along its length from the first end to the second end.
7. The resilient module of claim 1 , wherein at least a portion of the cone-shaped spring is a double wire spring portion.
8. 8. The resilient module of claim 7, wherein the double wire spring portion extends from the large diameter end of the cone-shaped spring to approximately 2 / 3 the height of the cone-shaped spring.
9. A resilient cushion for furniture, comprising: The elastic cushion is A plurality of elastic modules according to any one of claims 1 to 8; a first sponge pad (1300a; 1300b) having a plurality of holes, each hole being configured to allow a portion of a corresponding elastic module to pass therethrough; A second sponge pad (1100a) laid on one or more of the first sponge pads; An elastic cushion comprising: an outer cover (1200a) that is covered by the second sponge pad to encase the elastic module, the first sponge pad, and the second sponge pad.
10. The elastic cushion according to claim 9, wherein the first sponge pad (1300b) comprises a plurality of independent portions arranged side by side, each independent portion having a different hardness and color.
11. The elastic cushion of claim 9, further comprising a fastening net (1400a) installed under the first sponge pad, the fastening net having a plurality of annular portions, each of the annular portions being configured to allow a portion of a corresponding elastic module to pass therethrough.
12. 12. The resilient cushion of claim 11, wherein when the fastening net is installed on the resilient module, the vertical distance of the annular portion from the top end of the resilient module is about 1 / 3 of the overall height of the resilient module.
13. The resilient cushion further comprises an anchoring netting assembly (1400b); The anchoring net assembly comprises: a flexible piece (1410b) having a plurality of holes; a plurality of cap members (1420b); Each cap member includes a cavity (1421b) and a flange (1422b) extending around the cavity; a size of the hole is larger than a size of the wall forming the cavity and smaller than a size of the flange, so that the wall can pass through the hole and the flange can join a portion of the flexible piece around the hole; the flange is fixedly connected to the portion of the flexible piece surrounding the hole by adhesive or ultrasonic welding; The resilient cushion of claim 9 , wherein the recess is configured to accommodate a top portion of the resilient module.
14. The resilient cushion further comprises an anchoring netting assembly (1400c); The anchoring net assembly comprises: A flexible piece (1410c) without holes; a plurality of upper cap members (1420c; 1420d) located on one side of the flexible piece and each having a first engagement feature (1422c; 1422d); a plurality of lower cap members (1430c; 1430d) located on the other side of the flexible piece and each of the lower cap members having a second engagement feature (1432c; 1432d); the first engagement feature of the upper cap member is configured to engage with the second engagement feature of the lower cap member and to sandwich the flexible piece between the upper cap member and the lower cap member; The resilient cushion of claim 9 , wherein the lower cap member is configured to receive a top portion of the resilient module.
15. An elastic module of an elastic cushion for making furniture, comprising: The elastic module is A cone-shaped spring (110; 110a; 110b) having a large diameter end and a small diameter end opposite the large diameter end; A base (121j) including a spring fixing portion (1212j) configured to fix the large diameter end of the cone-shaped spring; a plurality of flexible bands (123j); Each of the flexible bands has a belt-shaped body portion, a first end portion fixedly connected to the base, and a second end portion opposite the first end portion and having a hook (1233j), the hook portion removably hooking onto the small diameter end portion of the cone-shaped spring; The flexible bands are positioned outside the cone-shaped spring when the hooks are hooked onto the small diameter end of the cone-shaped spring, an elastic module.
16. The resilient module of claim 15 , wherein the plurality of flexible bands are uniformly disposed about the base.
17. 17. The elastic module of claim 16, wherein the lengths of the flexible bands are set so that the cone-shaped spring has a predetermined initial compression force when the cone-shaped spring is attached to the base and the hook of the flexible band is hooked onto the small diameter end of the cone-shaped spring.
18. The resilient module according to claim 16, wherein said flexible band (123j) is made entirely of plastic.
19. The resilient module according to claim 16, wherein the body portion of the flexible band (123j) is made of a fabric and the hooks (1232j) of the flexible band (123j) are made of metal or plastic.
20. 17. The elastic module according to claim 16, wherein the width and / or thickness of the body portion of the flexible band (123j) tapers from one end to the other.
21. The elastic module of claim 16, wherein the base further comprises a module mounting portion (1213j) for removably mounting the elastic module to a mounting frame of an elastic cushion.
22. The elastic module according to claim 21 , wherein the module mounting portion is configured as a slide track installed on a bottom surface of the base, so that the base is assembled to a mounting frame on the elastic cushion in a slidable manner by the slide track.
23. The elastic module according to claim 16, wherein the base further includes locking structures (41; 42) respectively installed on the four sides of the base, the locking structures being configured to limit relative movement between adjacently arranged elastic modules by matching with the locking structures of the other adjacently arranged elastic modules.
24. The resilient module of claim 16 , wherein at least a portion of the cone-shaped spring is a double wire spring portion.
25. 25. The resilient module of claim 24, wherein the double wire spring portion extends from the large diameter end of the cone-shaped spring to approximately 2 / 3 the height of the cone-shaped spring.
Citation Information
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