Bearing assembly and cabinet module

By designing a load bearing assembly with a hollow part and a release mechanism, the coordination of sliders and engaging parts is used to solve the problem of cumbersome disassembly and assembly of the fixtures in the cabinet, and the rapid and tool-free disassembly and loading effect is achieved.

CN120224615APending Publication Date: 2025-06-27WIWYNN CORP
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Patent Information

Application Number
CN202410401471.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2023-12-25
Filing Date
2024-04-03
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The installation process of fixtures in existing cabinets is complicated, and the screws and nuts need to be locked or removed one by one, and additional tools are required, which is time-consuming and inconvenient.

Method used

A load-bearing assembly is designed, including a carrier frame and a release mechanism. The carrier frame has a hollow part, and the release mechanism includes a slider and a engaging part. The engaging part is slidably arranged in the slide groove of the slider, and passes through the hollow part to engaging on the cabinet. The engaging part has a guide slope for pressing the edge of the hollow part during disassembly to unsolicite the engaging part.

Benefits of technology

It realizes rapid disassembly and loading of the load-bearing components and their load-bearing devices, eliminates the use of tools, and significantly improves the disassembly and assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a bearing assembly and a cabinet module. The bearing assembly is used for being assembled on a cabinet. The bearing assembly comprises a bearing frame and at least one release mechanism. The bearing frame is provided with at least one hollow part. The releasing mechanism comprises a sliding piece and at least one clamping piece. The sliding piece is arranged on the bearing frame in a sliding mode. The sliding piece is provided with at least one sliding groove. The clamping piece is arranged in the sliding groove of the sliding piece in a sliding mode, and the clamping piece penetrates through the hollow-out part to be clamped on the machine cabinet. And the clamping piece is provided with a guide inclined surface which is used for pressing the edge of the hollow part, so that the clamping piece is unfixed on the cabinet. According to the invention, the bearing assembly and the device borne by the bearing assembly can be rapidly detached from the cabinet.
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Description

Technical Field

[0001] The present invention relates to the technical field of loading components, and in particular, to a bearing assembly and a cabinet module. Background Art

[0002] Generally, a cabinet contains multiple electronic devices, such as servers and power management devices. Some devices in the cabinet are slidably arranged in the cabinet through slide rails, while some devices are fixed in the cabinet and cannot slide relative to the cabinet.

[0003] For these devices fixed in the cabinet, most of them are fixed in the cabinet by using screws and nuts. When disassembling and assembling these devices in the cabinet, it is necessary to lock or remove the screws and nuts one by one, resulting in very time-consuming disassembly and assembly operations and also requiring additional tools. Therefore, the R & D personnel in this field are working hard to solve the above problems. Summary of the Invention

[0004] The present invention provides a bearing assembly and a cabinet module, and the object of the present invention is to enable the bearing assembly and the devices carried by it to be quickly disassembled from the cabinet.

[0005] A bearing assembly disclosed in an embodiment of the present invention is used to be assembled in a cabinet. The bearing assembly includes:

[0006] A bearing frame and at least one release mechanism;

[0007] The bearing frame has at least one hollow portion. The release mechanism includes a sliding member and at least one engaging member. The sliding member is slidably arranged on the bearing frame. The sliding member has at least one chute. The engaging member is slidably arranged in the chute of the sliding member, and the engaging member passes through the hollow portion to engage with the cabinet. The engaging member has a guiding inclined surface for pressing against the edge of the hollow portion to release the engaging member from the cabinet.

[0008] In a specific embodiment, at least one of the engaging members includes a guiding portion and an engaging portion connected to each other. The guiding portion is slidably arranged in at least one of the chutes of the sliding member. The guiding inclined surface is located on the engaging portion. The engaging portion passes through at least one of the hollow portions to engage with the cabinet.

[0009] In a specific embodiment, at least one of the engaging members includes a guiding portion, a pushed portion, and an engaging portion. The pushed portion is located between the guiding portion and the engaging portion. The guiding portion is slidably arranged in at least one of the chutes of the sliding member. The guiding inclined surface is located on the pushed portion. The engaging portion passes through at least one of the hollow portions to engage with the cabinet.

[0010] In a specific embodiment, at least one of the release mechanisms further includes at least one elastic member, at least one of the elastic members is disposed in at least one of the sliding grooves, and at least one of the elastic members pushes at least one of the engaging members through at least one of the hollow portions to engage with the cabinet.

[0011] In a specific embodiment, at least one of the release mechanisms further includes a holding member. The sliding member has at least one through hole, the carrier has at least one holding hole, the holding member is movably disposed on the sliding member, the holding member has at least one locking block, and at least one of the locking blocks passes through at least one of the through holes and is locked in at least one of the holding holes.

[0012] In a specific embodiment, the holding member is a resilient piece.

[0013] In a specific embodiment, the carrier includes a bottom plate and two side walls. The two side walls are respectively erected on opposite sides of the bottom plate. The number of at least one of the hollow portions is multiple, and the multiple hollow portions are respectively located on the two side walls. The number of at least one of the release mechanisms is two, and the two release mechanisms are respectively disposed on the two side walls.

[0014] In a specific embodiment, in each of the release mechanisms, the number of at least one of the sliding grooves of the sliding member and at least one of the engaging members is multiple. The multiple engaging members are respectively slidably disposed in the multiple sliding grooves of the sliding member, and the multiple engaging members respectively pass through the multiple hollow portions to engage with the cabinet.

[0015] In a specific embodiment, the sliding member includes a main body portion and at least one receiving portion. The main body portion is slidably disposed on the carrier. The main body portion has an assembling hole, and at least one of the receiving portions is assembled in the assembling hole of the main body portion. At least one of the sliding grooves is located in at least one of the receiving portions.

[0016] In a specific embodiment, the carrier has a front side, and the sliding member further includes an operating portion. The operating portion is connected to the main body portion and protrudes from the front side of the carrier.

[0017] Another embodiment of the present invention discloses a cabinet module, including:

[0018] a cabinet and a carrier assembly;

[0019] The cabinet has at least one locking hole. The carrier assembly includes a carrier and at least one release mechanism. The carrier has at least one hollow portion. The release mechanism includes a sliding member and at least one engaging member. The sliding member is slidably disposed on the carrier. The sliding member has at least one sliding groove. The engaging member is slidably disposed in the sliding groove of the sliding member. The engaging member passes through the hollow portion and engages with the locking hole of the cabinet. The engaging member has a guiding inclined surface for pressing against the edge of the hollow portion to disengage the engaging member from the locking hole of the cabinet.

[0020] In a specific embodiment, at least one of the engaging members includes a guiding portion and an engaging portion connected to each other. The guiding portion is slidably disposed in at least one of the sliding grooves of the sliding member, and the guiding inclined surface is located on the engaging portion. The engaging portion passes through at least one of the hollow portions and is engaged in at least one of the fastening holes of the cabinet.

[0021] In a specific embodiment, at least one of the engaging members includes a guiding portion, a pushed portion, and an engaging portion. The pushed portion is located between the guiding portion and the engaging portion. The guiding portion is slidably disposed in at least one of the sliding grooves of the sliding member, and the guiding inclined surface is located on the pushed portion. The engaging portion passes through at least one of the hollow portions and is engaged in at least one of the fastening holes of the cabinet.

[0022] In a specific embodiment, at least one of the release mechanisms further includes at least one elastic member. At least one of the elastic members is disposed in at least one of the sliding grooves, and at least one of the elastic members is used to push at least one of the engaging members through at least one of the hollow portions and engage in at least one of the fastening holes of the cabinet.

[0023] In a specific embodiment, at least one of the release mechanisms further includes a holding member. The sliding member has at least one through hole, and the carrier has at least one holding hole. The holding member is movably disposed on the sliding member. The holding member has at least one engaging block, and at least one of the engaging blocks passes through at least one of the through holes and is fastened in at least one of the holding holes.

[0024] In a specific embodiment, the holding member is a spring piece.

[0025] In a specific embodiment, the number of at least one of the fastening holes of the cabinet is multiple. The multiple fastening holes are located on opposite sides of the cabinet. The carrier includes a bottom plate and two side walls. The two side walls are respectively erected on opposite sides of the bottom plate. The number of at least one of the hollow portions is multiple. The multiple hollow portions are respectively located on the two side walls. The number of at least one of the release mechanisms is two. The two release mechanisms are respectively disposed on the two side walls.

[0026] In a specific embodiment, in each of the release mechanisms, the number of at least one of the sliding grooves of the sliding member and at least one of the engaging members is multiple. The multiple engaging members are respectively slidably disposed in the multiple sliding grooves of the sliding member. The multiple engaging members respectively pass through the multiple hollow portions to be engaged in the multiple fastening holes of the cabinet.

[0027] In a specific embodiment, the sliding member includes a main body portion and at least one accommodating portion. The main body portion is slidably disposed on the carrier. The main body portion has an assembling hole, and at least one of the accommodating portions is assembled in the assembling hole of the main body portion. At least one of the sliding grooves is located in at least one of the accommodating portions.

[0028] In a specific embodiment, the carrier has a front side, and the sliding member further includes an operating portion, which is connected to the main body portion and protrudes from the front side of the carrier.

[0029] Compared with the prior art, the technical solution of the present invention has the following characteristics and advantages:

[0030] According to the carrier assembly and the cabinet module disclosed in the above embodiments, the sliding member is slidably disposed on the carrier, the engaging member is slidably disposed in the sliding groove of the sliding member, the engaging member passes through the hollow portion of the carrier to be engaged with the cabinet, and the engaging member has a guiding inclined surface. When it is necessary to disassemble the carrier assembly from the cabinet, the guiding inclined surface of the engaging member can be pressed against the edge of the hollow portion by sliding the sliding member, so that the engaging member is released from the cabinet. Therefore, the carrier assembly and the device carried thereon can be easily and quickly disassembled from the cabinet in a tool-free manner. In addition, the carrier assembly and the device carried thereon can also be easily and quickly installed into the cabinet in a tool-free manner.

[0031] The above description of the content of the present invention and the following description of the embodiments are used to demonstrate and explain the principle of the present invention, and provide a further explanation for the scope of patent protection of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 Partial perspective structural view of the first embodiment of the carrier assembly and the cabinet module of the present invention;

[0033] Figure 2 Another partial perspective structural view of the first embodiment of the carrier assembly and the cabinet module of the present invention;

[0034] Figure 3 Perspective structural view of the carrier assembly of the present invention;

[0035] Figure 4 Partial structural exploded view of the carrier assembly of the present invention;

[0036] Figure 5 Partial structural cross-sectional view of the first embodiment of the carrier assembly and the cabinet module of the present invention;

[0037] Figure 6 Partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the first state of the first embodiment;

[0038] Figure 7 Partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the second state of the first embodiment;

[0039] Figure 8Partial structural cross-sectional view of the carrying component and the cabinet module of the present invention in the third state of the first embodiment;

[0040] Figure 9 Partial structural cross-sectional view of the carrying component and the cabinet module of the second embodiment of the present invention;

[0041] Figure 10 Partial structural cross-sectional view of the carrying component and the cabinet module of the present invention in the first state of the second embodiment;

[0042] Figure 11 Partial structural cross-sectional view of the carrying component and the cabinet module of the present invention in the second state of the second embodiment.

[0043] Explanation of the reference numerals in the drawings:

[0044] 1. Cabinet module; 1a. Cabinet module;

[0045] 10. Cabinet; 11. Side part; 111. Clamping hole;

[0046] 20. Carrying component; 21. Carrying frame; 211. Bottom plate; 212. Side wall; 2121. Front side; 2122. Hollow part; 2123. Holding hole; 22. Release mechanism; 221. Sliding part; 2211. Main body part; 2212. Accommodating part; 2213. Operating part; 222. Engaging part; 222a. Engaging part; 2221. Guiding part; 2221a. Guiding part; 2222. Engaging portion; 2222a. Engaging portion; 2223a. Pushed part; 223. Elastic member; 224. Holding member; 2241. Fixed end; 2242. Movable end; 2243. Block;

[0047] MH. Assembly hole;

[0048] S. Slide groove;

[0049] GS. Guide inclined plane; GSa. Guide inclined plane;

[0050] TH. Perforation;

[0051] E. Edge. Detailed implementation manners

[0052] Please refer to Figures 1 to 3 . Figure 1 Partial three-dimensional structural schematic diagram of the carrying component and the cabinet module of the first embodiment of the present invention. Figure 2 Partial three-dimensional structural schematic diagram of the carrying component and the cabinet module of the first embodiment of the present invention from another perspective. Figure 3 Three-dimensional structural schematic diagram of the carrying component of the present invention.

[0053] In this embodiment, the cabinet module 1 includes a cabinet 10 and a carrying component 20. The cabinet 10 includes two opposite side portions 11. Each of the two side portions 11 has a plurality of fastening holes 111.

[0054] The carrying component 20 includes a carrier 21 and two release mechanisms 22. The carrier 21, for example, carries an electronic device (not shown in the drawings), such as a server or a power manager. The carrier 21 includes a bottom plate 211 and two side walls 212. The two side walls 212 are respectively erected on opposite sides of the bottom plate 211. The two release mechanisms 22 are respectively disposed on the two side walls 212 of the carrier 21.

[0055] In this embodiment, the two release mechanisms 22 have the same structure, so only one of the release mechanisms 22 and one of the side walls 212 on which it is disposed will be introduced in detail below. Please refer to Figures 3 to 5 . Figure 4 is a partial structural exploded view of the carrying component of the present invention. Figure 5 is a cross-sectional view of a part of the structure of the first embodiment of the carrying component and the cabinet module of the present invention.

[0056] The side wall 212 has a front side 2121 and a plurality of hollow portions 2122. The plurality of hollow portions 2122 are arranged at intervals, and the distances of the plurality of hollow portions 2122 from the front side 2121 of the side wall 212 are different. The release mechanism 22 includes a sliding member 221 and a plurality of engaging members 222. The sliding member 221 includes a main body portion 2211, a plurality of accommodating portions 2212, and an operating portion 2213. The main body portion 2211 is slidably disposed on the side wall 212, and the main body portion 2211 has a plurality of assembly holes MH. The plurality of accommodating portions 2212 are respectively installed in the plurality of assembly holes MH of the main body portion 2211. Each of the plurality of accommodating portions 2212 has a sliding groove S. The operating portion 2213 is connected to the main body portion 2211, and the operating portion 2213 protrudes from the front side 2121 of the side wall 212. The plurality of engaging members 222 are respectively installed in the sliding grooves S of the plurality of accommodating portions 2212, and the plurality of engaging members 222 respectively pass through the plurality of hollow portions 2122 of the side wall 212 and are engaged in the plurality of fastening holes 111 of the side portion 11 of the cabinet 10. Taking one of the engaging members 222 and the corresponding hollow portion 2122 and fastening hole 111 as an example, the engaging member 222 includes a guiding portion 2221 and an engaging portion 2222 connected to each other. The guiding portion 2221 is slidably disposed in the sliding groove S of the accommodating portion 2212 of the sliding member 221, the engaging portion 2222 protrudes from the sliding groove S and passes through the hollow portion 2122 of the side wall 212, and is engaged in the fastening hole 111 of the side portion 11 of the cabinet 10. The engaging portion 2222 has a guiding inclined surface GS.

[0057] In this embodiment, the release mechanism 22 further includes a plurality of elastic members 223. The plurality of elastic members 223 are, for example, compression springs, and the plurality of elastic members 223 are disposed in a plurality of accommodating portions 2212 of the sliding member 221. Taking one of the elastic members 223 as an example, the opposite ends of the elastic member 223 respectively abut against the guiding portion 2221 of the engaging member 222 and the bottom of the accommodating portion 2212 to apply a force to the engaging member 222. The elastic member 223 pushes the engaging member 222 through the hollow portion 2122 of the side wall 212 to be engaged with the fastening hole 111 on the side portion 11 of the cabinet 10.

[0058] Furthermore, the release mechanism 22 further includes a holding member 224. The holding member 224 is, for example, a spring piece. The holding member 224 has a fixed end 2241 and a movable end 2242 that are opposite to each other. The fixed end 2241 of the holding member 224 is fixed to the main body portion 2211 of the sliding member 221. The movable end 2242 of the holding member 224 protrudes from the front side 2121 of the side wall 212 and extends beside the operation portion 2213 of the sliding member 221, and the movable end 2242 of the holding member 224 is movable relative to the sliding member 221.

[0059] In this embodiment, the main body portion 2211 of the sliding member 221 has two through holes TH, the side wall 212 has two holding holes 2123, and the holding member 224 further has two locking blocks 2243. The two locking blocks 2243 of the holding member 224 respectively pass through the two through holes TH of the main body portion 2211 of the sliding member 221 and are snapped into the two holding holes 2123 of the side wall 212 to fix the position of the sliding member 221 relative to the side wall 212.

[0060] Furthermore, please refer to Figures 5 to 7 . Figure 6 is a partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the first state of the first embodiment; Figure 7 is a partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the second state of the first embodiment; Figure 8 is a partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the third state of the first embodiment.

[0061] In Figure 5 the state where the engaging portion 2222 of the engaging member 222 shown is engaged in the fastening hole 111 on the side portion 11 of the cabinet 10, the carrier assembly 20 is fixed to the cabinet 10. Then, as Figure 6 shown, when a maintenance personnel wants to disassemble the carrier assembly 20 from the cabinet 10 to maintain the electronic device carried on the carrier assembly 20, the maintenance personnel needs to first pull the holding member 224 to disengage the two locking blocks 2243 of the holding member 224 from the two holding holes 2123 of the side wall 212 to release the fixing relationship between the sliding member 221 and the side wall 212. Furthermore, asFigure 7 and Figure 8 As shown in Figure 8 , the maintenance staff can hold the operation part 2213 of the sliding part 221 and pull the sliding part 221 in the direction away from the front side 2121 of the side wall 212. During the sliding process of the sliding part 221, the sliding part 221 will drive the engaging part 222 to move, so that the guiding inclined surface GS of the engaging part 2222 of the engaging part 222 abuts against the edge E of the hollow part 2122 of the side wall 212, and then the engaging part 2222 of the engaging part 222 disengages from the clamping hole 111 of the side part 11 of the cabinet 10 and retracts into the carrier 21 from the hollow part 2122 of the side wall 212 of the carrier 21. In this way, the maintenance staff can remove the overall carrier assembly 20 and the electronic device carried thereon from the cabinet 10 for maintenance.

[0062] In this embodiment, by slidably arranging the sliding part 221 on the carrier 21, the engaging part 222 is slidably arranged in the chute S of the sliding part 221 and passes through the hollow part 2122 of the carrier 21 to be clamped on the cabinet 10, and the engaging part 222 has a guiding inclined surface GS. When it is necessary to disassemble the carrier assembly 20 from the cabinet 10, the guiding inclined surface GS of the engaging part 222 can be pressed against the edge E of the hollow part 2122 by sliding the sliding part 221, so that the engaging part 222 is released from the fixation on the cabinet 10. Therefore, the carrier assembly 20 and the electronic device carried thereon can be easily and quickly disassembled from the cabinet 10 in a tool-free manner.

[0063] On the contrary, when the maintenance staff wants to install the overall carrier assembly 20 and the electronic device carried thereon back into the cabinet 10 after the maintenance is completed, the maintenance staff can place the overall carrier assembly 20 and the electronic device carried thereon into the cabinet 10 while the engaging part 2222 of the engaging part 222 remains in the state of being retracted into the carrier 21. Further, the maintenance staff can hold the operation part 2213 of the sliding part 221 and push the sliding part 221 in the direction of the front side 2121 of the side wall 212, so that the engaging part 2222 of the engaging part 222 protrudes from the hollow part 2122 of the side wall 212 of the carrier 21 under the push of the elastic part 223, and the engaging part 2222 is inserted into the clamping hole 111 of the side part 11 of the cabinet 10, and the two clamping blocks 2243 of the fixing part 224 are clamped in the two fixing holes 2123 of the side wall 212 of the carrier 21. In this way, the operation of easily and quickly installing the overall carrier assembly 20 and the electronic device carried thereon into the cabinet 10 is completed in a tool-free manner.

[0064] In this embodiment, the configuration in which the two clamping blocks 2243 of the fixing part 224 respectively pass through the two through holes TH of the main body part 2211 of the sliding part 221 and are clamped into the two fixing holes 2123 of the side wall 212 of the carrier 21 is used to fix the position of the sliding part 221 relative to the side wall 212 and prevent the sliding part 221 from sliding unexpectedly.

[0065] It should be noted that the number of the clamping blocks 2243 of the holding member 224, the through holes TH of the main body portion 2211 of the sliding member 221, and the holding holes 2123 of the side walls 212 of the carrier 21 is not limited to two, but can be increased or decreased according to requirements. In addition, the holding member 224 is an optional component. In other embodiments, the release mechanism may have no holding member, and the sliding member may be fixed by other suitable structures or components.

[0066] On the other hand, the design that the operating portion 2213 of the sliding member 221 protrudes from the front side 2121 of the side wall 212 of the carrier 21 can facilitate the maintenance personnel to apply force to the sliding member 221, thereby driving the sliding member 221 to move. It should be noted that the operating portion 2213 of the sliding member 221 is not limited to protruding from the front side 2121 of the side wall 212 of the carrier 21. In other embodiments, the operating portion of the sliding member may be flush with the front side of the side wall of the carrier or retracted from the front side of the side wall of the carrier.

[0067] In this embodiment, the number of the release mechanisms 22 is two, and the two release mechanisms 22 are respectively arranged on two opposite side walls 212 of the carrier 21, but this is not the limit. In other embodiments, the carrier assembly may have only one release mechanism, and one release mechanism is arranged on one of the side walls of the carrier. Further, in the release mechanism 22, the number of the engaging members 222, the elastic members 223, and the accommodating portions 2212 of the sliding member 221 is not limited to multiple. In other embodiments, the number of the engaging members, the elastic members, and the accommodating portions of the sliding member of the release mechanism may be only one, and the number of the hollow portions of the carrier may correspondingly be one.

[0068] Further, please refer to Figure 9 as shown in Figure 9 which is a partial structural cross-sectional view of the second embodiment of the carrier assembly and the cabinet module of the present invention.

[0069] The cabinet module 1a of this embodiment is similar to the cabinet module 1 of the above embodiment. The main difference between the two lies in the different structures of the engaging members of the release mechanism. Therefore, the following mainly describes this difference. The same parts between the two can be referred to the above paragraphs and will not be described again.

[0070] In this embodiment, the engaging member 222a of the release mechanism 22 includes a guiding portion 2221a, a pushed portion 2223a, and an engaging portion 2222a. The pushed portion 2223a is located between the guiding portion 2221a and the engaging portion 2222a. The guiding portion 2221a is slidably disposed in the chute S of the accommodating portion 2212 of the sliding member 221. The pushed portion 2223a has a guiding inclined surface GSa. The engaging portion 2222a passes through the hollow portion 2122 of the side wall 212 of the carrier 21 and is engaged in the fastening hole 111 of the side portion 11 of the cabinet 10.

[0071] Further, please refer to Figure 10 and Figure 11 , Figure 10 which is a partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the first state of the second embodiment; Figure 11 which is a partial structural cross-sectional view of the carrier assembly and the cabinet module of the present invention in the second state of the second embodiment.

[0072] As Figure 10 shown, when a maintenance personnel wants to disassemble the carrier assembly 20 from the cabinet 10 to maintain the electronic device carried by the carrier assembly 20, the maintenance personnel needs to first pull the holding member 224 to make the two clamping blocks 2243 of the holding member 224 disengage from the two holding holes 2123 of the side wall 212, and release the fixed relationship between the sliding member 221 and the side wall 212. Further, as Figure 11 shown, the maintenance personnel can hold the operating portion 2213 of the sliding member 221 and pull the sliding member 221 in a direction away from the front side 2121 of the side wall 212. During the sliding process of the sliding member 221, the sliding member 221 will drive the engaging member 222a to move, so that the guiding inclined surface GSa of the pushed portion 2223a of the engaging member 222a abuts against the edge E of the hollow portion 2122 of the side wall 212, and the engaging portion 2222a of the engaging member 222a disengages from the fastening hole 111 of the side portion 11 of the cabinet 10 and abuts against the edge E of the hollow portion 2122 of the side wall 212. Further, the maintenance personnel can continue to pull the sliding member 221 to drive the carrier 21 to move through the engaging portion 2222a of the engaging member 222a, and pull the carrier 21 out of the cabinet 10 to maintain the electronic device on the carrier 21.

[0073] Conversely, when the maintenance personnel want to reinstall the overall bearing component 20 and the electronic device it bears back into the cabinet 10 after the maintenance is completed, the maintenance personnel can place the overall bearing component 20 and the electronic device it bears into the cabinet 10 while the engaging portion 2222a of the engaging member 222a remains in a state of abutting against the edge E of the hollow portion 2122 of the side wall 212 of the bearing frame 21. Further, the maintenance personnel can hold the operating portion 2213 of the sliding member 221 and push the sliding member 221 in the direction of the front side 2121 of the side wall 212, so that the engaging portion 2222a of the engaging member 222a is inserted into the locking hole 111 of the side portion 11 of the cabinet 10 under the push of the elastic member 223, and the two engaging blocks 2243 of the holding member 224 are locked in the two holding holes 2123 of the side wall 212 of the bearing frame 21. In this way, the operation of installing the overall bearing component 20 and the electronic device it bears into the cabinet 10 is completed.

[0074] According to the bearing component and the cabinet module disclosed in the above embodiment, the sliding member is slidably disposed on the bearing frame, the engaging member is slidably disposed in the sliding groove of the sliding member, the engaging member can pass through the hollow portion of the bearing frame to be engaged with the cabinet, and the engaging member is provided with a guiding inclined surface. When the bearing component needs to be disassembled from the cabinet, the guiding inclined surface of the engaging member can be pressed against the edge of the hollow portion by sliding the sliding member, so that the engaging member is unlocked from the cabinet. Therefore, the bearing component and the device borne thereon can be easily and quickly disassembled from the cabinet in a tool-free manner. In addition, the bearing component and the device borne thereon can also be easily and quickly installed into the cabinet in a tool-free manner.

Claims

1. A load-bearing assembly for assembly in a cabinet, characterized in that: include: A carrier frame having at least one hollow portion; as well as At least one release mechanism includes a sliding member and at least one engaging member, wherein the sliding member is slidably disposed on the carrier, the sliding member has at least one slide groove, at least one engaging member is slidably disposed in at least one slide groove of the sliding member, and at least one engaging member passes through at least one hollow portion to be engaged with the cabinet, and at least one engaging member has a guide slope, and the guide slope is used to press against the edge of at least one hollow portion to release the at least one engaging member from the cabinet.

2. The bearing assembly according to claim 1, characterized in that: At least one of the engaging parts includes a guide portion and an engaging portion connected to each other, the guide portion is slidably disposed in at least one of the sliding grooves of the sliding part, the guide slope is located on the engaging portion, and the engaging portion passes through at least one of the hollow portions to be engaged with the cabinet.

3. The bearing assembly according to claim 1, characterized in that: At least one of the engaging parts includes a guiding portion, a pushed portion and an engaging portion, wherein the pushed portion is located between the guiding portion and the engaging portion, the guiding portion is slidably disposed in at least one of the sliding grooves of the sliding part, the guiding inclined surface is located at the pushed portion, and the engaging portion passes through at least one of the hollow portions to engage with the cabinet.

4. The bearing assembly according to claim 1, characterized in that: At least one of the release mechanisms further comprises at least one elastic member, which is disposed in at least one of the slide slots, and which pushes at least one of the engaging members to pass through at least one of the hollow portions to engage with the cabinet.

5. The bearing assembly according to claim 1, characterized in that: At least one release mechanism also includes a retaining member, the sliding member has at least one through hole, the supporting frame has at least one retaining hole, the retaining member is movably arranged on the sliding member, the retaining member has at least one clamping block, at least one of the clamping blocks passes through at least one of the through holes and is clamped in at least one of the retaining holes.

6. The bearing assembly according to claim 5, characterized in that: The holding member is a spring sheet.

7. The bearing assembly according to claim 1, characterized in that: The supporting frame includes a base plate and two side walls, the two side walls are respectively erected on the opposite sides of the base plate, the number of at least one hollow part is multiple, and the multiple hollow parts are respectively located on the two side walls, and the number of at least one release mechanism is two, and the two release mechanisms are respectively arranged on the two side walls.

8. The bearing assembly according to claim 7, characterized in that: In each of the release mechanisms, there are multiple numbers of at least one sliding groove and at least one engaging member of the sliding member, and the multiple engaging members are slidably arranged in the multiple sliding grooves of the sliding member, and the multiple engaging members pass through the multiple hollow parts to engage on the cabinet.

9. The bearing assembly according to claim 1, characterized in that: The sliding member includes a main body and at least one accommodating portion. The main body can be slidably arranged on the supporting frame. The main body has an assembly hole. At least one accommodating portion is assembled in the assembly hole of the main body. At least one sliding groove is located in at least one accommodating portion.

10. The bearing assembly according to claim 9, characterized in that: The carrier has a front side, and the sliding member further includes an operating portion, which is connected to the main body and protrudes from the front side of the carrier.

11. A cabinet module, characterized in that: include: A cabinet having at least one fixing hole; as well as A load-bearing assembly, comprising: A carrier frame having at least one hollow portion; as well as At least one release mechanism includes a sliding member and at least one engaging member, wherein the sliding member is slidably disposed on the supporting frame, the sliding member has at least one sliding groove, and at least one engaging member is slidably disposed in at least one sliding groove of the sliding member. At least one engaging member passes through at least one hollow portion and is engaged in at least one fixing hole of the cabinet. At least one fixing member has a guide slope, and the guide slope is used to press the edge of at least one hollow portion to release at least one engaging member from at least one fixing hole of the cabinet.

12. The cabinet module according to claim 11, characterized in that: At least one of the engaging parts includes a guide portion and an engaging portion connected to each other, the guide portion can be slidably arranged in at least one of the sliding grooves of the sliding part, the guide inclined surface is located in the engaging portion, and the engaging portion passes through at least one of the hollow portions and is engaged in at least one of the fixing holes of the cabinet.

13. The cabinet module according to claim 11, characterized in that: At least one of the engaging parts includes a guiding portion, a pushed portion and an engaging portion, wherein the pushed portion is located between the guiding portion and the engaging portion, the guiding portion is slidably disposed in at least one of the sliding grooves of the sliding part, the guiding inclined surface is located in the pushed portion, and the engaging portion passes through at least one of the hollow portions and is engaged in at least one of the fixing holes of the cabinet.

14. The cabinet module according to claim 11, characterized in that: At least one of the release mechanisms further comprises at least one elastic member, which is disposed in at least one of the slide slots, and which pushes at least one of the engaging members to pass through at least one of the hollow portions and engage in at least one of the securing holes of the cabinet.

15. The cabinet module according to claim 11, characterized in that: At least one release mechanism also includes a retaining member, the sliding member has at least one through hole, the supporting frame has at least one retaining hole, the retaining member is movably arranged on the sliding member, the retaining member has at least one clamping block, at least one of the clamping blocks passes through at least one of the through holes and is clamped in at least one of the retaining holes.

16. The cabinet module according to claim 15, characterized in that: The holding member is a spring sheet.

17. The cabinet module according to claim 11, characterized in that: The cabinet has a plurality of at least one fixing hole, which are located on two opposite sides of the cabinet; the support frame includes a bottom plate and two side walls, which are respectively erected on two opposite sides of the bottom plate; the cabinet has a plurality of at least one hollow portion, which are respectively located on the two side walls; and the cabinet has two release mechanisms, which are respectively arranged on the two side walls.

18. The cabinet module according to claim 17, characterized in that: In each of the release mechanisms, there are multiple numbers of at least one sliding groove and at least one engaging member of the sliding member, and the multiple engaging members are slidably arranged in the multiple sliding grooves of the sliding member, and the multiple engaging members pass through the multiple hollow parts to be engaged in the multiple fixing holes of the cabinet.

19. The cabinet module according to claim 11, characterized in that: The sliding member includes a main body and at least one accommodating portion. The main body can be slidably arranged on the supporting frame. The main body has an assembly hole. At least one accommodating portion is assembled in the assembly hole of the main body. At least one sliding groove is located in at least one accommodating portion.

20. The cabinet module according to claim 19, characterized in that: The carrier has a front side, and the sliding member further includes an operating portion, which is connected to the main body and protrudes from the front side of the carrier.