Suspension structure

By designing the coordination of hooks, buckles and limit slots in the hanging structure, the problems of inconvenient disassembly and assembly and easy loosening of existing wall-hanging solutions are solved, and the effect of quick disassembly and assembly and reliable fixed hanging is achieved.

CN223423548UActive Publication Date: 2025-10-10HANSONG NANJING TECH LTD
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Patent Information

Application Number
CN202422686172.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-10-10
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

In existing interior decoration, wall-mounted solutions have the problems of being difficult to disassemble and assemble, time-consuming and labor-intensive, and prone to loosening.

Method used

A hanging structure is designed, including a hook, a buckle and a limit slot. The elastic deformation and cooperation of the hook between the limit slot and the buckle can achieve quick disassembly and assembly, and the design of the limit slot prevents the equipment from loosening.

Benefits of technology

It realizes the rapid disassembly and assembly and reliable fixation of the suspension equipment, avoids loosening due to vibration, and meets the diverse needs of users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a hanging structure. The hanging structure comprises a hook, a buckling position and a limiting groove. Wherein the hook is arranged on to-be-hung equipment; the buckling position and the limiting groove are arranged on the hanging bracket; the limiting groove is formed above the buckling position, and the limiting groove is at least partially aligned with the buckling position; the hanging structure has a buckling state and a loosening state; when the hanging structure is changed from a relaxed state to a buckled state, the hook moves to the position above the buckling position in the first direction until the hook is matched with the limiting groove, and the hook accumulates force; when the hanging structure is changed from the buckling state to the loosening state, the hook moves in the second direction to be separated from the limiting groove, and the hook releases the stored force.
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Description

Technical Field

[0001] This specification relates to the field of interior decoration technology, and in particular to a suspension structure. Background Art

[0002] In modern interior decoration, people are pursuing a more fashionable, simple, and durable style, making wall-mounted systems the best choice. Currently, wall-mounted systems on the market rely on screw locking or slot-type screw-in systems. Screw-locking systems are cumbersome and time-consuming to install and disassemble, while slot-type screw-in systems are prone to loosening due to vibration.

[0003] Therefore, it is necessary to provide a suspension structure that can be quickly assembled and disassembled and fixed reliably. Utility Model Content

[0004] One or more embodiments of this specification provide a suspension structure. The suspension structure includes: a hook, a buckle, and a limiting slot; the hook is provided on the device to be suspended; the buckle and the limiting slot are provided on a suspension bracket; the limiting slot is provided above the buckle, and the limiting slot is at least partially aligned with the buckle; the suspension structure includes a buckled state and a relaxed state; when the suspension structure moves from the relaxed state to the buckled state, the hook moves along a first direction to above the buckle until the hook engages with the limiting slot, and the hook accumulates force; when the suspension structure moves from the buckled state to the relaxed state, the hook moves along a second direction until it separates from the limiting slot, and the hook releases the accumulated force.

[0005] In some embodiments, the thickness of the limiting groove is smaller than the thickness of the buckle position, and the length of the limiting groove in the second direction is greater than the length of the buckle position in the second direction.

[0006] In some embodiments, the limiting groove includes a first structural member and a second structural member, the first structural member is aligned with the buckle position, and the second structural member gradually thickens along the second direction.

[0007] In some embodiments, the hanging structure includes at least two hooks, at least two buckles and at least two limiting slots.

[0008] In some embodiments, the number of the hooks is less than or equal to the number of the buckling positions, and the number of the limiting grooves is the same as the number of the buckling positions.

[0009] In some embodiments, the length of the buckle position in the second direction is greater than or equal to the length of the hook, and the thickness of the buckle position gradually increases along the first direction.

[0010] In some embodiments, the suspension structure includes at least one limiting piece, and at least one limiting piece is arranged between two adjacent limiting grooves.

[0011] In some embodiments, the suspension structure includes a buffer guide, which is arranged between two adjacent limiting grooves, and the buffer guide gradually thickens along the third direction; when the suspension structure moves from the engaged state to the relaxed state, the hook moves along the second direction to separate from the limiting groove, and moves along the third direction to separate from the buffer guide, and the hook releases the stored force.

[0012] In some embodiments, the limiting groove includes a second structural member, and the buffer guide member is arranged close to the second structural member.

[0013] In some embodiments, the surface of the buffer guide away from the suspension bracket is a straight surface and / or a curved surface.

[0014] Some embodiments of the present invention include the following beneficial effects: (1) the hook is elastically deformed and slides into the buckle position of the hanging bracket, so that the product can be hung on the wall. At the same time, its own limiting mechanism can prevent the machine from falling after being subjected to external forces within a certain range; (2) when it is necessary to take out the machine to be hung, it is only necessary to allow the hook to withdraw along the limiting groove on the hanging bracket. At this time, the limiting mechanism will produce elastic deformation after being subjected to external force from the human hand until the machine is detached and taken out, and finally the limiting mechanism will be restored. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] This specification will be further described in the form of exemplary embodiments, which will be described in detail with reference to the accompanying drawings. These embodiments are not limiting, and in these embodiments, like numbers represent like structures, wherein:

[0016] Figure 1 is a schematic diagram of a three-dimensional structure of a suspension structure according to some embodiments of this specification;

[0017] Figure 2 is a schematic diagram of the three-dimensional structure of a hook according to some embodiments of this specification;

[0018] Figure 3 is a schematic structural diagram of buckles and limiting grooves according to some embodiments of this specification;

[0019] Figure 4 is a schematic structural diagram of a suspension structure in a buckled state according to some embodiments of this specification;

[0020] Figure 5 is an exemplary top view of a suspension structure according to some embodiments of the present specification;

[0021] Figure 6 is another exemplary top view of a suspension mechanism according to some embodiments of the present specification;

[0022] Figure 7 is an exemplary cross-sectional view of a buffer guide according to some embodiments of the present specification;

[0023] Figure 8 is another exemplary cross-sectional view of a buffer guide according to some embodiments of the present specification;

[0024] Figure 9 is an exemplary transversely expanded schematic diagram of a buffer guide according to some embodiments of this specification;

[0025] Figure 10 is based on Figure 8 AA cross-sectional view of the buffer guide shown. DETAILED DESCRIPTION

[0026] To more clearly illustrate the technical solutions of the embodiments of this specification, the following briefly describes the drawings required for describing the embodiments. Obviously, the drawings described below are merely examples or embodiments of this specification. Those skilled in the art can apply this specification to other similar scenarios based on these drawings without inventive effort. Unless otherwise apparent from the context or otherwise noted, the same reference numerals in the figures represent the same structure or operation.

[0027] It should be understood that the terms "system," "device," "unit," and / or "module" used herein are a method for distinguishing different components, elements, parts, portions, or assemblies at different levels. However, if other terms can achieve the same purpose, the terms may be replaced by other expressions.

[0028] As used in this specification and claims, unless the context clearly indicates otherwise, the words "a," "an," "an," and / or "the" do not refer to the singular but also include the plural. Generally speaking, the terms "comprises" and "include" only indicate the inclusion of the steps and elements specifically identified, and these steps and elements do not constitute an exclusive list. A method or apparatus may also include other steps or elements.

[0029] Figure 1 It is a schematic diagram of the three-dimensional structure of the suspension structure shown in some embodiments of this specification. Figure 2 It is a schematic diagram of the three-dimensional structure of the hook shown in some embodiments of this specification. Figure 3 It is a schematic structural diagram of the buckle position and the limiting groove shown in some embodiments of this specification.

[0030] In some embodiments, as Figure 1As shown, the suspension structure 100 includes a hook 110, a buckle 120, and a limiting slot 130. The hook 110 is mounted on the device 200 to be suspended; the buckle 120 and the limiting slot 130 are mounted on the suspension bracket 300. The limiting slot 130 is positioned above the buckle 120 and is at least partially aligned with the buckle 120.

[0031] The hook 110 is a component used to connect the device 200 to be hung with the hanging bracket 300 .

[0032] In some embodiments, the hook 110 can be elastically deformed under external force, and the hook 110 can be made of a deformable material with a certain strength, such as stainless steel, high-strength plastic, or rubber.

[0033] In some embodiments, as Figure 2 As shown, the hook 110 is in the shape of a hook. In some embodiments, the hook 110 includes a hook portion and a support portion. The hook portion and the support portion of the hook 110 can be integrally formed. The hook portion of the hook 110 is the hook structure portion located at the top of the hook 110. The hook 110 can be hung on the buckle 120 through the hook portion. The support portion of the hook is the structure portion located in the middle and lower end of the hook 110. The hook 110 is connected to the device to be hung 200 through the support portion. The shape of the support portion can be set according to requirements. For example, the support portion of the hook can be I-shaped or L-shaped.

[0034] In some embodiments, the thickness of the hook 110 is related to the weight of the device to be hung. The heavier the device to be hung, the thicker the hook 110. Exemplarily, the thickness of the hook 110 can be 0.5-0.6 mm. In some embodiments, the hook 110 and the device to be hung can be detachably connected in a variety of ways. For example, the hook 110 and the device to be hung can be connected by screws. A screw hole is provided on the device to be hung, and a corresponding first mounting hole is provided on the hook 110. By passing a screw through the first mounting hole and the screw hole and tightening the screw, the hook 110 is fixed to the device to be hung. For another example, the device to be hung and the hook 110 can be connected by a snap.

[0035] The device to be hung 200 refers to a device that needs to be suspended or hung. For example, the device to be hung 200 can be a router, a speaker, a chandelier, or other devices that need to be suspended or hung.

[0036] The buckle position 120 is a raised structure located on the surface of the suspension bracket. In some embodiments, the buckle position 120 is provided on the inner surface of the suspension bracket 300 and is integrally injection molded with the suspension bracket 300. In some embodiments, the buckle position 120 can be a columnar protrusion or a hollow structure. For example, Figure 3As shown, the buckle position 120 may include a first protrusion 121 extending along the second direction and a plurality of protrusion structures extending along the third direction. The plurality of protrusion structures may be arranged below the protrusion 121, and the plurality of protrusion structures are arranged at a preset distance from each other, thereby preventing the buckle position 120 from shrinking after injection molding and improving the stability of the buckle position 120.

[0037] In some embodiments, the hook 110 cooperates with the buckle 120 to hang the device to be hung on the hanging bracket. When the hook 110 cooperates with the buckle 120, the hook 110 is located above the buckle 120, and the first protrusion 121 of the buckle 120 extending along the second direction restricts the hook 110 from moving downward.

[0038] In some embodiments, in the second direction, the length of the buckle position is greater than the length of the hook 110, thereby ensuring that the hook 110 can move in the first direction within the buckle position, thereby guiding the movement direction of the hook 110 and enabling the hook 110 to accurately move above the buckle position 120 and engage with the buckle position 120. For details about the first direction and the second direction, please refer to the relevant description below.

[0039] In some embodiments, as Figure 3 As shown, the latching position 120 further includes a baffle structure 122 extending along a first direction. When the hook 110 moves along the first direction, it can limit the movement of the hook 110 along a second direction, allowing the hook to accurately move above the latching position 120. In some embodiments, the raised structure of the latching position 120 further includes at least one beveled tooth 123 extending along the first direction. The beveled tooth 123 is disposed between the two baffle structures 122. The beveled tooth 123 gradually protrudes in the first direction, thereby guiding the movement of the hook. For details on the first direction, please refer to the relevant description below.

[0040] In some embodiments, the length of the buckle portion 120 in the second direction is greater than or equal to the length of the hook 110 , and the thickness of the buckle portion 120 gradually increases along the first direction.

[0041] The first direction refers to the direction extending longitudinally along the inner side wall of the suspension bracket 300. For example, Figure 1 As shown, the first direction may be a vertically upward direction. The second direction refers to a direction extending laterally along the inner side wall of the suspension bracket 300. For example, as Figure 1 As shown, when the suspension bracket is a cylindrical structure with an open bottom, the second direction may refer to a clockwise rotation along the inner sidewall of the suspension bracket. For example, when the suspension device is a horizontal rail, the second direction may refer to a horizontal direction along the rail. The hook 110 can enter the suspension bracket from the buckle position 120 along the first direction and exit the buckle position 120 along the second direction.

[0042] The hanging bracket 300 refers to a component for providing support for the device to be hung. In some embodiments, the hanging bracket 300 can be a bottom-opened cylindrical structure or a guide rail structure. In some embodiments, the hanging bracket 300 can be fixed in advance on the ceiling or other top position by screws. For example, as shown in Figure 1 the hanging bracket 300 is a bottom-opened cylindrical structure, and the top of the hanging bracket 300 is provided with mounting holes, which can be used to fix the hanging bracket 300 on the ceiling or other top position in advance by screws. For example, the hanging bracket 300 can be a horizontal guide rail (not shown in the figure), which can be fixed in advance on the ceiling or other top position by screws or other means. In some embodiments, the hanging bracket 300 can also be a guide rail or other structure of other shapes, and the shape of the hanging bracket can be adjusted adaptively according to the installation environment or requirements.

[0043] In some embodiments, the material of the hanging bracket 300 can be plastic, metal or other materials, etc.

[0044] The limiting groove 130 is a component for limiting the movement of the hook 110.

[0045] In some embodiments, the limiting groove 130 is provided on the hanging bracket 300 and integrally injection molded with the hanging bracket 300. For example, as shown in Figure 3 the limiting groove 130 can include a second protrusion extending along the second direction and a plurality of tooth-shaped protrusions along the first direction, and the plurality of tooth-shaped protrusions are arranged at a preset distance to avoid shrinkage of the buckle 120 after injection molding, thereby improving the stability of the buckle 120. In some embodiments, as shown in Figure 3 the second protrusion of the limiting groove 130 can be arranged close to the first protrusion 121 of the buckle 120.

[0046] In some embodiments, the thickness of the limiting groove 130 is less than the thickness of the buckle 120, and the length of the limiting groove 130 in the second direction is greater than the length of the buckle 120 in the second direction.

[0047] The thickness of the limiting groove 130 refers to the protrusion degree of the limiting groove on the surface of the hanging bracket 300. The thickness of the buckle 120 refers to the protrusion degree of the buckle on the surface of the hanging bracket 300. In some embodiments, the first protrusion 121, the baffle structure 122 and the inclined teeth 123 of the buckle 120 can have different thicknesses, and the maximum thickness among them is taken as the thickness of the buckle 120.

[0048] Some embodiments of the present specification can limit the size relationship between the limiting groove and the buckle, so that the hook can be hung above the buckle while being limited by the limiting groove, thereby avoiding lateral movement of the hook and preventing the hook from loosening or falling off.

[0049] In some embodiments, as Figure 3 As shown, the limiting groove 130 includes a first structural member 131 and a second structural member 132 . The first structural member 131 is aligned with the buckle position 120 , and the second structural member 132 gradually thickens along the second direction.

[0050] The first structural member 131 is a structural member used to limit the movement of the hook. The first structural member 131 can be a columnar protrusion or a hollow structure. In some embodiments, the thickness of the first structural member 131 is uniform. For example, Figure 3 As shown, the first structural member 131 may be a comb-tooth structure, comprising a third protrusion extending along the second direction and a plurality of teeth extending along the first direction, with the third protrusion and the plurality of teeth having uniform thickness. When the hook 110 is engaged with the buckle 120, the hook 110 contacts the first structural member 131. The protruding first structural member exerts a force on the hook 110, generating an interaction force in the opposite direction, thereby fixing the hook relatively above the buckle, thereby preventing the hook from moving due to vibration.

[0051] The second structural member 132 is a structural member used to guide the movement of the hook and to prevent the hook from falling off during the movement. The second structural member 132 can be a columnar protrusion or a hollow structure. In some embodiments, Figure 3 As shown, the thickness of the second structural member 132 gradually increases along the second direction. Figure 3 As shown, the second structural member 132 can be a comb-tooth structure, including a fourth protrusion extending along the second direction and a plurality of teeth extending along the first direction, and the fourth protrusion and the plurality of teeth gradually thicken along the second direction. In some embodiments, the first structural member 131 is connected to the second structural member 132, and the first structural member 131 and the second structural member 132 are integrally structured.

[0052] In some embodiments of this specification, a first structural member of uniform thickness is provided to limit lateral movement of the hook, thereby preventing the hook from falling off due to vibration when the suspension device is suspended. A second structural member of gradually increasing thickness is provided to prevent the hook from falling off when withdrawing from the limiting slot.

[0053] In some embodiments, the hanging structure may include at least two hooks 110 , at least two buckles 120 and at least two limiting grooves 130 .

[0054] In some embodiments, the at least two hooks 110 are distributed along the hanging surface of the device to be hung. The at least two buckling positions 120 and the at least two limiting grooves 130 are distributed along the side wall of the hanging bracket. In some embodiments, the at least two hooks 110, the at least two buckling positions 120 and the at least two limiting grooves 130 can be evenly distributed or unevenly distributed. The hanging surface of the device to be hung 200 can be the top surface of the device to be hung 200. In some embodiments, each hook corresponds to a buckling position respectively. The at least two hooks 110, the at least two buckling positions 120 and the at least two limiting grooves 130 can be arranged on the same horizontal plane or different horizontal planes as long as the hooks 110 can cooperate with the buckling positions 120.

[0055] In some embodiments, the number of hooks 110 is less than or equal to the number of buckling positions 120, and the number of limiting grooves 130 is the same as the number of buckling positions 120.

[0056] For example, the number of hooks, buckling positions and limiting grooves is two, and the hooks, buckling positions and limiting grooves correspond to each other one by one. The two hooks are evenly distributed on the surface of the device to be hung, such as being arranged at 180° or being arranged at a first preset distance. The two buckling positions and the two limiting grooves are evenly distributed on the inner surface of the hanging bracket, such as being arranged at 180° or being arranged at a first preset distance. For another example, the number of hooks, buckling positions and limiting grooves is four, and the hooks, buckling positions and limiting grooves correspond to each other one by one. The four hooks are evenly distributed on the surface of the device to be hung 200, such as being evenly arranged circumferentially or being arranged at a second preset distance. The four buckling positions and the two limiting grooves are evenly distributed on the inner surface of the hanging bracket, such as being evenly arranged circumferentially or being arranged at a second preset distance. For another example, the number of buckling positions and limiting grooves is four, and the number of hooks is two. The two hooks are evenly distributed on the surface of the device to be hung 200 and correspond to two of the four buckling positions.

[0057] For example, as shown in FIGS. 1A and 1B, the number of hooks, buckling positions and limiting grooves is two, and the hooks, buckling positions and limiting grooves correspond to each other one by one. The two hooks are evenly distributed on the surface of the device to be hung, such as being arranged at 180° or being arranged at a first preset distance. The two buckling positions and the two limiting grooves are evenly distributed on the inner surface of the hanging bracket, such as being arranged at 180° or being arranged at a first preset distance. Figure 1 and Figure 5 For example, as shown in FIGS. 1A and 1B, the number of hooks, buckling positions and limiting grooves is two, and the hooks, buckling positions and limiting grooves correspond to each other one by one. The two hooks are evenly distributed on the surface of the device to be hung, such as being arranged at 180° or being arranged at a first preset distance. The two buckling positions and the two limiting grooves are evenly distributed on the inner surface of the hanging bracket, such as being arranged at 180° or being arranged at a first preset distance.

[0058] In some embodiments, the number of hooks is related to the weight of the device to be hung. The heavier the device to be hung is, the more the number of hooks is, so as to avoid the device to be hung from falling freely due to its own gravity.

[0059] Figure 4 FIG. 1C is a structural schematic diagram of the hanging structure shown in some embodiments of the present specification in a buckling state.

[0060] In some embodiments, the suspension structure 100 includes a locked state and a relaxed state. To move from the relaxed state to the locked state, the hook 110 moves along a first direction to above the locking position 120 until the hook 110 engages with the retaining groove 130, thereby accumulating force. To move from the locked state to the relaxed state, the hook 110 moves along a second direction until it separates from the retaining groove 130, thereby releasing the accumulated force.

[0061] The engaged state refers to the state when the hook 110 is engaged with the buckle position 120. Figure 4 As shown, in the engaged state, the hook portion of hook 110 is located above latching position 120, which limits the displacement of hook 110 in the third direction. Hook 110 contacts limiting slot 130, which causes hook 110 to deform. Hook 110 is in a force-accumulating state, and limiting slot 130 limits the displacement of hook 110 in the second direction or a direction opposite to the second direction. When suspension structure 100 is in the engaged state, the device to be suspended is suspended on the suspension bracket.

[0062] The relaxed state refers to a state when the hook 110 is separated from the buckle 120. When the suspension structure 100 is in the relaxed state, the device to be suspended is separated from the suspension bracket.

[0063] In some embodiments, a thrust is applied to the suspension device along a first direction, and the suspension structure changes from a relaxed state to a locked state: the hook 110 moves from the buckle position 120 along the first direction. During the movement, due to the gradual thickening of the buckle position 120, the hook 110 is elastically deformed and accumulates force under the force; when the hook 110 continues to move along the first direction to above the buckle position 120, part of the accumulated force is released and rebounds until it contacts the limit groove 130, thereby cooperating with the buckle position 120 to limit the hook 110 from falling, and cooperating with the limit groove 130 to put the hook 110 in a force-accumulating state, limiting the lateral movement of the hook 110.

[0064] In some embodiments, a rotational force or a thrust is applied to the suspension device along the second direction, and the suspension structure changes from a fastened state to a relaxed state: the hook 110 moves along the second direction on the limit groove 130, and since the second structural member 132 of the limit member 110 gradually thickens in the second direction, the hook 110 gradually deforms, and the elastic force increases, thereby restricting the hook 110 from falling; the rotational force or the thrust is continued to be applied until the hook 110 is separated from the limit groove 130, the hook 110 releases the stored force, and the suspension device can exit the suspension bracket.

[0065] Some embodiments of this specification utilize hooks and buckles to allow products to be wall-mounted, resulting in a simple structure and easy installation. Limiting slots prevent the device from falling under certain external forces. Furthermore, the hanging device is easily disassembled, meeting diverse user needs.

[0066] In some embodiments, hook 110 is provided with a second mounting hole, and buckle 120 is provided with a screw hole. When hook 110 and buckle 120 are mated, a screw can be passed through the second mounting hole and the screw hole in buckle 120 and tightened, thereby securing hook 110 to buckle 120. Fastening hook 110 to buckle 120 with screws further secures the device to be suspended on the suspension bracket, preventing the device from falling off due to vibration or other factors.

[0067] Figure 5 is an exemplary top view of a suspension structure according to some embodiments of the present specification.

[0068] In some embodiments, the suspension structure includes at least one limiting piece 140 , and the at least one limiting piece 140 is disposed between two adjacent limiting grooves.

[0069] The limiting piece 140 is a component for limiting the movement of an object. In some embodiments, the limiting piece 140 can limit the relative movement between the device to be suspended and the suspension bracket.

[0070] In some embodiments, the number of the limiting piece 140 includes at least one. Figure 5 As shown, there are four limiting pieces 140 , which are evenly distributed along the circumference of the inner wall of the suspension structure, and the limiting pieces 140 are arranged between two adjacent limiting grooves 130 .

[0071] In some embodiments, the limiting piece 140 may be a metal sheet or other material with high strength. The strength of the limiting piece 140 is greater than the strength of the suspension bracket.

[0072] In some embodiments, the stopper 140 can be mounted on the suspension bracket in a variety of ways. For example, the stopper 140 can be placed in position before the suspension bracket is injection molded, and after injection molding, the stopper 140 and the suspension bracket are integrated. In another example, the stopper 140 can be inserted into the suspension bracket after the suspension bracket is injection molded.

[0073] In some embodiments, as Figure 5 As shown, the limiting plate 140 is tilted and arranged near the first structural member 131 of the limiting groove 130. When the suspension structure is in a buckled state, the device to be suspended contacts the limiting plate 140. When the device to be suspended is laterally displaced, the damping generated by the limiting plate 140 limits the lateral displacement of the device to be suspended. And the first damping experienced by the device to be suspended is greater than the second damping, so that when a rotational force or thrust is applied to the device to be suspended to separate it from the suspension bracket, the hook is prevented from moving in a direction opposite to the second direction. The first damping refers to the damping experienced by the device to be suspended when it is displaced in a direction opposite to the second direction. The second damping refers to the damping experienced by the device to be suspended when it is displaced in the second direction.

[0074] In some embodiments of this specification, a stopper is provided to further prevent the device to be suspended from falling off, and to limit the lateral displacement of the suspended device. When disengaging, the device to be suspended is guided to move in the second direction. Only when the device to be suspended rotates in the second direction can it be disengaged from the suspension bracket.

[0075] Figure 6 is another exemplary top view of a suspension mechanism according to some embodiments of the present specification.

[0076] Figure 7 is an exemplary cross-sectional view of a buffer guide according to some embodiments of the present specification. Figure 8 is another exemplary cross-sectional view of a buffer guide according to some embodiments of the present specification. Figure 9 is an exemplary lateral expansion schematic diagram of a buffer guide according to some embodiments of the present specification. Figure 10 is based on Figure 9 AA cross-sectional view of the buffer guide shown.

[0077] In some embodiments, as Figure 6 and Figure 9 As shown, the suspension structure includes a buffer guide 150, and the buffer guide 150 is arranged between two adjacent limiting grooves 130. In some embodiments, as shown in FIG. Figure 7 As shown, the buffer guide 150 gradually becomes thicker along the third direction.

[0078] The buffer guide 150 is a component that provides a buffering effect for the hook and guides the moving direction of the hook.

[0079] In some embodiments, the surface of the buffer guide 150 away from the suspension bracket 300 is a straight surface and / or a curved surface.

[0080] In some embodiments, as Figure 7 As shown, the surface of the buffer guide 150 away from the suspension bracket 300 is a straight surface.

[0081] In some embodiments, as Figure 8 As shown, the surface of the buffer guide 150 away from the suspension bracket 300 is a curved surface, and the curved surface may be concave toward the suspension bracket 300 .

[0082] In some embodiments, the surface of the buffer guide 150 away from the suspension bracket 300 may include a straight surface and a curved surface. For example, the middle portion of the buffer guide 150 is a curved surface, and the edge portion is a straight surface.

[0083] In some embodiments, as Figure 9As shown, the buffer guide 150 includes a first part 151, a second part 152 and a third part 153, wherein the first part 151 and the third part 153 are straight surfaces away from the surface of the hanging bracket 300, and the second part 152 is an arc surface away from the surface of the hanging bracket 300, and the first part 151, the second part 152 and the third part 153 are arc transitions or straight transitions. In some embodiments, as shown in the cross-sectional view A-A of the buffer guide 150, the buffer guide 150 is thick on both sides and thin in the middle, thereby guiding the hook to move in a spiral or approximately spiral manner on the buffer guide 150 in the third direction, increasing the hook separation time and the resistance during separation, and achieving the buffering effect. Figure 10 As shown, the buffer guide 150 includes a first part 151, a second part 152 and a third part 153, wherein the first part 151 and the third part 153 are straight surfaces away from the surface of the hanging bracket 300, and the second part 152 is an arc surface away from the surface of the hanging bracket 300, and the first part 151, the second part 152 and the third part 153 are arc transitions or straight transitions. In some embodiments, as shown in the cross-sectional view A-A of the buffer guide 150, the buffer guide 150 is thick on both sides and thin in the middle, thereby guiding the hook to move in a spiral or approximately spiral manner on the buffer guide 150 in the third direction, increasing the hook separation time and the resistance during separation, and achieving the buffering effect.

[0084] In some embodiments, the hanging structure is from the buckling state to the relaxed state, the hook 110 moves to separate from the limiting groove 130 in the second direction, and moves to separate from the buffer guide 150 in the third direction, and the hook 110 releases the stored force.

[0085] The third direction refers to the direction in which the hook exits the hanging bracket, for example, the third direction can be vertically downward, obliquely downward, or spirally downward, etc.

[0086] In some embodiments, as shown in the cross-sectional view A-A of the buffer guide 150, the buffer guide 150 is thick on both sides and thin in the middle, thereby guiding the hook to move in a spiral or approximately spiral manner on the buffer guide 150 in the third direction, increasing the hook separation time and the resistance during separation, and achieving the buffering effect. Figure 9 As shown, the limiting groove 130 includes a second structural part 132, and the buffer guide 150 is arranged close to the second structural part 132.

[0087] In some embodiments, the hanging structure is from the buckling state to the relaxed state, a rotating force or a pushing force is applied to the device to be hung along the second direction, the hook 110 moves to separate from the second structural part 132 of the limiting groove 130 in the second direction, and then the hook releases the stored force and contacts the buffer guide 150; a rotating force or a pushing force is applied to the device to be hung along the third direction, and the hook 110 moves on the buffer guide 150 in the third direction, and since the buffer guide 150 is thick in the third direction, the hook 110 gradually stores force, preventing the device to be hung from falling during the exit process; continue to apply the rotating force or the pushing force, until the hook 110 separates from the buffer guide 150, and the hook 110 releases the stored force.

[0088] In some embodiments of the present specification, by providing the buffer guide, sudden falling of the hanging structure during disassembly (such as falling suddenly when loosened if installed on the ceiling) can be avoided, and the stability of disassembly is improved; at the same time, during installation, since the bottom of the buffer guide is thick, the position of the two buffer guides between the buckling position 120 can be easily determined, thereby guiding the hook 110 to enter the buckling position 120.

[0089] While the basic concepts have been described above, it will be apparent to those skilled in the art that the detailed disclosure is merely illustrative and does not limit this specification. Although not explicitly stated herein, various modifications, improvements, and revisions to this specification may be made by those skilled in the art. Such modifications, improvements, and revisions are suggested in this specification and remain within the spirit and scope of the exemplary embodiments of this specification.

[0090] This specification also uses specific terms to describe the embodiments of this specification. For example, "one embodiment," "an embodiment," and / or "some embodiments" refer to a feature, structure, or characteristic associated with at least one embodiment of this specification. Therefore, it should be emphasized and noted that references to "one embodiment," "an embodiment," or "an alternative embodiment" two or more times in different locations in this specification do not necessarily refer to the same embodiment. Furthermore, certain features, structures, or characteristics of one or more embodiments of this specification may be appropriately combined.

[0091] In addition, the order of processing elements and sequences, the use of alphanumeric characters, or other names described in this specification are not intended to limit the order of the processes and methods of this specification. Although the above disclosure discusses some currently considered useful embodiments through various examples, it should be understood that such details are for illustrative purposes only and are not limited to the disclosed embodiments.

[0092] Similarly, it should be noted that in order to simplify the description disclosed in this specification and facilitate understanding of one or more embodiments, the description of the embodiments of this specification sometimes combines multiple features into a single embodiment, figure, or description thereof. In reality, the features of an embodiment are less than all the features of a single embodiment disclosed above.

[0093] In some embodiments, numbers are used to describe the quantity of components and attributes. It should be understood that such numbers used in the description of the embodiments are modified by the modifiers "about", "approximately" or "substantially" in some examples. Unless otherwise stated, "about", "approximately" or "substantially" indicate that the numbers are allowed to vary by ±20%. Accordingly, in some embodiments, the numerical parameters used in the specification are approximate values, which may change according to the required characteristics of individual embodiments. In some embodiments, the numerical parameters should take into account the specified significant digits and adopt the general method of retaining digits. Although the numerical domains and parameters used to determine the breadth of their range in some embodiments of this specification are approximate values, in specific embodiments, the settings of such numerical values ​​are as accurate as possible within the feasible range.

[0094] Finally, it should be understood that the embodiments described in this specification are intended only to illustrate the principles of the embodiments of this specification. Other variations may also fall within the scope of this specification. Therefore, by way of example and not limitation, alternative configurations of the embodiments of this specification may be considered consistent with the teachings of this specification. Accordingly, the embodiments of this specification are not limited to the embodiments explicitly described and illustrated in this specification.

Claims

1. A suspension structure, characterized in that: The hanging structure includes a hook, a buckle and a limiting groove; The hook is arranged on the equipment to be hung; The buckle position and the limiting groove are arranged on the suspension bracket; The limiting groove is arranged above the buckle position, and the limiting groove is at least partially aligned with the buckle position; The suspension structure includes a fastened state and a relaxed state; When the suspension structure moves from the relaxed state to the engaged state, the hook moves along the first direction to above the buckle position until the hook engages with the limiting groove, and the hook accumulates force; When the suspension structure moves from the engaged state to the relaxed state, the hook moves along the second direction to be separated from the limiting groove, and the hook releases the stored force.

2. The suspension structure according to claim 1, wherein: The thickness of the limiting groove is smaller than the thickness of the buckle position, and the length of the limiting groove in the second direction is larger than the length of the buckle position in the second direction.

3. The suspension structure according to claim 2, wherein: The limiting groove includes a first structural member and a second structural member, the first structural member is aligned with the buckle position, and the second structural member gradually thickens along the second direction.

4. The suspension structure according to claim 1, wherein: The hanging structure includes at least two hooks, at least two buckles and at least two limiting grooves.

5. The suspension structure according to claim 4, wherein: The number of the hooks is less than or equal to the number of the buckling positions, and the number of the limiting grooves is the same as the number of the buckling positions.

6. The suspension structure according to claim 1, wherein: The length of the buckle position in the second direction is greater than or equal to the length of the hook, and the thickness of the buckle position gradually increases along the first direction.

7. The suspension structure according to claim 2, wherein: The suspension structure includes at least one limiting piece, and at least one limiting piece is arranged between two adjacent limiting grooves.

8. The suspension structure according to claim 2, wherein: The suspension structure includes a buffer guide, the buffer guide is arranged between two adjacent limiting grooves, and the buffer guide gradually becomes thicker along the third direction; The suspension structure moves from the engaged state to the relaxed state, the hook moves along the second direction to be separated from the limiting groove, and moves along the third direction to be separated from the buffer guide, and the hook releases the stored force.

9. The suspension structure according to claim 8, wherein: The limiting groove includes a second structural member, and the buffer guide member is arranged close to the second structural member.

10. The suspension structure according to claim 8, wherein: The surface of the buffer guide away from the suspension bracket is a straight surface and / or a curved surface.