Movement structure and movement method thereof
By combining the operating components, transmission components, and moving components, and utilizing the meshing transmission of the meshing parts and the assembly parts, the rapid assembly and separation of objects is achieved, solving the problem of the difficulty in disassembling and assembling objects in the prior art, and achieving the effect of repeated rapid assembly and separation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- FIVETECH TECH INC
- Filing Date
- 2025-09-11
- Publication Date
- 2026-05-08
AI Technical Summary
In existing technologies, when screws are used to fix objects, there are problems with disassembly and assembly, making it difficult to separate the assembled objects.
It adopts a combination structure of operating parts, transmission parts and moving parts, and realizes the rapid combination and separation of at least two objects by pushing and locking or pushing and unlocking. It uses the meshing transmission of the meshing part and the assembly part to realize the rapid and repeated combination and separation of objects.
It enables the rapid combination and separation of at least two objects, solving the problem of objects being difficult to disassemble and assemble in existing technologies, and achieving the effect of repeated rapid combination and separation.
Smart Images

Figure CN121993467A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a motion structure and its motion method, and more particularly to a motion structure and its motion method that can be used to repeatedly and rapidly combine and separate at least two objects. Background Technology
[0002] When joining at least two objects, screws are typically used to fasten them together.
[0003] While the above-mentioned fixing method can fix at least two objects together in a way that makes them difficult to separate, in addition to making assembly difficult, the fixing method of the screws can also make at least two objects difficult to disassemble.
[0004] In view of the above-mentioned prior art, the inventors have developed a motion structure to effectively improve the existing deficiencies. Summary of the Invention
[0005] The motion structure and motion method of the present invention can combine the seat and the object, and apply force to the operating component to cooperate with the transmission component to drive the moving component to push and engage or push and unlock the corresponding object, so as to complete the rapid combination and separation of at least two objects, thereby achieving the effect of repeated rapid combination and separation.
[0006] To achieve the above and other objectives, the present invention provides a motion structure comprising: an operating member, a transmission member, and a moving member. The operating member is movably disposed on a base; the transmission member is movably disposed on the base and movably connected to one end of the operating member; the moving member is movably disposed on the base and one end is movably connected to the transmission member, and the other end of the moving member is used to engage or disengage with a corresponding object, or the moving member is used to engage with a corresponding object to drive the object to move, or the moving member is used to engage with a corresponding object to drive the object to move by lever.
[0007] Optionally, the operating member includes a force-applying part, a first engagement part, and a first connecting part. The first engagement part is disposed at one end of the force-applying part and is movably connected to the transmission member in an engaging manner. The first connecting part is movably disposed at the first engagement part and is assembled to the seat.
[0008] Optionally, the first engaging portion has a plurality of first teeth, and the first engaging portion is movably connected to the transmission member in an engaging manner with each of the first teeth.
[0009] Optionally, the operating member is provided with a fixing part, which is engaged or disengaged from the limiting part of the object.
[0010] Optionally, the fixing part is movably assembled to the operating member as a bolt.
[0011] Optionally, an elastic component is provided between the fixing part and the operating part.
[0012] Optionally, the transmission component includes a second engaging portion and a second connecting portion, the second connecting portion being movably disposed on the second engaging portion and combined with the seat body, the second engaging portion being movably connected to the operating component and the moving component in a meshing manner.
[0013] Optionally, the second engagement portion has a plurality of second teeth, and the second engagement portion engages with the operating member and the moving member in a meshing manner with each of the second teeth.
[0014] Optionally, the moving member includes a third engaging portion, a third connecting portion, a first abutting top, a second abutting top, and a fastening portion. The third engaging portion is disposed at one end of the moving member and is movably connected to the transmission member in an engaging manner. The third connecting portion is movably disposed at the third engaging portion and is assembled to the seat. The first abutting top and the second abutting top are correspondingly disposed at the other end of the moving member. The fastening portion is located between the first abutting top and the second abutting top.
[0015] Optionally, the third meshing part has a plurality of third teeth, and the third meshing part is movably connected to the transmission member in an engaging manner with each of the third teeth.
[0016] Optionally, the corresponding object or the object itself may be a server chassis, a casing, a motherboard, a server rack, a rack, a heat sink, a slide rail, a chip, a connector, a server, or a computer.
[0017] Optionally, the moving part includes a third engaging part, a third connecting part, a first abutting top, and a second abutting top, wherein the third engaging part is disposed on the moving part, and the third engaging part is movably connected to the transmission member in a meshing manner for gear transmission of the moving part, and the first abutting top or the second abutting top abuts against the corresponding object for driving the movement of the object.
[0018] Optionally, the object is a horizontally arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position.
[0019] Optionally, the object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position.
[0020] Optionally, the moving structure is used to separate or connect water-cooled joints, connectors, or coolant lines.
[0021] This invention provides another motion structure, which includes an operating component and a moving component. The operating component is movably disposed on a base; the moving component is movably disposed on the base and movably connected to the operating component, or the moving component is used to push and engage with a corresponding object or to push and unlock, or the moving component is used to push against a corresponding object to drive the object to move, or the moving component is used to push against a corresponding object to drive the object to move by lever.
[0022] This invention provides another method for moving a motion structure, comprising an operating component, a transmission component, and a moving component. The operating component is movably disposed on a seat; the transmission component is movably disposed on the seat and movably connected to one end of the operating component; the moving component is movably disposed on the seat and movably connected to the transmission component at one end, or the moving component is used to push against or engage with a corresponding object, or to push against a corresponding object to move the object, or to push against a corresponding object to move the object by lever; or the operating component includes a force-applying part, a first engaging part, or a first connecting part, or the first engaging part is disposed on the force-applying part, or... The first engaging portion is movably connected to the transmission member in an engaging manner, or the first connecting portion is movably disposed on the first engaging portion or assembled to the seat; or the first engaging portion has a plurality of first teeth, or the first engaging portion is movably connected to the transmission member in an engaging manner with each of the first teeth; or the operating member is provided with a fixing portion, the fixing portion being engaged or disengaged from the limiting portion of the object; or the fixing portion is movably assembled to the operating member with a bolt; or an elastic component is provided between the fixing portion and the operating member.
[0023] This invention provides another method for moving a motion structure. The motion structure includes an operating component, a transmission component, and a moving component. The operating component is movably disposed on a base; the transmission component is movably disposed on the base and movably connected to one end of the operating component; the moving component is movably disposed on the base and movably connected to the transmission component at one end, or the moving component is used to push against or engage with a corresponding object, or to push against a corresponding object to move the object, or to push against a corresponding object to move the object by lever; or the transmission component includes a second engaging portion or a second connecting portion, or the second connecting portion is movably disposed on the second engaging portion or combined with the base, or the second engaging portion is movably engaged with the operating component and the fastener in a meshing manner; or the second engaging portion has a plurality of second teeth, or the second engaging portion is movably engaged with the operating component and the fastener in a meshing manner by each of the second teeth.
[0024] This invention provides another method for moving a motion structure. The motion structure includes an operating component, a transmission component, and a moving component. The operating component is movably mounted on a base; the transmission component is movably mounted on the base and movably connected to one end of the operating component; the moving component is movably mounted on the base and movably connected to the transmission component at one end, or the moving component is used to push against or engage with a corresponding object, or to push against a corresponding object to move the object, or to push against a corresponding object to move the object by lever; or the fastener includes a third engaging portion, a third connecting portion, a first abutment, a second abutment, or a fastening portion, or the third engaging portion is located on the fastener, or the third engaging portion is movably engaged with the transmission component in a meshing manner, or the third connecting portion is movably located on the third engaging portion or connecting portion. The third engagement portion is located between the first abutment and the second abutment, or the first abutment and the second abutment are respectively disposed at the other end of the fastener; or the third engagement portion has a plurality of third teeth, or the third engagement portion is movably connected to the transmission member in a meshing manner with each third tooth; or the moving member includes a third engagement portion, a third connection portion, a first abutment, and a second abutment, wherein the third engagement portion is disposed on the moving member, and the third engagement portion is movably connected to the transmission member in a meshing manner for gear transmission of the moving member for the first abutment or the second abutment abutting against the corresponding object for driving the object's movement.
[0025] This invention provides another method for moving a motion structure. The motion structure includes an operating component and a moving component. The operating component is movably disposed on a base, and the moving component is movably disposed on the base and movably connected to the operating component. Alternatively, the moving component can be used to push against or engage with a corresponding object, or to push against a corresponding object to move the object, or to push against a corresponding object to move the object by lever. The object is a horizontally positioned server, computer, or printed circuit board, or the corresponding object is a vertically positioned casing, cabinet, or column, so that the motion structure drives the object to move back and forth, or to move back and forth in a horizontal position. Alternatively, the object is a vertically positioned server, computer, or printed circuit board, or the corresponding object is a vertically positioned casing, cabinet, or column, so that the motion structure drives the object to move back and forth, or to move back and forth in a horizontal position. Alternatively, the motion structure can be used to separate or engage water-cooling connectors, connectors, or coolant pipes.
[0026] This invention provides another method for moving a motion structure. The motion structure includes an operating component, a transmission component, and a moving component. The operating component is movably disposed on a base. The transmission component is movably disposed on the base and movably engages with the operating component. The moving component is movably disposed on the base and movably engages with the transmission component, or the moving component is used to push against and engage with a corresponding object, or to push against a corresponding object to move the object, or to push against a corresponding object to move the object by lever. The object is a horizontally arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the motion structure drives the object to move back and forth, or to move back and forth in a horizontal position. Alternatively, the object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the motion structure drives the object to move back and forth, or to move back and forth in a horizontal position. The motion structure is also used to separate or connect water-cooling joints, connectors, or coolant pipes. Attached Figure Description
[0027] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings required in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 This is an exploded view of a preferred embodiment of the present invention.
[0029] Figure 2 This is a schematic diagram of the appearance of a preferred embodiment of the present invention. Figure 1 .
[0030] Figure 3 This is a schematic diagram of the appearance of a preferred embodiment of the present invention. Figure 2 .
[0031] Figure 4 This is a schematic diagram of the appearance of a preferred embodiment of the present invention. Figure 3 .
[0032] Figure 5 This is a top view schematic diagram of a preferred embodiment of the present invention.
[0033] Figure 6 This is a side view schematic diagram of a preferred embodiment of the present invention.
[0034] Figure 7 This is a schematic diagram of the usage state of a preferred embodiment of the present invention. Figure 1 .
[0035] Figure 8 This is a schematic diagram of the usage state of a preferred embodiment of the present invention. Figure 2 .
[0036] Figure 9 This is a schematic diagram of the usage state of a preferred embodiment of the present invention. Figure 3 .
[0037] Figure 10 This is an exploded view of another preferred embodiment of the present invention.
[0038] Figure 11 This is a top view schematic diagram of another preferred embodiment of the present invention.
[0039] Figure 12 This is another schematic diagram illustrating a preferred embodiment of the present invention.
[0040] Figure Labels
[0041] 1. Motion Structure
[0042] 11 Operating components
[0043] 111 Force-Exerting Unit
[0044] 112 First meshing part
[0045] 1121 First tooth-like body
[0046] 113 First Group Reception
[0047] 114 Fixing part
[0048] 1141 Embolism
[0049] 1142 Resilient Component
[0050] 12 Transmission components
[0051] 121 Second meshing part
[0052] 1211 Second tooth-like body
[0053] 122 Second Group Reception
[0054] 13 Moving parts
[0055] 131 Third meshing part
[0056] 1311 Third tooth
[0057] 132 Third Group Reception
[0058] 133 First to the top
[0059] 134 Second Reach Top
[0060] 135 Fastening Part
[0061] 10 base
[0062] 20 Corresponding objects
[0063] 201 Fastening section
[0064] 30 objects
[0065] 301 Limiting Part
[0066] 40 Water-cooled connector Detailed Implementation
[0067] The fluid bonding structure of the present invention will be further described below with reference to the accompanying drawings.
[0068] The foregoing and other technical contents, features, and effects of the invention will be clearly presented in the following detailed description of the preferred embodiments with reference to the accompanying drawings. It is worth noting that the directional terms used in the following embodiments, such as up, down, left, right, front, or back, are only for reference to the accompanying drawings. Therefore, the directional terms used are for illustrative purposes and not for limiting the invention. Furthermore, in the following embodiments, the same or similar components will be referred to by the same or similar reference numerals.
[0069] Please see Figures 1 to 9 As shown in the figure: The present invention provides a motion structure and motion method thereof. The motion structure 1 includes an operating component 11, a transmission component 12 and a motion component 13.
[0070] The operating element 11 is movably mounted on the seat 10.
[0071] The transmission component 12 is movably disposed on the base 10 and movably connected to one end of the operating component 11.
[0072] The moving part 13 is movably disposed on the seat 10 and one end is movably connected to the transmission part 12, and the other end of the moving part 13 is used to push and engage or push and unlock the corresponding object 20.
[0073] In one embodiment of the present invention, the base 10, the operating member 11, the transmission member 12, and the moving member 13 can be assembled together to form a module, or the base 10 can be combined with the object 30. The base 10 and the object 30 can be combined, integrally formed, or the base 10 and the object 30 can be the same. In addition, the corresponding object 20 or the object 30 can be a server chassis, a casing, a motherboard, a server rack, a rack, a heat sink, a slide rail, a chip, a connector, a server, or a computer.
[0074] When fastening, the moving member 13 pushes against the fastening part 201 of the corresponding object 20. When unfastening, force is applied to the operating member 11, causing the operating member 11 to drive the transmission member 12, which in turn drives the moving member 13. When the operating member 11 operates to a predetermined angle (e.g., 90 degrees), the moving member 13 pushes against the fastening part 201 of the corresponding object 20 to unfasten, allowing the moving member 13 to avoid the fastening part 201 when the corresponding object 20 is pulled out. In this way, force can be applied to the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 to push against and fasten or push against and unfasten the corresponding object 20, thereby completing the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), achieving the purpose of repeated rapid engagement and separation.
[0075] In one embodiment of the present invention, the moving component 13 can also be used to push against the corresponding object 20 to drive the object 30 to move, or the moving component 13 can be used to push against the corresponding object 20 to drive the object 30 to move with lever effort. Thus, force can also be applied to the operating component 11 to cooperate with the transmission component 12 to drive the moving component 13 to push and engage or disengage with the corresponding object 20, thereby completing the rapid engagement and disengagement of at least two objects (the corresponding object 20 and the object 30), achieving the purpose of repeated rapid engagement and disengagement.
[0076] In one embodiment of the present invention, the operating member 11 includes a force-applying part 111, a first engagement part 112, and a first connecting part 113. The first engagement part 112 is disposed at one end of the force-applying part 111, and the first engagement part 112 is movably connected to the transmission member 12 in an engaging manner. The first connecting part 113 is movably disposed on the first engagement part 112 and is combined with the seat body 10. In another embodiment of the present invention, the force-applying part 111 may be in the form of a grip or handle, and the first connecting part 113 may be a shaft.
[0077] Based on the above embodiments, when fastening, the moving member 13 pushes against the fastening part 201 of the corresponding object 20. When unfastening is performed, force is applied to the force application part 111 of the operating member 11, causing the operating member 11 to rotate around the first engagement part 113 as the axis. Due to the rotation, the first engagement part 112 drives the transmission member 12, and at the same time, the transmission member 12 drives the moving member 13 to move. When the operating member 11 is operated to a predetermined angle (e.g., 90 degrees), the moving member 13 pushes against the fastening part 201 of the corresponding object 20 to unfasten, so that when the corresponding object 20 is pulled out, the moving member 13 can avoid the fastening part 201 of the corresponding object 20. In this way, force can be applied to the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 to push and engage or push and unengage with the corresponding object 20, so as to complete the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), thereby achieving the purpose of repeated rapid engagement and separation.
[0078] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the transmission member 12 includes a second engagement portion 121 and a second connection portion 122, the second connection portion 122 is movably disposed on the second engagement portion 121 and combined with the seat body 10, and the second engagement portion 121 is movably connected to the operating member 11 and the moving member 13 in a meshing manner; while in one embodiment of the present invention, the second connection portion 122 may be a shaft.
[0079] Based on the above embodiments, when fastening, the moving member 13 pushes against the fastening part 201 of the corresponding object 20. When unfastening is performed, force is applied to the force application part 111 of the operating member 11, causing the operating member 11 to rotate around the first engagement part 113. Due to the rotation, the first engagement part 112 drives the second engagement part 121 of the transmission member 12, causing the transmission member 12 to rotate around the second engagement part 122. At the same time, the transmission member 12 drives the moving member 13 to move around the second engagement part 121. When the operating member 11 is operated to a predetermined angle (e.g., 90 degrees), the moving member 13 pushes against the fastening part 201 of the corresponding object 20 to unfasten, so that when the corresponding object 20 is pulled out, the moving member 13 can avoid the fastening part 201 of the corresponding object 20. In this way, force can be applied to the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 to push and engage or push and unengage with the corresponding object 20, so as to complete the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), thereby achieving the purpose of repeated rapid engagement and separation.
[0080] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the moving member 13 includes a third engaging portion 131, a third connecting portion 132, a first abutting top 133, a second abutting top 134, and a fastening portion 135. The third engaging portion 131 is disposed at one end of the moving member 13 and is movably connected to the transmission member 12 in an engaging manner. The third connecting portion 132 is movably disposed on the third engaging portion 131 and combined with the seat body 10. The first abutting top 133 and the second abutting top 134 are correspondingly disposed at the other end of the moving member 13. The fastening portion 135 is located between the first abutting top 133 and the second abutting top 134. In another embodiment of the present invention, the third connecting portion 132 may be a shaft.
[0081] Based on the above embodiments, when fastening, the moving member 13 pushes against the fastening part 201 of the corresponding object 20 with the first abutment 133 and the second abutment 134, and the fastening part 135 fastens the fastening part 201, so that the fastening part 201 is located between the first abutment 133 and the second abutment 134; when unfastening, force is applied to the force-applying part 111 of the operating member 11, so that the operating member 11 rotates about the first engagement part 113 as the axis, and the rotation causes the first engagement part 112 to drive the second engagement part 121 of the transmission member 12, so that the transmission member 12 rotates about the second engagement part 122 as the axis. The actuator rotates, and simultaneously the transmission member 12 drives the moving member 13 through the second engagement part 121, causing the moving member 13 to move. When the operating member 11 is operated to a predetermined angle (e.g., 90 degrees), the second abutment 134 (or the first abutment 133) of the moving member 13 pushes against the locking part 201 of the corresponding object 20, and the locking part 135 disengages from the locking part 201 to unfasten. This allows the first abutment 133, the second abutment 134, and the locking part 135 of the moving member 13 to avoid the locking part 201 of the corresponding object 20 when the corresponding object 20 is pulled out. In this way, force can be applied to the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 and the corresponding object 20 to push and lock or push and unlock, so as to complete the rapid combination and separation of at least two objects (the corresponding object 20 and the object 30), thereby achieving the purpose of repeated rapid combination and separation.
[0082] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the first meshing part 112 has a plurality of first teeth 1121, and the first meshing part 112 is movably engaged with the transmission member 12 in a meshing manner with each of the first teeth 1121; the second meshing part 121 has a plurality of second teeth 1211, and the second meshing part 121 is movably engaged with the operating member 11 and the moving member 13 in a meshing manner with each of the second teeth 1211; and the third meshing part 131 has a plurality of third teeth 1311, and the third meshing part 131 is movably engaged with the transmission member 12 in a meshing manner with each of the third teeth 1311. Thus, as can be seen from the above embodiments, in the present invention, the first meshing part 112 meshes with each of the first teeth 1121 and each of the second teeth 1211 of the second meshing part 121, and the third meshing part 131 also meshes with each of the third teeth 1311 and each of the second teeth 1211 of the second meshing part 121.
[0083] Based on the above embodiments, during the operation of engaging or disengaging the object, the operating member 11 rotates around the first engagement portion 113, and due to the rotation, the first engagement portion 112 drives the second engagement portion 121 with each of its first teeth 1121, causing the transmission member 12 to rotate around the second engagement portion 122. Simultaneously, the second engagement portion 121 drives the third engagement portion 131 with each of its second teeth 1211, thereby actuating the moving member 13. In this way, force can be applied to the operating member 11, causing it to cooperate with the transmission member 12 to drive the moving member 13 to engage or disengage with the corresponding object 20, thus achieving rapid engagement and disengagement of at least two objects (the corresponding object 20 and the object 30) in a relatively effortless manner, achieving the purpose of repeated rapid engagement and disengagement.
[0084] In addition to the above embodiments, in one embodiment of the present invention, the difference lies in that the moving member 13 includes a third engaging portion 131, a third connecting portion 132, a first abutting top 133, and a second abutting top 134. The third engaging portion 131 is disposed on the moving member 13, and the third engaging portion 131 is movably engaged with the transmission member 12 in a meshing manner to drive the movement of the moving member 13 via gear transmission. The first abutting top 133 or the second abutting top 134 abuts against the corresponding object 20 to drive the movement of the object 30. Thus, force can be applied to the operating member 11, causing the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 to push and engage or push and unlock the corresponding object 20, thereby completing the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30) in a relatively effortless manner, achieving the purpose of repeated rapid engagement and separation.
[0085] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the force-applying part 111 of the operating member 11 is provided with a fixing part 114, the fixing part 114 is fastened or unfastened to the limiting part 301 of the object 30, wherein the fixing part 114 is movably assembled to the operating member 11 by a bolt 1141, and an elastic component 1142 is provided between the force-applying part 111 of the operating member 11 and the fixing part 114. Thus, when the operating component 11, in conjunction with the transmission component 12, drives the moving component 13 to push and engage with the corresponding object 20, the fixing part 114, in conjunction with the bolt 1141 and the elastic component 1142, can be engaged with the limiting part 301 of the object 30 to form a safety mechanism to prevent the operating component 11 from disengaging, thereby achieving a stable engagement effect. When pushing and unhooking, the fixing part 114 can be unhooked from the limiting part 301 first, and then the operating component 11 can be operated in the above manner to complete the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), thereby achieving the purpose of repeated rapid engagement and separation.
[0086] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the object 30 may be a horizontally (or vertically) arranged server, computer or printed circuit board, and the corresponding object 20 may be a vertically arranged casing, cabinet or column, so that the moving structure 1, when fastened, pushes against the fastening part 201 of the corresponding object 20 by the moving member 13, and when the fastening operation is performed, the force is applied to the operating member 11, so that the operating member 11 drives the transmission member 12, and at the same time the transmission member 12 drives the moving member 13 to move. When the operating member 11 is operated to a predetermined angle, the moving member 13 pushes against the fastening part 201 of the corresponding object 20 to unfasten, so that when the corresponding object 20 is pulled out, the moving member 13 can avoid the fastening part 201 of the corresponding object 20. In this way, force can be applied to the operating member 11 to cooperate with the transmission member 12 to drive the moving member 13 to push and engage or push and unengage with the corresponding object 20, thereby driving the object 30 to move back and forth, or to move back and forth in a horizontal position, so as to complete the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), and achieve the purpose of repeated rapid engagement and separation.
[0087] Please see Figure 10 and Figure 11 As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the motion structure 1 includes an operating member 11 and a moving member 13.
[0088] The operating element 11 is movably mounted on the seat 10.
[0089] The moving part 13 is movably disposed on the seat 10 and one end is movably connected to the operating part 11. The moving part 13 is used to push and engage or push and unengage with the corresponding object 20, so that the moving part 13 pushes against the corresponding object 20 to drive the object 30 to move (e.g., lever movement).
[0090] When fastening, the moving part 13 pushes against the fastening portion 201 of the corresponding object 20. When unfastening, force is applied to the operating part 11, causing the operating part 11 to drive the moving part 13. When the operating part 11 is operated to a predetermined angle, the moving part 13 pushes against the fastening portion 201 of the corresponding object 20 to unfasten, so that when the corresponding object 20 is pulled out, the moving part 13 can avoid the fastening portion 201 of the corresponding object 20. In this way, force can be applied to the operating part 11 to cooperate with the moving part 13 to push and fasten or push and unfasten the corresponding object 20, so as to complete the rapid combination and separation of at least two objects (the corresponding object 20 and the object 30), thereby achieving the purpose of repeated rapid combination and separation.
[0091] Please see Figure 12 As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference is that the moving structure 1 is used to separate or engage the water-cooled connector 40 (or to separate the connector or coolant pipeline). Thus, force can also be applied to the actuating member 11 to cooperate with the moving member 13 in pushing and engaging or pushing and unhooking the corresponding object 20, thereby completing the rapid engagement and separation of at least two objects (the corresponding object 20 and the object 30), achieving the purpose of repeated rapid engagement and separation.
[0092] In summary, the motion structure and motion method of the present invention can combine the seat and the object, and apply force to the operating component to cooperate with the transmission component to drive the moving component to push and engage or push and unlock the corresponding object, so as to complete the rapid combination and separation of at least two objects, thereby achieving the effect of repeated rapid combination and separation.
[0093] The above description is merely an embodiment of the present invention and is not intended to limit the patent scope of the present invention.
Claims
1. A motion structure, characterized in that, The motion structure includes: The actuator is located within the base. A transmission component, movably disposed on the base and movably connected to the operating component; and A moving component, which is movably disposed on the seat and movably connected to the transmission component, or the moving component is used to push and engage or push and unlock a corresponding object, or the moving component is used to push a corresponding object to drive the object to move, or the moving component is used to push a corresponding object to drive the object to move by lever.
2. The motion structure according to claim 1, characterized in that, The operating component includes a force-applying part, a first engaging part, or a first connecting part; or the first engaging part is disposed on the force-applying part; or the first engaging part is movably connected to the transmission component in an engaging manner; or the first connecting part is movably disposed on the first engaging part and assembled to the seat.
3. The motion structure according to claim 2, characterized in that, The first meshing part has a plurality of first teeth, or the first meshing part is movably connected to the transmission member in a meshing manner with each of the first teeth.
4. The motion structure according to claim 1, characterized in that, The operating component is provided with a fixing part, which is engaged or disengaged from the limiting part of the object.
5. The motion structure according to claim 4, characterized in that, The fixing part is movably assembled to the operating part by means of a bolt.
6. The motion structure according to claim 4, characterized in that, An elastic component is provided between the fixing part and the operating part.
7. The motion structure according to claim 1, characterized in that, The transmission component includes a second engaging portion or a second connecting portion, or the second connecting portion is movably disposed on the second engaging portion or combined with the seat body, or the second engaging portion is movably connected to the operating component and the moving component in a meshing manner.
8. The motion structure according to claim 7, characterized in that, The second engagement portion has a plurality of second teeth, or the second engagement portion engages with the operating member and the moving member in a meshing manner with each of the second teeth.
9. The motion structure according to claim 1, characterized in that, The moving part includes a third engaging part, a third connecting part, a first abutting top, a second abutting top, or a fastening part; or the third engaging part is disposed on the moving part; or the third engaging part is movably connected to the transmission part in an engaging manner; or the third connecting part is movably disposed on the third engaging part or combined with the seat; or the first abutting top and the second abutting top are correspondingly disposed on the moving part; or the fastening part is located between the first abutting top and the second abutting top.
10. The motion structure according to claim 9, characterized in that, The third meshing part has a plurality of third teeth, and the third meshing part is movably connected to the transmission member in a meshing manner with each of the third teeth.
11. The motion structure according to claim 1, characterized in that, The corresponding object or the object itself is a server casing, housing, motherboard, server rack, rack, heat sink, slide rail, chip, connector, server, or computer.
12. The motion structure according to claim 1, characterized in that, The moving part includes a third meshing part, a third connecting part, a first abutting top, and a second abutting top. The third meshing part is disposed on the moving part and is movably connected to the transmission part in a meshing manner to drive the movement of the moving part by gear transmission. The first abutting top or the second abutting top abuts against the corresponding object to drive the movement of the object.
13. The motion structure according to claim 1, characterized in that, The object is a horizontally positioned server, computer, or printed circuit board, or the corresponding object is a vertically positioned casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position.
14. The motion structure according to claim 1, characterized in that, The object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position.
15. The motion structure according to claim 1, characterized in that, The moving structure is used to separate or connect water-cooled joints, connectors, or coolant lines.
16. A motion structure, characterized in that, include: The actuator is located within the base. as well as A moving component, which is movably disposed on the seat and movably connected to the operating component, or the moving component is used to push and engage or push and unlock a corresponding object, or the moving component is used to push a corresponding object to drive the object to move, or the moving component is used to push a corresponding object to drive the object to move by lever.
17. The motion structure according to claim 16, characterized in that, The moving structure is used to separate or connect water-cooled joints, connectors, or coolant lines.
18. The motion structure according to claim 16, characterized in that, The object is a horizontally positioned server, computer, or printed circuit board, or the corresponding object is a vertically positioned casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position.
19. The motion structure according to claim 16, characterized in that, The object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth or to move back and forth in a horizontal position.
20. The motion structure according to claim 16, characterized in that, The operating component includes a force-applying part, a first engaging part, or a first connecting part; or the first engaging part is disposed on the force-applying part; or the first engaging part is movably connected to the moving component in a meshing manner or meshing structure; or the first connecting part is movably disposed on the first engaging part and combined with the seat.
21. A method for moving a motion structure, comprising a motion structure, characterized in that, The motion structure includes an operating component, a transmission component, and a moving component; the operating component is movably mounted on the seat. The transmission component is movably disposed on the seat and movably connected to the operating component; the moving component is movably disposed on the seat and movably connected to the transmission component, or the moving component is used to push and engage with or unplug a corresponding object, or the moving component is used to push with a corresponding object to drive the object to move, or the moving component is used to push with a corresponding object to drive the object to move by lever; or the operating component includes a force-applying part, a first engagement part, or a first connecting part, or the first engagement part is disposed on the force-applying part, or the first engagement part is movably connected to the transmission component in a meshing manner, or the first connecting part is movably disposed on the first engagement part or combined with the seat; or the first engagement part has a plurality of first teeth, or the first engagement part is movably connected to the transmission component in a meshing manner with each of the first teeth; or the operating component has a fixing part, the fixing part is engaged or unplugged with the limiting part of the object; or the fixing part is movably assembled to the operating component with a bolt; or an elastic component is provided between the fixing part and the operating component.
22. A method for moving a motion structure, comprising a motion structure, characterized in that, The motion structure includes an operating component, a transmission component, and a moving component; the operating component is movably mounted on the seat. The transmission component is movably disposed on the seat and movably connected to the operating component; the moving component is movably disposed on the seat and movably connected to the transmission component, or the moving component is used to push and engage with or push and unlock with a corresponding object, or the moving component is used to push with a corresponding object to drive the object to move, or the moving component is used to push with a corresponding object to drive the object to move by lever; or the transmission component includes a second engaging part or a second connecting part, or the second connecting part is movably disposed on the second engaging part or combined with the seat, or the second engaging part is movably connected to the operating component and the fastener in a meshing manner; or the second engaging part has a plurality of second teeth, or the second engaging part is movably connected to the operating component and the fastener in a meshing manner with each of the second teeth.
23. A method for moving a motion structure, comprising a motion structure, characterized in that, The motion structure includes an operating component, a transmission component, and a moving component; the operating component is movably mounted on the seat. The transmission component is movably disposed on the seat and movably connected to the operating component; the moving component is movably disposed on the seat and movably connected to the transmission component, or the moving component is used to push and engage or push and unlock a corresponding object, or the moving component is used to push a corresponding object to drive the object to move, or the moving component is used to push a corresponding object to drive the object to move by lever; or the fastener includes a third engaging part, a third connecting part, a first abutting top, a second abutting top, or a fastening part, or the third engaging part is disposed on the fastener, or the third engaging part is movably connected to the transmission component in a meshing manner, or the third connecting part is movably disposed on the third engaging part or combined with the seat, or the... The first abutment and the second abutment are correspondingly disposed at the other end of the fastener, or the fastening part is located between the first abutment and the second abutment; or the third engagement part has a plurality of third teeth, or the third engagement part is movably connected to the transmission member in a meshing manner with each third tooth, or the moving member includes a third engagement part, a third connection part, a first abutment, and a second abutment, wherein the third engagement part is disposed on the moving member, and the third engagement part is movably connected to the transmission member in a meshing manner to drive the movement of the moving member by gear transmission, and the first abutment or the second abutment abuts against the corresponding object to drive the movement of the object.
24. A method for moving a motion structure, comprising a motion structure, characterized in that, The motion structure includes an operating component and a moving component; the operating component is movably disposed on the seat, and the moving component is movably disposed on the seat and movably connected to the operating component, or the moving component is used to push and engage or push and unlock with a corresponding object, or the moving component is used to push with a corresponding object to drive the object to move, or the moving component is used to push with a corresponding object to drive the object to move by lever. The object is a horizontally arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position. Or the object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position. Or the moving structure is used to separate or connect water-cooled joints, connectors, or coolant pipes.
25. A method for moving a motion structure, comprising a motion structure, characterized in that, The motion structure includes an operating component, a transmission component, and a moving component; the operating component is movably mounted on the seat. The transmission component is movably disposed on the seat and movably connected to the operating component; the moving component is movably disposed on the seat and movably connected to the transmission component, or the moving component is used to push and engage with or push and unhook with the corresponding object, or the moving component is used to push with the corresponding object to drive the object to move, or the moving component is used to push with the corresponding object to drive the object to move by lever. The object is a horizontally arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position. Or the object is a vertically arranged server, computer, or printed circuit board, or the corresponding object is a vertically arranged casing, cabinet, or column, so that the moving structure drives the object to move back and forth, or to move back and forth in a horizontal position. Or the moving structure is used to separate or connect water-cooled joints, connectors, or coolant pipes.