Machine body assembling device
By combining magnetic components and electromagnet assemblies, the coolant distribution unit components can be easily disassembled and assembled using magnetic attraction or repulsion, solving the problem of difficult disassembly and assembly in existing technologies and improving the ease of disassembly and assembly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2026-04-07
AI Technical Summary
In the existing technology, disassembling and assembling the components of the coolant distribution unit requires a great deal of force, which increases the difficulty of disassembly and assembly. How can we make disassembly and assembly more effortless to improve convenience?
By combining magnetic components and electromagnets, the frame can be connected and separated through magnetic attraction or repulsion, reducing the resistance to assembly and disassembly.
By combining magnetic components with electromagnet assemblies, the resistance to disassembling and assembling coolant distribution unit components is reduced, and the ease of disassembly and assembly is improved.
Smart Images

Figure CN121815604A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a body assembly device, in particular, a body assembly device with magnetic elements. BACKGROUND
[0002] The current server system structure is to set multiple servers in an array inside a cabinet. Each server can be provided with a computing module, a power supply module, a hard disk, and a liquid cooling heat dissipation module, etc. Therefore, the server system can dissipate heat from the multiple servers in the cabinet by setting at least one cooling liquid distribution unit.
[0003] Generally, when an assembly personnel wants to disassemble the elements in the cooling liquid distribution unit, the quick release assembly is used for disassembly. However, during the disassembly process, the assembly personnel needs to exert a great force to push the elements in the cooling liquid distribution unit to be positioned or de-located, thereby increasing the difficulty of disassembling the elements in the cooling liquid distribution unit. Therefore, how to disassemble the elements in the cooling liquid distribution unit more easily to improve the convenience of disassembling the cooling liquid distribution unit is one of the problems that the researchers should solve. SUMMARY
[0004] The present application provides a body assembly device to disassemble the second frame more easily to improve the convenience of disassembling the second frame.
[0005] An embodiment of the present application discloses a body assembly device, which includes a first frame, a second frame, at least one first connector, at least one second connector, at least one magnetic element, and at least one electromagnet assembly. The second frame is detachably arranged on the first frame and movable relative to the first frame. The first connector and the second connector are arranged on the first frame and the second frame, respectively, and located between the first frame and the second frame. The at least one magnetic element is located between the first frame and the second frame. The at least one electromagnet assembly is located between the first frame and the second frame and corresponds to the at least one magnetic element. The at least one electromagnet assembly includes a magnetic conducting element and a coil. The coil is wound around the magnetic conducting element. By de-energizing or energizing the at least one electromagnet assembly, the at least one magnetic element and the magnetic conducting element are attracted or repelled, so that the at least one first connector and the at least one second connector are connected or separated. The total magnetic attraction force between the magnetic element and the electromagnet assembly is greater than or equal to the back-pushing resistance of a quick release structure.
[0006] The above-mentioned body assembly device, wherein the at least one magnetic element is arranged on the first frame, and the electromagnet assembly is arranged on the second frame.
[0007] The body assembling device, wherein the at least one electromagnet assembly further comprises a housing and a cover plate, the housing is arranged on the second frame, the magnetic conducting member is located in the housing, and the cover plate is arranged on the housing to jointly surround the magnetic conducting member with the housing, and the coil is wound on the housing corresponding to the magnetic conducting member.
[0008] The body assembling device, wherein the housing and the cover plate are made of plastic or non-magnetic metal.
[0009] The body assembling device, wherein the first frame has at least one first positioning structure, and the second frame has at least one second positioning structure, the at least one first positioning structure is arranged on the at least one second positioning structure to position the first frame and the second frame.
[0010] The body assembling device, wherein the at least one first positioning structure is a positioning protrusion, and the at least one second positioning structure is a positioning hole.
[0011] Another embodiment of the body assembling device comprises a first frame, a second frame, at least one first connector, at least one second connector, at least one first magnetic member, and at least one second magnetic member. The second frame is arranged on the first frame in a detachable manner and is movable relative to the first frame. The first connector and the second connector are arranged on the first frame and the second frame, respectively, and are located between the first frame and the second frame. The at least one first magnetic member is arranged on the first frame and is located between the first frame and the second frame. The at least one second magnetic member is movably arranged on the second frame and is located between the first frame and the second frame. The magnetic property of at least part of the at least one second magnetic member is different from that of the at least one first magnetic member. The magnetic property of another part of the at least one second magnetic member is the same as that of the at least one first magnetic member. The at least one second magnetic member at least partially corresponds to the at least one first magnetic member. By moving the at least one second magnetic member, the at least one first magnetic member and the at least one second magnetic member are attracted or repelled, so that the at least one first connector and the at least one second connector are connected or separated. The total magnetic attraction force between the at least one first magnetic member and the at least one second magnetic member is greater than or equal to the return resistance of a quick release structure.
[0012] The body assembling device, wherein the at least one first magnetic member comprises at least one first magnetic body and at least one second magnetic body, the magnetic property of the at least one first magnetic body is different from that of the at least one second magnetic body, the at least one second magnetic member comprises at least one third magnetic body, the magnetic property of the at least one third magnetic body is different from that of the at least one first magnetic body and the same as that of the at least one second magnetic body, and the at least one third magnetic body corresponds to the at least one first magnetic body or the at least one second magnetic body.
[0013] The body assembling device, wherein the at least one first magnetic member has at least one first magnetic zone and at least one second magnetic zone, the magnetic property of the at least one first magnetic zone is different from that of the at least one second magnetic zone, the at least one second magnetic member has at least one third magnetic zone and at least one fourth magnetic zone, the magnetic property of the at least one third magnetic zone is different from that of the at least one fourth magnetic zone, and the same as that of the at least one second magnetic zone, and the at least one third magnetic zone is used to correspond to the at least one first magnetic zone or the at least one second magnetic zone.
[0014] The body assembling device, wherein the number of the at least one first magnetic member and the number of the at least one second magnetic member are both two, the two first magnetic members and the two second magnetic members are staggered arranged, the number of the at least one third magnetic member is two, and the at least one second magnetic member further comprises two fourth magnetic members, the magnetic property of the two fourth magnetic members is different from that of the two third magnetic members, and the two third magnetic members and the two fourth magnetic members are staggered arranged.
[0015] The body assembling device, wherein further comprising at least one movable member, the at least one movable member is movably arranged on the second frame body, and is at least partially located between the first frame body and the second frame body, and the at least one second magnetic member is arranged on the at least one movable member.
[0016] The body assembling device, wherein the at least one movable member is rotatably arranged on the second frame body, and comprises a bearing seat, a handle and a rotating shaft, the bearing seat is connected to one end of the rotating shaft, and is located between the first frame body and the second frame body, the at least one second magnetic member is arranged on the bearing seat, and the two first magnetic members and the two second magnetic members, and the two third magnetic members and the two fourth magnetic members are arranged along a circumferential line respectively, the handle is connected to the other end of the rotating shaft, and is located on the side of the second frame body away from the bearing seat, and the rotating shaft is rotatably arranged in the second frame body.
[0017] The body assembling device, wherein the first frame body has at least one first positioning structure, the second frame body has at least one second positioning structure, the at least one first positioning structure is arranged in the at least one second positioning structure, so that the first frame body and the second frame body are positioned.
[0018] In the aforementioned body assembly device, the at least one first positioning structure is a positioning protrusion, and the at least one second positioning structure is a positioning through hole. According to the body assembly device of the above embodiment, since one embodiment of the body assembly device of the present invention provides two magnetic components and two electromagnet assemblies, when the two electromagnet assemblies are not energized and the two magnetic components are close to each other, the magnetic attraction between the magnetic components and the magnetic conductive components of the electromagnet assemblies can reduce the back-pushing resistance generated when the second frame is assembled onto the first frame. Furthermore, when the two electromagnet assemblies are energized, the two electromagnet assemblies can generate the same magnetism as the magnetic components through the current magnetic effect, thus repelling the magnetic components. This allows for easier removal of the second frame from the first frame, thereby improving the convenience of assembling and disassembling the second frame. Furthermore, since the body assembly device of another embodiment of the present invention is provided with two first magnetic components and two second magnetic components, the magnetic attraction between the first magnetic components and the second magnetic components can reduce the back-pushing resistance generated when the second frame is assembled into the first frame. Moreover, when the movable component is rotated, the two first magnetic components can be made to repel the two second magnetic components respectively, thereby making it easier to remove the second frame from the first frame. Therefore, it is easier to disassemble and assemble the second frame, thereby improving the convenience of disassembling and assembling the second frame.
[0019] The above description of the content of this invention and the following description of the embodiments are used to demonstrate and explain the principles of this invention, and to provide a further explanation of the scope of the patent application of this invention. Attached Figure Description
[0020] Figure 1 This is a three-dimensional schematic diagram of the body assembly device according to the first embodiment of the present invention.
[0021] Figure 2 for Figure 1 An exploded view of the body assembly device.
[0022] Figure 3 for Figure 1 A partial cross-sectional schematic diagram showing the attraction between the magnetic components and the electromagnet assembly of the machine body assembly.
[0023] Figure 4 for Figure 1 A partial cross-sectional schematic diagram showing the repulsion between the magnetic components and the electromagnet assembly of the machine body assembly.
[0024] Figure 5 This is a three-dimensional schematic diagram of the body assembly device according to the second embodiment of the present invention.
[0025] Figure 6 for Figure 5 An exploded view of the body assembly device.
[0026] Figure 7 for Figure 5exploded view of the first magnetic member and the second magnetic member of the body assembling device being attracted to each other.
[0027] Figure 8 for Figure 5 side view of the first magnetic member and the second magnetic member of the body assembling device being repelled from each other.
[0028] Figure 9 for Figure 5 exploded view of the first magnetic member and the second magnetic member of the body assembling device being repelled from each other.
[0029] Figure 10 for Figure 5 side view of the first magnetic member and the second magnetic member of the body assembling device being repelled from each other.
[0030] Figure 11 partial enlarged exploded view of the body assembling device according to the third embodiment of the present application.
[0031] wherein the reference numerals:
[0032] 10, 10A, 10B: body assembling device
[0033] 11: first frame body
[0034] 111: first positioning structure
[0035] 12: second frame body
[0036] 121: second positioning structure
[0037] 13: first connector
[0038] 14: second connector
[0039] 15: magnetic member
[0040] 16: electromagnet assembly
[0041] 161: shell
[0042] 162: cover plate
[0043] 163: magnetic conducting member
[0044] 164: coil
[0045] 17A, 17B: movable member
[0046] 17A1: bearing seat
[0047] 17A2: handle
[0048] 17A3: rotating shaft
[0049] 18A, 18B: first magnetic member
[0050] 18A1: first magnetic body
[0051] 18A2: second magnetic body
[0052] 18B1: first magnetic region
[0053] 18B2: second magnetic region
[0054] 19A, 19B: second magnetic member
[0055] 19A1: third magnetic body
[0056] 19A2: fourth magnetic body
[0057] 19B1: third magnetic region
[0058] 19B2: fourth magnetic region
[0059] A-E: direction DETAILED DESCRIPTION
[0060] Reference is made to Figures 1 to 4 . Figure 1 Fig. 1 is a perspective view of a body assembly device according to a first embodiment of the present application. Figure 2 Fig. 2 is an exploded view of the body assembly device of Figure 1 Fig. 3 is a partial cross-sectional view of the body assembly device of Figure 3 Fig. 4 is a partial cross-sectional view of the body assembly device of Figure 1 Fig. 5 is a partial cross-sectional view of the body assembly device of Figure 4 Fig. 6 is a partial cross-sectional view of the body assembly device of Figure 1 Fig. 7 is a partial cross-sectional view of the body assembly device of
[0061] The body assembly device 10 of the present embodiment is applied to a hot-plug cooling liquid distribution unit, for example. The hot-plug refers to the direct plugging of a system component in a state in which the system is in operation, and the system can still operate normally without interruption. The body assembly device 10 is installed in a case (not shown), for example. The case is a case of a reservoir pumping unit (RPU), for example, and the body assembly device 10 is used to connect to a reservoir container (not shown) in the case. The reservoir container is a water tank, for example.
[0062] The body assembling device 10 comprises a first frame 11, a second frame 12, two first connectors 13, two second connectors 14, two magnetic members 15, and two electromagnet assemblies 16. The first frame 11 is, for example, a frame of a housing 161 (not shown) of the body assembling device 10. The second frame 12 is, for example, a frame of a fluid supply body (not shown) of the body assembling device 10 for containing a cooling fluid (not shown). The second frame 12 is detachably disposed on the first frame 11 and movable relative to the first frame 11. That is, the second frame 12 is detachably disposed on the first frame 11.
[0063] The two first connectors 13 and the two second connectors 14 are, for example, fluid connectors. The first connectors 13 and the second connectors 14 are disposed on the first frame 11 and the second frame 12, respectively, and located between the first frame 11 and the second frame 12. The two first connectors 13 are in communication with the two second connectors 14, respectively, so that the cooling fluid can flow between a liquid container and the fluid supply body.
[0064] The two magnetic members 15 are, for example, magnets. The two magnetic members 15 are disposed on the first frame 11 and located between the first frame 11 and the second frame 12. The two electromagnet assemblies 16 are disposed on the second frame 12 and located between the first frame 11 and the second frame 12. The two electromagnet assemblies 16 correspond to the two magnetic members 15, respectively.
[0065] Each of the electromagnet assemblies 16 comprises a housing 161, a cover plate 162, a magnetic conducting member 163, and a coil 164. The housing 161 is disposed on the second frame 12. The magnetic conducting member 163 is, for example, a magnetic conducting metal such as iron and is located in the housing 161. The cover plate 162 covers the housing 161 and cooperates with the housing 161 to surround the magnetic conducting member 163. The coil 164 is wound on the housing 161 corresponding to the magnetic conducting member 163. The material of the housing 161 and the material of the cover plate 162 are plastic or non-magnetic metal. By de-energizing or energizing the two electromagnet assemblies 16, the two magnetic members 15 and the two magnetic conducting members 163 are attracted or repelled, respectively, so that the two first connectors 13 and the two second connectors 14 are mated or separated, respectively.
[0066] In the present embodiment, when the second frame 12 is assembled to the first frame 11 and fixed, for example, by a quick release structure (not shown), the quick release structure generates a back thrust resistance of, for example, 20 kg. Since the machine body assembling device 10 of the present embodiment is provided with two magnetic pieces 15 and two electromagnet assemblies 16, when the two electromagnet assemblies 16 are not energized and the two magnetic pieces 15 and the two electromagnet assemblies 16 are close to each other, a magnetic attraction force of, for example, 30 kg can be generated between a single set of the magnetic piece 15 and the electromagnet assembly 16, i.e. a total magnetic attraction force of, for example, 60 kg can be generated between the two sets of the magnetic piece 15 and the electromagnet assembly 16, so that the back thrust resistance generated by the quick release structure when the second frame 12 is assembled to the first frame 11 can be reduced by the magnetic attraction force between the magnetic piece 15 and the magnetic guide piece 163 of the electromagnet assembly 16. In addition, when the two electromagnet assemblies 16 are energized, the two electromagnet assemblies 16 can generate the same magnetism as the magnetic piece 15 by the current magnetic effect and repel the magnetic piece 15, thereby more easily removing the second frame 12 from the first frame 11. In this way, the second frame 12 can be more easily disassembled to improve the convenience of disassembling the second frame 12.
[0067] In the present embodiment, the first frame 11 can also have a plurality of first positioning structures 111, and the second frame 12 can also have a plurality of second positioning structures 121. The first positioning structures 111 are, for example, positioning protrusions, and the second positioning structures 121 are, for example, positioning holes. The first positioning structures 111 are respectively arranged in the second positioning structures 121 to position the first frame 11 and the second frame 12.
[0068] In the present embodiment, the machine body assembling device 10 can also include a plurality of first buckling structures (not shown) and a plurality of second buckling structures (not shown). The first buckling structures and the second buckling structures are, for example, buckling grooves and buckling protrusions, but are not limited thereto. The first buckling structures and the second buckling structures are respectively arranged in the first frame 11 and the second frame 12. When the first connector 13 and the second connector 14 are connected, the first buckling structures and the second buckling structures can be buckled to further fix the second frame 12 to the first frame 11.
[0069] In the present embodiment, one of the two first connectors 13 and one of the two second connectors 14 can each include a flow blocking piece (not shown). When the first connector 13 and the second connector 14 are separated, the two flow blocking pieces shield the openings of one of the two first connectors 13 and one of the two second connectors 14 to prevent the cooling fluid from flowing out.
[0070] In the present embodiment, the magnetic pieces 15 and the electromagnet assemblies 16 of the two groups can generate a magnetic attraction force of 60 kg, but the present application is not limited thereto. In other embodiments, as long as the total magnetic attraction force generated between the magnetic pieces 15 and the electromagnet assemblies 16 is greater than or equal to the push-back resistance of the quick-release structure.
[0071] Referring to Figure 3 and Figure 4 In the present embodiment, when the user wants to assemble the second frame body 12 to the first frame body 11, the electromagnet assemblies 16 can be de-energized, and the second frame body 12 is installed on the first frame body 11 along the direction A. Since the electromagnet assemblies 16 are not energized and do not generate a current magnetic effect, the magnetic pieces 15 and the magnetic conductive pieces 163 can be attracted by the magnetic attraction force, so that the first connector 13 and the second connector 14 are connected. In this way, the second frame body 12 can be assembled to the first frame body 11.
[0072] On the contrary, when the user wants to remove the second frame body 12 from the first frame body 11, the electromagnet assemblies 16 can be energized. At this time, the electromagnet assemblies 16 generate magnetism due to the current magnetic effect, and the magnetism of the end of the electromagnet assembly 16 close to the magnetic piece 15 is the same as the magnetism of the end of the magnetic piece 15 close to the electromagnet assembly 16, so that the magnetic piece 15 and the electromagnet assembly 16 can be repelled, so that the first connector 13 and the second connector 14 are separated. In this way, the second frame body 12 can be removed from the first frame body 11 along the direction B.
[0073] In the present embodiment, the machine body assembly device 10 is applied to a hot-plug cooling liquid distribution unit, but the present application is not limited thereto. In other embodiments, the machine body assembly device can also be applied to other quick-release structures.
[0074] In the present embodiment, the number of first connectors 13 and the number of second connectors 14 are each two, but the present application is not limited thereto. In other embodiments, the number of first connectors and the number of second connectors can each be only one or more than three.
[0075] In the present embodiment, the number of magnetic pieces 15 and the number of electromagnet assemblies 16 are each two, but the present application is not limited thereto. In other embodiments, the number of magnetic pieces and the number of electromagnet assemblies can each be only one or more than three.
[0076] In the present embodiment, the magnetic pieces 15 are arranged on the first frame body 11, and the electromagnet assemblies 16 are arranged on the second frame body 12, but the present application is not limited thereto. In other embodiments, the arrangement positions of the magnetic pieces and the arrangement positions of the electromagnet assemblies can be reversed. That is, the magnetic pieces can be arranged on the second frame body, and the electromagnet assemblies can be arranged on the first frame body.
[0077] In the present embodiment, the cover plate 162 of the electromagnet assembly 16 is covered on the housing 161 to jointly surround the magnetic conductor 163 with the housing 161, and the coil 164 is wound on the housing 161 corresponding to the magnetic conductor 163, but not limited thereto. In other embodiments, the electromagnet assembly can also only include a magnetic conductor and a coil, and the coil is directly wound on the magnetic conductor.
[0078] In the present embodiment, the first positioning structures 111 are positioning protrusions, and the second positioning structures 121 are positioning holes, but not limited thereto. In other embodiments, the first positioning structures can also be positioning holes, and the second positioning structures can also be positioning protrusions.
[0079] Please refer to Figures 5 to 7 . Figure 5 A perspective view of a body assembly device according to a second embodiment of the present application. Figure 6 A perspective view of Figure 5 a body assembly device. Figure 7 A perspective view of Figure 5 a body assembly device with the first magnetic member and the second magnetic member attracted to each other.
[0080] The body assembly device 10A includes a first frame 11, a second frame 12, two first connectors 13, two second connectors 14, two movable members 17A, two first magnetic members 18A, and two second magnetic members 19A. The second frame 12 is detachably arranged on the first frame 11 and is movable relative to the first frame 11. That is, the second frame 12 is detachably arranged on the first frame 11.
[0081] The two first connectors 13 and the two second connectors 14 are, for example, fluid connectors. The first connectors 13 and the second connectors 14 are arranged on the first frame 11 and the second frame 12, respectively, and are located between the first frame 11 and the second frame 12. The two first connectors 13 are used to communicate with the two second connectors 14, respectively, so that the cooling fluid can flow between the liquid storage container and the fluid supply body.
[0082] The two movable members 17A are movably arranged on the second frame 12 and are at least partially located between the first frame 11 and the second frame 12. In detail, each movable member 17A includes a carrier 17A1, a handle 17A2, and a rotating shaft 17A3. The carrier 17A1 is connected to one end of the rotating shaft 17A3 and is located between the first frame 11 and the second frame 12, and the handle 17A2 is connected to the other end of the rotating shaft 17A3 and is located on the side of the second frame 12 away from the carrier 17A1. The rotating shaft 17A3 is rotatably arranged in the second frame 12, so that the two movable members 17A are rotatably arranged on the second frame 12.
[0083] The first magnetic member 18A is disposed on the first frame body 11. Each first magnetic member 18A includes two first magnetic bodies 18A1 and two second magnetic bodies 18A2. The two first magnetic bodies 18A1 and the two second magnetic bodies 18A2 are, for example, permanent magnets, and the magnetic properties of the two first magnetic bodies 18A1 are different from the magnetic properties of the two second magnetic bodies 18A2. The two first magnetic bodies 18A1 and the two second magnetic bodies 18A2 are, for example, arranged alternately along a circumferential line.
[0084] The second magnetic member 19A is disposed on the two bearing seats 17A1, respectively. Each second magnetic member 19A includes two third magnetic bodies 19A1 and two fourth magnetic bodies 19A2. The two third magnetic bodies 19A1 and the two fourth magnetic bodies 19A2 are, for example, permanent magnets, and the magnetic properties of the two fourth magnetic bodies 19A2 are different from the magnetic properties of the two third magnetic bodies 19A1. In addition, the magnetic properties of the two third magnetic bodies 19A1 are, for example, different from the magnetic properties of the two first magnetic bodies 18A1 and the same as the magnetic properties of the two second magnetic bodies 18A2, and the magnetic properties of the two fourth magnetic bodies 19A2 are, for example, the same as the magnetic properties of the two first magnetic bodies 18A1 and different from the magnetic properties of the two second magnetic bodies 18A2. The two third magnetic bodies 19A1 and the two fourth magnetic bodies 19A2 are, for example, arranged alternately along a circumferential line.
[0085] Through the movement of the two movable members 17A, the two third magnetic bodies 19A1 are used to correspond to the two first magnetic bodies 18A1, and the two fourth magnetic bodies 19A2 are used to correspond to the two second magnetic bodies 18A2, so that the two first magnetic members 18A and the two second magnetic members 19A are attracted, or the two third magnetic bodies 19A1 are used to correspond to the two second magnetic bodies 18A2, and the two fourth magnetic bodies 19A2 are used to correspond to the two first magnetic bodies 18A1, so that the two first magnetic members 18A and the two second magnetic members 19A are repelled.
[0086] In the present embodiment, when the second frame body 12 is assembled to the first frame body 11 and fixed, for example, by a quick release structure (not shown), the quick release structure generates a return resistance of, for example, 20 kg. Since the frame assembly device 10A of the present embodiment is provided with two first magnetic members 18A and two second magnetic members 19A, and a magnetic attraction force of, for example, 30 kg can be generated between a single set of the first magnetic member 18A and the second magnetic member 19A, that is, a total magnetic attraction force of, for example, 60 kg can be generated between the two sets of the first magnetic member 18A and the second magnetic member 19A, the sum of the magnetic attraction force generated between the first magnetic member 18A and the second magnetic member 19A is greater than or equal to the return resistance of the quick release structure, and thus the return resistance of the quick release structure generated when the second frame body 12 is assembled to the first frame body 11 can be reduced by the magnetic attraction force between the first magnetic member 18A and the second magnetic member 19A. In addition, when the movable member 17A is rotated, the two first magnetic members 18A can be repelled from the two second magnetic members 19A, and thus the second frame body 12 can be removed from the first frame body 11 more easily. In this way, the second frame body 12 can be assembled and disassembled more easily, and the convenience of assembling and disassembling the second frame body 12 can be improved.
[0087] Of course, the movable member 17A can be provided corresponding to the first magnetic member 18A, so that the first magnetic member 18A can be rotated relative to the second magnetic member 19A, and the first magnetic member 18A is changed to be the driving member and the second magnetic member 19A is changed to be the fixed member, and the first magnetic member 18A is rotated to engage or disengage with the second magnetic member 19A. That is, in the present embodiment, the second magnetic member 19A can be rotated relative to the first magnetic member 18A by being provided on the movable member 17A that can be rotated relative to the second frame body 12, but the present embodiment is not limited thereto. In other embodiments, the first magnetic member 18A can be rotated relative to the second magnetic member 19A.
[0088] In the present embodiment, the first frame body 11 can also have a plurality of first positioning structures 111, and the second frame body 12 can also have a plurality of second positioning structures 121. The first positioning structures 111 are, for example, positioning protrusions, and the second positioning structures 121 are, for example, positioning holes. The first positioning structures 111 are respectively arranged in the second positioning structures 121, so that the first frame body 11 and the second frame body 12 are positioned.
[0089] In the present embodiment, the number of the first magnetic members 18A and the number of the second magnetic members 19A are each two, but the present embodiment is not limited thereto. In other embodiments, the number of the first magnetic members and the number of the second magnetic members can each be only one or each be more than three.
[0090] In the present embodiment, the number of the first magnetic bodies 18A1, the number of the second magnetic bodies 18A2, the number of the third magnetic bodies 19A1, and the number of the fourth magnetic bodies 19A2 are each two, but are not limited thereto. In other embodiments, the number of the first magnetic bodies, the number of the second magnetic bodies, the number of the third magnetic bodies, and the number of the fourth magnetic bodies can each be only one or more than three, or the first magnetic member can include only the first magnetic bodies without the second magnetic bodies, or the second magnetic member can include only the third magnetic bodies without the fourth magnetic bodies.
[0091] In the present embodiment, the first magnetic member 18A is disposed on the first frame body 11, and the second magnetic member 19A is disposed on the carrier 17A1, but is not limited thereto. In other embodiments, the disposition positions of the first magnetic member and the second magnetic member can be reversed. That is, the first magnetic member can be disposed on the carrier, and the second magnetic member can be disposed on the first frame body.
[0092] In the present embodiment, the two movable members 17A are rotatably disposed on the second frame body 12, and the two first magnetic bodies 18A1 and the two second magnetic bodies 18A2 are alternately arranged along a circumferential line, and the two third magnetic bodies 19A1 and the two fourth magnetic bodies 19A2 are alternately arranged along a circumferential line, but are not limited thereto. In other embodiments, the two movable members can be, for example, translatably disposed on the second frame body, and the two first magnetic bodies and the two second magnetic bodies can be, for example, alternately arranged along a straight line, and the two third magnetic bodies and the two fourth magnetic bodies can be, for example, alternately arranged along a straight line.
[0093] Please refer to Figures 7 to 10 . Figure 8 is a side view schematic diagram of the first magnetic member and the second magnetic member of the body assembly device attracting each other. Figure 5 is an exploded view schematic diagram of the first magnetic member and the second magnetic member of the body assembly device repelling each other. Figure 9 is a side view schematic diagram of the first magnetic member and the second magnetic member of the body assembly device repelling each other. Figure 5 Figure 10 Figure 5
[0094] In the present embodiment, when the user wants to assemble the second frame body 12 on the first frame body 11, the second frame body 12 can be assembled on the first frame body 11 along the direction C. At this time, the first magnetic bodies 18A1 correspond to the third magnetic bodies 19A1, and the second magnetic bodies 18A2 correspond to the fourth magnetic bodies 19A2, so that the first magnetic member 18A and the second magnetic member 19A can be attracted by magnetic attraction, and the first connector 13 and the second connector 14 can be connected. In this way, the second frame body 12 can be assembled on the first frame body 11.
[0095] Conversely, when the user wants to remove the second frame body 12 from the first frame body 11, the handle 17A2 of the movable member 17A is rotated in the direction D to rotate the second magnetic member 19A in the direction D. At this time, the first magnetic body 18A1 corresponds to the fourth magnetic body 19A2 and the second magnetic body 18A2 corresponds to the third magnetic body 19A1, so that the first magnetic member 18A and the second magnetic member 19A repel each other, and the first connector 13 and the second connector 14 are separated. In this way, the second frame body 12 can be removed from the first frame body 11 in the direction E.
[0096] In the second embodiment, the first magnetic member 18A includes the first magnetic body 18A1 and the second magnetic body 18A2, the second magnetic member 19A includes the third magnetic body 19A1 and the fourth magnetic body 19A2, and the first magnetic body 18A1, the second magnetic body 18A2, the third magnetic body 19A1, and the fourth magnetic body 19A2 are permanent magnets, but are not limited thereto. In other embodiments, please refer to Figure 11 . Figure 11 FIG. 4 is a partially enlarged and exploded schematic view of a frame assembly device according to a third embodiment of the present application.
[0097] The frame assembly device 10B of the present embodiment is similar to the frame assembly device 10A of the second embodiment, and thus the differences between the present embodiment and the first embodiment will be described below, and the same parts will not be described again. In the present embodiment, the first magnetic member 18B is not a permanent magnet, but has magnetic regions with magnetism generated by, for example, magnetization. Specifically, the first magnetic member 18B has two first magnetic regions 18B1 and two second magnetic regions 18B2. The magnetic properties of the two first magnetic regions 18B1 are different from those of the two second magnetic regions 18B2. The two first magnetic regions 18B1 and the two second magnetic regions 18B2 are, for example, alternately arranged along a circumferential line.
[0098] The second magnetic member 19B is not a permanent magnet, but has magnetic regions with magnetism generated by, for example, magnetization. Specifically, the second magnetic member 19B has two third magnetic regions 19B1 and two fourth magnetic regions 19B2. The magnetic properties of the two third magnetic regions 19B1 are different from those of the two fourth magnetic regions 19B2. In addition, the magnetic properties of the two third magnetic regions 19B1 are, for example, different from those of the two first magnetic regions 18B1 and the same as those of the two second magnetic regions 18B2, and the magnetic properties of the two fourth magnetic regions 19B2 are, for example, the same as those of the two first magnetic regions 18B1 and different from those of the two second magnetic regions 18B2. The two third magnetic regions 19B1 and the two fourth magnetic regions 19B2 are, for example, alternately arranged along a circumferential line.
[0099] By the movement of the movable member 17B, the third magnetic area 19B1 is used to correspond to the first magnetic area 18B1 and the fourth magnetic area 19B2 is used to correspond to the second magnetic area 18B2, so that the first magnetic area 18B1 and the second magnetic area 18B2 are attracted, or the third magnetic area 19B1 is used to correspond to the second magnetic area 18B2 and the fourth magnetic area 19B2 is used to correspond to the first magnetic area 18B1, so that the first magnetic member 18B and the second magnetic member 19B are repelled.
[0100] In the embodiment, the number of the first magnetic areas 18B1, the number of the second magnetic areas 18B2, the number of the third magnetic areas 19B1 and the number of the fourth magnetic areas 19B2 are each two, but are not limited thereto. In other embodiments, the number of the first magnetic areas, the number of the second magnetic areas, the number of the third magnetic areas and the number of the fourth magnetic areas can each be only one or more than three, or the first magnetic areas can only include the first magnetic areas without the second magnetic areas, or the second magnetic areas can only include the third magnetic areas without the fourth magnetic areas.
[0101] In the embodiment, the second magnetic member 19B can rotate relative to the first magnetic member 18B by the movable member 17B arranged rotatable relative to the second frame body 12, but is not limited thereto. In other embodiments, the first magnetic member 18B can rotate relative to the second magnetic member 19B.
[0102] According to the body assembling device of the above-mentioned embodiment, since the body assembling device of an embodiment of the present application is provided with two magnetic members and two electromagnet assemblies, when the two electromagnet assemblies are not energized and the two magnetic members and the two electromagnet assemblies are close to each other, the magnetic attraction force between the magnetic members and the magnetic conductive members of the electromagnet assemblies can reduce the back thrust resistance generated by the quick release structure when the second frame body is assembled to the first frame body, and when the two electromagnet assemblies are energized, the two electromagnet assemblies can generate the same magnetism as the magnetic members by the current magnetic effect and repel the magnetic members, so that the second frame body can be removed from the first frame body more easily, and the second frame body can be disassembled more easily, thereby improving the convenience of disassembling the second frame body.
[0103] In addition, since the body assembling device of another embodiment of the present application is provided with two first magnetic members and two second magnetic members, the magnetic attraction force between the first magnetic members and the second magnetic members can reduce the back thrust resistance generated by the quick release structure when the second frame body is assembled to the first frame body, and when the movable member is rotated, the two first magnetic members and the two second magnetic members can be repelled, so that the second frame body can be removed from the first frame body more easily, and the second frame body can be disassembled more easily, thereby improving the convenience of disassembling the second frame body.
[0104] Although the present application has been disclosed with reference to the above embodiments, the above embodiments are not intended to limit the present application, and any person skilled in the art can make some changes and modifications without departing from the spirit and scope of the present application. Therefore, the patent protection scope of the present application should be defined by the protection scope of the claims attached to the present application.
Claims
1. A body assembly device, characterized in that, Include: The first frame; A second frame, which is detachably mounted on the first frame and movable relative to the first frame; At least one first connector and at least one second connector are respectively disposed on the first frame and the second frame, and located between the first frame and the second frame; At least one magnetic component is located between the first frame and the second frame; and At least one electromagnet assembly is located between the first frame and the second frame and corresponds to the at least one magnetic element. The at least one electromagnet assembly includes a magnetic conductor and a coil wound around the magnetic conductor. Wherein, by de-energizing or energizing the at least one electromagnet assembly, the at least one magnetic element and the magnetic conductor are attracted or repelled, thereby causing the at least one first connector to dock or separate from the at least one second connector, and the sum of the magnetic attraction forces generated between the magnetic element and the electromagnet assembly is greater than or equal to the push resistance of a quick-release structure.
2. The body assembly device as described in claim 1, characterized in that, At least one magnetic element is disposed on the first frame, and the electromagnet assembly is disposed on the second frame.
3. The body assembly device as described in claim 2, characterized in that, The at least one electromagnet assembly further includes a housing and a cover plate. The housing is disposed on the second frame, the magnetic conductor is located inside the housing, the cover plate covers the housing and together with the housing surrounds the magnetic conductor, and the coil is wound around the housing at the location corresponding to the magnetic conductor.
4. The body assembly device as described in claim 3, characterized in that, The outer casing and the cover are made of plastic or non-magnetic metal.
5. The body assembly device as described in claim 1, characterized in that, The first frame has at least one first positioning structure, and the second frame has at least one second positioning structure. The at least one first positioning structure is disposed on the at least one second positioning structure so that the first frame and the second frame are positioned together.
6. The body assembly device as described in claim 5, characterized in that, The at least one first positioning structure is a positioning protrusion, and the at least one second positioning structure is a positioning perforation.
7. A body assembly device, characterized in that, Include: The first frame; A second frame, which is detachably mounted on the first frame and movable relative to the first frame; At least one first connector and at least one second connector are respectively disposed on the first frame and the second frame, and located between the first frame and the second frame; At least one first magnetic element is movably disposed on the first frame and located between the first frame and the second frame; At least one second magnetic element is movably disposed on the second frame and located between the first frame and the second frame. At least a portion of the at least one second magnetic element has a different magnetism from the at least one first magnetic element, and another portion of the at least one second magnetic element has the same magnetism as the at least one first magnetic element. At least a portion of the at least one second magnetic element corresponds to the at least one first magnetic element. The at least one first magnetic element or the at least one second magnetic element is activated by the movement of the at least one first magnetic element and the at least one second magnetic element to attract or repel each other, thereby causing the at least one first connector to dock or separate from the at least one second connector. The sum of the magnetic attraction forces generated between the at least one first magnetic element and the at least one second magnetic element is greater than or equal to the push resistance of a quick-release structure.
8. The body assembly device as described in claim 7, characterized in that, The at least one first magnetic element includes at least one first magnetic body and at least one second magnetic body, the magnetic properties of the at least one first magnetic body are different from those of the at least one second magnetic body, the at least one second magnetic element includes at least one third magnetic body, the magnetic properties of the at least one third magnetic body are different from those of the at least one first magnetic body and the same as those of the at least one second magnetic body, and the at least one third magnetic body is used to correspond to the at least one first magnetic body or the at least one second magnetic body.
9. The body assembly device as described in claim 7, characterized in that, The at least one first magnetic element has at least one first magnetic region and at least one second magnetic region, the magnetic properties of the at least one first magnetic region are different from those of the at least one second magnetic region, the at least one second magnetic element has at least one third magnetic region and at least one fourth magnetic region, the magnetic properties of the at least one third magnetic region are different from those of the at least one fourth magnetic region and are the same as those of the at least one second magnetic region, and the at least one third magnetic region is used to correspond to the at least one first magnetic region or the at least one second magnetic region.
10. The body assembly apparatus as described in claim 8, characterized in that, The number of at least one first magnetic body and the number of at least one second magnetic body are each two, the two first magnetic bodies and the two second magnetic bodies are arranged alternately, the number of at least one third magnetic body is two, and the at least one second magnetic body further includes two fourth magnetic bodies, the magnetic properties of the two fourth magnetic bodies are different from the magnetic properties of the two third magnetic bodies, and the two third magnetic bodies and the two fourth magnetic bodies are arranged alternately.
11. The body assembly apparatus as described in claim 8, characterized in that, It further includes at least one movable member, which is movably disposed on the second frame and at least partially located between the first frame and the second frame, and the at least one second magnetic member is disposed on the at least one movable member.
12. The body assembly device as described in claim 11, characterized in that, The at least one movable component is rotatably disposed on the second frame and includes a support, a handle, and a pivot. The support is connected to one end of the pivot and is located between the first frame and the second frame. The at least one second magnetic component is disposed on the support, and the two first magnetic components, the two second magnetic components, the two third magnetic components, and the two fourth magnetic components are arranged along a circumferential line. The handle is connected to the other end of the pivot and is located on the side of the second frame away from the support. The pivot is rotatably disposed through the second frame.
13. The body assembly device as described in claim 7, characterized in that, The first frame has at least one first positioning structure, and the second frame has at least one second positioning structure. The at least one first positioning structure is disposed on the at least one second positioning structure so that the first frame and the second frame are positioned together.
14. The body assembly apparatus as described in claim 13, characterized in that, The at least one first positioning structure is a positioning protrusion, and the at least one second positioning structure is a positioning perforation.