A suspension support system comprising modular components
By combining modular component design with knob limit seats, the problems of low modularity and poor stability of traditional suspension support systems are solved, realizing a suspension support system that can be flexibly adjusted and installed efficiently, thus improving safety and structural stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 杭州益咕科技有限公司
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-24
AI Technical Summary
Traditional suspension support systems have low modularity and lack flexible multi-directional connection capabilities, making it difficult to build large-span suspension systems or adapt to different spatial forms. Furthermore, the non-standardized component interfaces result in poor stability and high maintenance costs.
The modular component design includes suspended components, plate-shaped components, and block-shaped components. Quick connection and stable fixation are achieved through knobs and rotating limit seats. Standardized mounting slots and connectors are used to form a multi-directional support structure, enhancing the versatility and safety of the components.
It enables flexible adjustment and multi-directional connection of the suspension support system, improves installation efficiency and safety, reduces maintenance costs, and enhances structural stability and resistance to deformation.
Smart Images

Figure CN224549757U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of amusement facility technology, and in particular relates to a suspension support system including modular components. Background Technology
[0002] In the field of modular amusement facilities, the technological limitations of traditional suspension support systems severely restrict the safety, fun, and flexibility of children's play areas. Existing amusement equipment mostly adopts prefabricated, fixed structures with fixed component shapes and connection methods, making it difficult to dynamically adjust according to children's growth needs, site space, or creative play ideas. When children grow older or the site is renovated, the equipment often faces obsolescence because it cannot be reconfigured, resulting in resource waste. While some modular amusement facilities have certain assembly capabilities, the component interface design is simple, only enabling simple horizontal or vertical connections, making it impossible to construct complex play areas such as multi-level suspensions or three-dimensional tunnels, thus limiting children's creativity and exploratory desires.
[0003] Therefore, it is necessary to provide a new modular component suspension support system to solve the following problems: low modularity, lack of flexible multi-directional connection capability, difficulty in constructing large-span suspension systems or adapting to the needs of different spatial forms; easy bending and deformation under load, and insufficient overall stability; inconvenient installation and poor stability of suspension connection parts; non-standardized component interfaces of traditional suspension structures, poor component versatility, and high maintenance costs. Utility Model Content
[0004] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a suspension support system including modular components to meet user needs.
[0005] To achieve the above objectives, this utility model provides a suspension support system including modular components, comprising...
[0006] A suspended component, comprising a suspension unit and suspension bases connected to both ends of the suspension unit;
[0007] At least one pair of parallel plate-shaped members, each including a plurality of first mounting slots arranged along its length, wherein the positions of the first mounting slots on the two plate-shaped members correspond to each other, and the suspension base passes through the first mounting slots;
[0008] At least one block member, a single block member is supported at the end of one or more pairs of plate members, and several block members are respectively supported at the ends and / or span positions of the plate members.
[0009] Preferably, the suspension base includes a knob, a rotating shaft, a rotating limiting seat, and a fixed reference seat. The rotating shaft passes through the rotating limiting seat and the fixed reference seat. One end of the rotating shaft is connected to the suspension unit, and the other end of the rotating shaft is connected to the knob. The knob is adapted to drive the rotating limiting seat to rotate synchronously through the rotating shaft.
[0010] The suspension base has two forms:
[0011] Preparatory configuration: The knob is aligned with the fixed reference base, allowing the suspension base to be inserted along the extension direction of the first mounting slot. A stop portion is provided at the end of the fixed reference base away from the knob, and this stop portion abuts against the first sidewall of the first mounting slot to indicate that insertion is complete.
[0012] Locking mode: When the knob rotates away from the fixed reference base, the stop part and the knob respectively abut against the first side wall and the second side wall of the first mounting groove to form a misalignment limit.
[0013] Preferably, one of the rotating limiting seat and the fixed reference seat includes a limiting protrusion, and the other of the rotating limiting seat and the fixed reference seat includes a limiting groove. The limiting protrusion slides within the limiting groove to a limited extent, thereby limiting the rotation range of the knob to 30° to 90°, avoiding excessive rotation that could lead to failure, ensuring the stability and consistency of the suspension base during shape switching, improving the reliability and safety of component connections, and avoiding safety hazards caused by uncontrolled knob rotation.
[0014] Preferably, one of the rotating limiting seat and the fixed reference seat includes a ball assembly, and the other of the rotating limiting seat and the fixed reference seat includes a prompting groove. The ball assembly includes a spring and a ball. The prompting groove includes a groove segment and a prompting area disposed on the extension path of the groove segment. When the rotating limiting seat and the fixed reference seat rotate relative to each other, the ball assembly moves synchronously. The spring is adapted to drive the ball to fall into the prompting area to indicate that the ready mode and the locked mode have been switched into position, generating a "click" tactile feedback, which effectively improves the mode switching recognition rate.
[0015] Preferably, the fixed reference base includes a fixed end face located away from the knob, the rotating limiting base includes a rotating end face facing the fixed end face, the limiting groove and the prompting groove are symmetrically arranged on the fixed end face about the center of the fixed reference base, and the limiting protrusion and the ball are symmetrically arranged on the rotating end face about the center of the rotating limiting base. This design optimizes the internal structural layout of the suspension base, making the force on each component more even, ensuring the stability of the structure during knob rotation, and facilitating mold design and assembly during manufacturing, reducing production costs and improving production efficiency.
[0016] The rotating limiting seat includes a limiting groove adapted to receive the spring, and the limiting groove has an open port facing the fixed end face.
[0017] Preferably, the suspension unit includes at least one of a rope-like structure, a strip-like structure, a chain-like structure, and a rod-like structure to meet different scenarios and functional requirements.
[0018] Preferably, the suspension unit is connected to the rotating shaft via a ring buckle structure, wherein: the ring buckle structure includes an integral ring buckle that connects the suspension unit and the rotating shaft simultaneously, or includes a first ring buckle connecting the suspension unit and a second ring buckle connecting the rotating shaft, and the first ring buckle and the second ring buckle are detachably connected, supporting quick replacement of the suspension unit and enhancing the versatility and flexibility of the components, or the first ring buckle and the second ring buckle are not detachably connected.
[0019] Preferably, the stop portion is stepped, which has a larger contact area and stronger shear resistance, further improving the firmness of the component connection.
[0020] Preferably, the first sidewall and the second sidewall are inner and outer wall surfaces that are arranged opposite to each other in the depth direction of the first mounting groove.
[0021] Preferably, the block-shaped member includes at least a pair of parallel horizontal surfaces and several sets of circumferential surfaces sandwiched between the horizontal surfaces. The horizontal surfaces are adapted to support the longitudinally stacked block-shaped members. Each set of circumferential surfaces is symmetrically arranged, and each set of circumferential surfaces forms at least one second mounting groove. The plate-shaped member can be inserted into the second mounting groove or pass through the second mounting groove of the same set of circumferential surfaces.
[0022] Preferably, the second mounting slots on each set of circumferential surfaces are symmetrically distributed on both sides of an axis of symmetry, the axis of symmetry being adapted to pass through the center of the circumferential surface, and the axis of symmetry being parallel to the horizontal plane, wherein:
[0023] When the circumferential surface includes a second mounting groove, the second mounting groove is either horizontally or vertically arranged.
[0024] When the circumferential surface includes a plurality of second mounting slots, the second mounting slots are distributed in a cross shape, with one second mounting slot being horizontally arranged and the other second mounting slot being vertically arranged.
[0025] When the circumferential surface includes no fewer than three second mounting slots, the second mounting slots are radially distributed.
[0026] Preferably, the first mounting groove and the second mounting groove have the same cross-section, or the cross-section of the first mounting groove can completely cover the cross-section of the second mounting groove, so that the plate-shaped members can interpenetrate each other through the first mounting groove, or the circumferential surface includes at least two orthogonally arranged second mounting grooves, and the two plate-shaped members can extend into the same block-shaped member through two sets of orthogonal second mounting grooves and be orthogonal within the block-shaped member.
[0027] Preferably, the suspension support system includes several pairs of the plate-like members, wherein one pair of the plate-like members constitutes a double-rail support structure suitable for supporting the suspended member, wherein:
[0028] The horizontal plane allows the plate-shaped members to pass through, and at least one of the horizontal planes includes the second mounting groove. Another pair of plate-shaped members passes through several longitudinally stacked block-shaped members to form a support tower suitable for supporting the double-track support structure. This design can raise the height of the support tower to facilitate users suspending themselves from the suspension unit to exercise their upper limb strength. And / or, another pair of plate-shaped members passes through the second mounting groove through several transversely arranged block-shaped members to form a support tower suitable for supporting the double-track support structure. This design provides lateral support for the plate-shaped members that serve as the double-track support structure. In addition, the width of the support tower can be widened to accommodate different specifications of the suspension members, or several independent block-shaped members at the same end can be connected into a whole to improve the resistance to displacement, or when the plate-shaped members pass through several integrally formed block-shaped members laterally, they can also form reinforcing ribs to improve bending stiffness.
[0029] Preferably, at least one first transverse connector is provided between the two parallel plate-shaped members of the double-track support structure, and the two ends of the first transverse connector are detachably connected to the first mounting grooves of the two plate-shaped members respectively; and / or, at least one second transverse connector is provided between the two block-shaped members at the same end, and the two ends of the second transverse connector are detachably connected to the two block-shaped members respectively.
[0030] Preferably, one of the horizontal surfaces has a boss, and the other horizontal surface has a first opening into which the boss can be inserted / engaged, and the second transverse connector has a plate-like structure and includes several second openings suitable for engaging the boss.
[0031] Preferably, the circumferential surface includes a connecting groove disposed around the second mounting groove, the second transverse connector is columnar and includes a support section and connecting sections extending outward from both ends of the support section, the connecting sections are adapted to be inserted into the connecting groove, and a stop baffle is provided at the junction of the support section and the connecting section, the stop baffle abuts against the circumferential surface to indicate that the connecting section is inserted into place.
[0032] Preferably, the cube-shaped block component is defined as a type A block component, and the side length L of the type A block component is between 30 cm and 40 cm. The main material of the type A block component is expanded polyethylene (EPP), and its weight is between 2.4 kg and 2.8 kg. Two type A block components are integrally connected laterally, omitting the circumferential surface of the connecting end to form a type B block component, and the weight of the type B block component is between 3.8 kg and 4.2 kg.
[0033] The beneficial effects of this utility model are:
[0034] I. Through modular combinations of three types of components—suspended components, plate-like components, and block-like components—the structural form can be freely adjusted according to the usage scenario (such as home fitness, children's play, temporary support, etc.), and damaged components can be replaced individually. For example, by adding or removing plate-like components to change the support span, or by supporting block-like components at the ends or between spans of plate-like components, diverse support layouts can be formed. The system's center of gravity can be flexibly adjusted to meet the suspension needs of objects of different weights. The construction process can guide children to understand the principles of mechanical support and cultivate spatial thinking and creativity through independent combination of components; parents can participate in the construction, enhancing parent-child interaction.
[0035] Second, the rotary limit seat is driven to rotate synchronously by rotating the knob, achieving a rapid switch from the ready state to the locked state. In the ready state, the knob is aligned with the fixed reference seat, allowing the suspension base to be quickly inserted into the first mounting slot without complex adjustments or tool assistance, significantly improving installation efficiency. In the locked state, the knob rotates off-center relative to the fixed reference seat, and the stop part and the knob respectively abut against the two side walls of the first mounting slot to form a misaligned limit. Compared with traditional snap-fit or bolt connections, the connection is more secure, improving tensile strength and effectively preventing components from falling off, thus enhancing safety during use.
[0036] Third, by adding or removing block members at the ends of plate-like members or between spans, the support span and height can be changed. Furthermore, the dimensions of the first mounting slot of the plate-like members and the second mounting slot of the block-like members (horizontal, vertical, or cross-shaped distribution) are standardized, allowing the plate-like members to orthogonally insert into the block-like members to form a three-dimensional support frame, thereby improving the structure's resistance to deformation.
[0037] Fourth, the first lateral connector and the second lateral connector between the block components in the double-track support structure can connect parallel plate-like components or adjacent block components into a whole, reducing the swaying amplitude when children are active. The double-track support structure, together with the first and second lateral connectors, forms a closed frame that can resist the lateral forces generated by children jumping, reducing the overall structural swaying. Attached Figure Description
[0038] Figure 1 is a structural schematic diagram of a suspension support system including modular components provided in Embodiment 1.
[0039] Figure 2 is an exploded view of a suspension support system including modular components provided in Embodiment 1.
[0040] Figure 3 is a structural schematic diagram of the type B block component provided in Example 1.
[0041] Figure 4 shows an exploded view and a partially enlarged view of the suspension base provided in Example 1.
[0042] Figure 5 is a cross-sectional view and a partially enlarged schematic diagram of the suspension base provided in Embodiment 1.
[0043] Figure 6 is a bottom view of the fixed reference base provided in Embodiment 1.
[0044] Figure 7 is a structural schematic diagram of a suspension support system including modular components provided in Embodiment 2.
[0045] Figure 8 is an orthogonal schematic diagram of the inner plate-shaped component of the type A block component provided in Example 2.
[0046] In the diagram: 1. Suspension component; 11. Suspension unit; 12. Suspension base; 121. Knob; 122. Rotating shaft; 123. Rotation limit seat; 1231. Rotating end face; 1232. Limiting groove; 124. Fixed reference seat; 1241. Stop part; 1242. Fixed end face; 125. Limiting protrusion; 126. Limiting groove; 1271. Spring; 1272. Ball; 128. Indication groove; 1281. Groove section; 1282. Indication area; 131. First ring buckle; 132. Second ring buckle; 21. Horizontal plane; 211. Opening; 22. Circumferential plane; 221. Second mounting groove; 23. Type A block component; 24. Type B block component; 3. Plate component; 31. First side wall; 32. Second side wall; 33. First mounting groove. Detailed Implementation
[0047] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0048] It should also be noted that, in order to avoid obscuring the present invention with unnecessary details, only the structures and / or processing steps closely related to the present invention are shown in the accompanying drawings, while other details that are not closely related to the present invention are omitted.
[0049] Additionally, it should be noted that the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0050] Example 1
[0051] like Figure 1-6 As shown, a suspension support system including modular components includes a suspension component 1, a pair of parallel plate-shaped components 3, and block-shaped components. The suspension component 1 includes a suspension unit 11 and suspension bases 12 connected to both ends of the suspension unit 11. The pair of plate-shaped components 3 are adapted to form a double-track support structure suitable for supporting the suspension component 1. The block-shaped components are type A block-shaped component 23 and type B block-shaped component 24. Type A block-shaped component 23 has a cubic structure, and type B block-shaped component 24 is formed by two type A block-shaped components 23 integrally connected laterally, omitting the circumferential surface 22 of the connecting end. The two type B block-shaped components 24 are supported at both ends of the plate-shaped components 3, forming a support tower suitable for supporting the double-track support structure. The plate-shaped components 3 include a plurality of first mounting slots 33 arranged along their length direction. The positions of the first mounting slots 33 on the pair of plate-shaped components 3 correspond to each other, and the suspension bases 12 pass through the first mounting slots 33.
[0052] In this embodiment, the suspension unit 11 has a rod-like structure, and the suspension base 12 includes a knob 121, a rotating shaft 122, a rotating limiting seat 123, and a fixed reference seat 124. The rotating shaft 122 passes through the rotating limiting seat 123 and the fixed reference seat 124. One end of the rotating shaft 122 is connected to the suspension unit 11 via a ring-lock structure, and the other end of the rotating shaft 122 is connected to the knob 121. The ring-lock structure includes a first ring-lock 131 connecting the suspension unit 11 and a second ring-lock 132 connecting the rotating shaft 122, and the first ring-lock 131 and the second ring-lock 132 are detachably connected. The suspension unit 11 has a rod-like structure. The fixed reference seat 124 has a stepped stop portion 1241 at the end away from the knob 121. The knob 121 is adapted to drive the rotating limiting seat 123 to rotate synchronously via the rotating shaft 122.
[0053] The suspension base 12 has two forms: a ready-to-go form and a locked form. In the ready-to-go form, the knob 121 is aligned with the fixed reference base 124, allowing the suspension base 12 to be inserted along the extension direction of the mounting groove. The stop portion 1241 abuts against the first side wall 31 of the mounting groove to indicate that the insertion is complete, providing tactile / visual feedback to avoid the safety hazard of incomplete insertion. In the locked form, the knob 121 rotates relative to the fixed reference base 124, and the stop portion 1241 and the knob 121 abut against the first side wall 31 and the second side wall 32 of the mounting groove, respectively, to form a misalignment limit. The first side wall 31 and the second side wall 32 are the inner and outer wall surfaces that are arranged opposite each other in the depth direction of the mounting groove.
[0054] In this embodiment, the fixed reference base 124 includes a fixed end face 1242 disposed away from the knob 121. The fixed end face 1242 includes a limiting groove 126 and a prompting groove 128 symmetrically disposed about the center of the fixed reference base 124. The rotating limiting base 123 is provided with a ball assembly, which includes a spring 1271 and a ball 1272. The rotating limiting base 123 includes a rotating end face 1231 disposed towards the fixed end face 1242, and a limiting protrusion 125 and a ball 1272 symmetrically disposed about the center of the rotating limiting base 123. The rotating limiting base 123 includes a limiting groove 1232 adapted to receive the spring 1271, and the limiting groove 1232 has an open port facing the fixed end face 1242. The limiting protrusion 125 slides within the limiting groove 126 to a limited extent to limit the rotation range of the knob 121. The knob 121 can only be rotated clockwise to switch to the locked state. The central angle corresponding to the limiting groove 126 is 45° to limit the rotation range of the knob 121. The prompting groove 128 includes a groove segment 1281 and prompting areas 1282 located at both ends of the extension path of the groove segment 1281. When the rotating limiting seat 123 and the fixed reference seat 124 rotate relative to each other, the ball assembly moves synchronously. The spring 1271 is adapted to drive the ball 1272 to fall into the prompting area 1282 to indicate that the ready state and the locked state have been switched to the correct position, generating a "click" tactile feedback, which effectively improves the recognition rate of the state switching to the correct position.
[0055] In this embodiment, the type B block member 24 includes two pairs of parallel horizontal surfaces 21 and three sets of circumferential surfaces 22 sandwiched between the horizontal surfaces 21. The horizontal surfaces 21 are adapted to support longitudinally stacked block members, and the bottom horizontal surface 21 has an opening 211 for insertion. Each set of circumferential surfaces 22 is symmetrically arranged, and each set of circumferential surfaces 22 forms two second mounting grooves 221 distributed in a cross shape. One second mounting groove 221 is horizontally arranged, and the other second mounting groove 221 is vertically arranged. The second mounting grooves 221 on each set of circumferential surfaces 22 are symmetrically distributed on both sides of an axis of symmetry, which is adapted to pass through the center of the circumferential surface 22 and is parallel to the horizontal surface 21. The plate member 3 can be selectively inserted into one of the second mounting grooves 221 or through the second mounting grooves 221 of the same set of circumferential surfaces 22.
[0056] Example 2
[0057] like Figure 7-8 As shown in the figure, the suspended component 1 is not shown. A suspension support system including modular components differs from Embodiment 1 in that this suspension support system includes a pair of plate-shaped components 3 and a third plate-shaped component 3. The pair of plate-shaped components 3 constitute a double-track support structure suitable for supporting the suspended component 1. A type B block component 24 and a type A block component 23 are arranged side-by-side and supported at one end of the double-track support structure. The two type A block components 23 are separated by a space from the other end of the double-track support structure. The other plate-shaped component 3 passes through the two laterally arranged type A block components 23 via a second mounting groove 221 to form a support tower, providing lateral support for the plate-shaped component 3, which serves as the double-track support structure.
[0058] In this embodiment, the first mounting groove 33 and the second mounting groove 221 have the same cross-section. The two plate-shaped members 3 and the other plate-shaped member 3 in the double-rail support structure extend into the same A-type block member 23 through two sets of orthogonal second mounting grooves 221 and are orthogonal within the block member, which widens the width of the support tower and connects several independent block members at the same end into a whole, thereby improving the resistance to displacement and the bending stiffness.
[0059] In this embodiment, the side length L of the type A block component 23 is 35 cm. The main material of the type A block component 23 is expanded polyethylene (EPP), and its weight is 2.6 kg. The weight of the type B block component 24 is 4.0 kg.
[0060] The above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model.
Claims
1. A suspension support system comprising modular components, characterized in that, include A suspended component, comprising a suspension unit and suspension bases connected to both ends of the suspension unit; At least one pair of parallel plate-shaped members, each including a plurality of first mounting slots arranged along its length, wherein the positions of the first mounting slots on the two plate-shaped members correspond to each other, and the suspension base passes through the first mounting slots; At least one block member, a single block member is supported at the end of one or more pairs of plate members, and several block members are respectively supported at the ends and / or span positions of the plate members.
2. A suspension support system comprising modular components according to claim 1, characterized in that, The suspension base includes a knob, a rotating shaft, a rotating limiting seat, and a fixed reference seat. The rotating shaft passes through the rotating limiting seat and the fixed reference seat. One end of the rotating shaft is connected to the suspension unit, and the other end of the rotating shaft is connected to the knob. The knob is adapted to drive the rotating limiting seat to rotate synchronously through the rotating shaft. The suspension base has two forms: Preparatory configuration: The knob is aligned with the fixed reference base, allowing the suspension base to be inserted along the extension direction of the first mounting slot. A stop portion is provided at the end of the fixed reference base away from the knob, and this stop portion abuts against the first sidewall of the first mounting slot to indicate that insertion is complete. Locking mode: When the knob rotates away from the fixed reference base, the stop part and the knob respectively abut against the first side wall and the second side wall of the first mounting groove to form a misalignment limit.
3. A suspension support system comprising modular components according to claim 2, characterized in that, One of the rotating limiting seat and the fixed reference seat includes a limiting protrusion, and the other of the rotating limiting seat and the fixed reference seat includes a limiting groove. The limiting protrusion slides within the limiting groove to a limited extent, thereby limiting the rotation range of the knob to 30° to 90°.
4. A suspension support system comprising modular components according to claim 3, characterized in that, At least one of the following conditions must be met: The suspension unit includes at least one of the following: rope-like structure, strip-like structure, chain-like structure, and rod-like structure. The suspension unit is connected to the rotating shaft via a ring buckle structure, wherein: the ring buckle structure includes an integral ring buckle that connects the suspension unit and the rotating shaft simultaneously, or includes a first ring buckle connecting the suspension unit and a second ring buckle connecting the rotating shaft, wherein the first ring buckle and the second ring buckle are detachably or non-detachably connected. The stop portion is stepped; The first sidewall and the second sidewall are the inner wall surface and the outer wall surface that are arranged opposite to each other in the depth direction of the first mounting groove.
5. A suspension support system comprising modular components according to any one of claims 1-4, characterized in that, The block-shaped component includes at least a pair of parallel horizontal surfaces and several sets of circumferential surfaces sandwiched between the horizontal surfaces. The horizontal surfaces are adapted to support the longitudinally stacked block-shaped components. Each set of circumferential surfaces is symmetrically arranged, and each set of circumferential surfaces forms at least one second mounting groove. The plate-shaped component can be inserted into the second mounting groove or pass through the second mounting groove of the same set of circumferential surfaces.
6. A suspension support system comprising modular components according to claim 5, characterized in that, The second mounting slots on each group of circumferential surfaces are symmetrically distributed on both sides of an axis of symmetry. The axis of symmetry is adapted to pass through the center of the circumferential surface and is parallel to the horizontal plane, wherein: When the circumferential surface includes a second mounting groove, the second mounting groove is either horizontally or vertically arranged. When the circumferential surface includes a plurality of second mounting slots, the second mounting slots are distributed in a cross shape, with one second mounting slot being horizontally arranged and the other second mounting slot being vertically arranged. When the circumferential surface includes no fewer than three second mounting slots, the second mounting slots are radially distributed.
7. A suspension support system comprising modular components according to claim 6, characterized in that, The first mounting groove and the second mounting groove have the same cross-section, or the cross-section of the first mounting groove can completely cover the cross-section of the second mounting groove, so that the plate-shaped members can interpenetrate each other through the first mounting groove, or the circumferential surface includes at least two orthogonally arranged second mounting grooves, and the two plate-shaped members can extend into the same block-shaped member through two orthogonal sets of second mounting grooves and be orthogonal within the block-shaped member.
8. A suspension support system comprising modular components according to claim 7, characterized in that, It includes several pairs of said plate-shaped members, wherein one pair of said plate-shaped members constitutes a double-rail support structure suitable for supporting the suspended member, wherein: The horizontal plane is through which the plate-shaped members can pass, and at least one of the horizontal planes includes the second mounting groove. Another pair of the plate-shaped members passes through a plurality of longitudinally stacked block-shaped members to form a support tower suitable for supporting the double-track support structure; and / or, another pair of the plate-shaped members passes through the second mounting groove through a plurality of laterally arranged block-shaped members to form a support tower suitable for supporting the double-track support structure.
9. A suspension support system comprising modular components according to claim 8, characterized in that, At least one first transverse connector is provided between the two parallel plate-shaped members of the dual-track support structure, and the two ends of the first transverse connector are detachably connected to the first mounting grooves of the two plate-shaped members respectively; and / or, at least one second transverse connector is provided between the two block-shaped members at the same end, and the two ends of the second transverse connector are detachably connected to the two block-shaped members respectively.
10. A suspension support system comprising modular components according to claim 9, characterized in that, One of the horizontal surfaces has a boss, and the other horizontal surface has a first opening into which the boss can be inserted / engaged. The second transverse connector has a plate-like structure and includes several second openings suitable for engaging the boss. Alternatively, the circumferential surface includes a connecting groove disposed around the second mounting groove, the second transverse connector is columnar and includes a support section and connecting sections extending outward from both ends of the support section, the connecting sections are adapted to be inserted into the connecting groove, and a stop baffle is provided at the junction of the support section and the connecting section, the stop baffle abuts against the circumferential surface to indicate that the connecting section is inserted into place.