Abutting structure

By setting an elastic component between the body and the top to form an elastic support space, the problem of unsmooth movement and support limitation of the object is solved, and a smoother movement and support effect is achieved.

CN121007194APending Publication Date: 2025-11-25DTECH PRECISION INDS
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Patent Information

Application Number
CN202510298150.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-08-20
Filing Date
2025-03-13
Publication Date
2025-11-25

AI Technical Summary

Technical Problem

The lack of corresponding structural design when an object moves or hits a limit switch results in unsmooth movement and limit switch operation.

Method used

It adopts a top-stop structure design that includes a body, a top stop, and elastic components. By setting elastic components between the body and the top stop to form an elastic top-stop space, smooth movement and top-stop limitation are achieved.

Benefits of technology

It improves the smoothness of object movement and top-stopping, and enhances the flexibility and adaptability of the top-stopping structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a propping structure, which comprises a body part, a propping part and an elastic component, an elastic propping space is formed between the body part and the propping part, or a wheel body is arranged, so that an elastic propping space is formed among the propping part, the wheel body and the body part. Through the cooperation of the abutting part and the wheel body or the cooperation of the abutting part and the wheel body, the effects of more smooth movement and abutting limiting are achieved.
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Description

Technical Field

[0001] This invention relates to a blocking structure and a blocking method thereof, and more particularly to a blocking structure and a blocking method thereof that can achieve smoother movement and blocking limit. Background Technology

[0002] When an object moves or reaches its limit, it cannot move or reach its limit smoothly because there is no corresponding structural design for moving or reaching.

[0003] In view of the above-mentioned prior art, the inventors have developed a blocking structure and a blocking method, in order to achieve smoother movement and blocking limit through the blocking structure. Summary of the Invention

[0004] The abutting structure of the present invention can achieve smoother movement and abutting limit.

[0005] To achieve the above and other objectives, the present invention provides a support structure comprising: a body, at least one support top, and an elastic component, wherein the support top is movably disposed on the body, and the elastic component is disposed between the body and the support top, thereby forming an elastic support space between the body and the support top.

[0006] The present invention provides another abutment structure, comprising: a body, at least one abutment top, a wheel, and an elastic component, wherein the abutment top is movably disposed on the body, the wheel is movably disposed on the body, and the elastic component is disposed between the body and the abutment top, thereby forming an elastic abutment space between the abutment top and the wheel or the body.

[0007] Optionally, the body, the abutment, and the elastic component are integrally formed, or the body and the abutment are integrally formed, or the body and the elastic component are integrally formed, or the abutment and the elastic component are integrally formed, or the wheel and the abutment are integrally formed.

[0008] Optionally, the wheel body is integrally formed with the top.

[0009] Optionally, the body is attached to the object, and the abutting top is used to abut against the object to make the object abut, move, elastically correct, elastically move, limit, or elastically limit.

[0010] Optionally, the wheel is mounted on a carrier.

[0011] Optionally, one end of the elastic component abuts against the body, and the other end of the elastic component abuts against the top.

[0012] Optionally, one end of the elastic component abuts against the body, and the other end of the elastic component abuts against the stop portion joined to the top.

[0013] Optionally, the body is provided with a connecting part, which is riveted, expanded, welded or locked to the object, or the connecting part is integrally formed with the object.

[0014] Optionally, the top abutment is provided with a connecting portion, which is assembled with the body.

[0015] Optionally, the number of abutments is two or more, and each abutment is located on both sides, both ends or different positions of the object to abut against the object being abutted.

[0016] Optionally, the body is provided with a stop portion, which stops between the wheel and the elastic component.

[0017] Optionally, the surface of the body or the abutment is provided with a friction-reducing substance to reduce the friction of the body or the abutment moving on the support. The friction-reducing substance is an electroplated layer, Teflon, nylon, plastic, oil, sprayed substance, soaking substance, or soft substance.

[0018] Optionally, the surface of the wheel body is provided with a friction-reducing substance to reduce the friction of the wheel body moving on the load. The friction-reducing substance is an electroplating layer, Teflon, nylon, plastic, oil, spraying substance, soaking substance, or soft substance.

[0019] Optionally, the body is disposed on an object, which is an electronic device, motherboard, server, storage device, data center, cabinet, rack, casing, heat sink, or heat-generating element.

[0020] Optionally, the abutting structure or the body is disposed on an object, and the abutting structure, the body, or the object is a wheel, a track, a column, a buckle, a handle, a flow channel, a fluid barrier, a chip, a fluid disruptor, a heat sink, a support, or an elastic body; or the object is an electronic device, a motherboard, a server, a storage device, a data center, a cabinet, a rack, a housing, a heat sink, or a heating element; or the abutting top is a handle, a track, a slider, a moving object, a rod, a rotating body, a heat sink, a wheel, a track, a column, a chip, a buckle, a handle, a flow channel, a fluid barrier, a fluid disruptor, a heat sink, a support, an elastic body, a shell, a printed circuit board, or a telescopic structure.

[0021] Optionally, the body is provided with a limiting part, which restricts the movement of the abutment and the body, or the limiting part restricts the abutment and the body after deformation.

[0022] Optionally, the body, the abutment, and the elastic component are integrally formed, or the elastic component is integrally formed with the body or the abutment, or the abutment is a wheel.

[0023] Optionally, the top and the body are provided with limiting portions for combination.

[0024] Optionally, the abutment is located to the side of the body, or the abutment is located to the side of the object.

[0025] Optionally, the abutting structure or the abutting structure combined with the object being abutted forms a module. The abutting structure or the module can be a handle, track, slider, moving object, rod, rotating body, heat sink, housing, printed circuit board, or telescopic structure. Alternatively, the object being abutted can be a handle, track, slider, moving object, rod, rotating body, heat sink, wheel, track body, column, chip, buckle, handle body, flow channel, fluid block, fluid disturbance, heat sink, support body, wire bundle body, tube bundle body, fiber bundle body, wire, tube, fiber, elastomer, housing, printed circuit board, or telescopic structure.

[0026] Optionally, the object being topped has at least one entry portion, which is connected to a channel.

[0027] Optionally, the object being pushed has at least one inlet, the inlet being used to allow the abutment to elastically abut or elastically engage with the abutment, or the inlet being used to lift the abutment, or the inlet being provided with a ramp or slope to lift the abutment.

[0028] Optionally, the abutting top is used to abut against the heat sink, so that the heat sink applies pressure to the heat-generating body through the abutting force of the abutting top, so that the heat sink dissipates heat from the heat-generating body.

[0029] Optionally, the abutting structure has a supported object, the supported object having at least one entry portion, the entry portion being used to allow the abutting object to elastically abut or elastically engage with the entry portion, or the entry portion having a lifting portion, or the entry portion having two lifting portions, or the entry portion being connected to a channel to allow the abutting object to move, or the entry portion being used to lift the abutting object, or the entry portion being an inclined surface, slope, step, cross-section, or arc surface to lift the abutting object, or the abutting structure being a component or module that can retract, extend, move, slide, or slide laterally on the supported object, or the abutting structure being a handle that can retract, extend, move, slide, or slide laterally on the supported object, or the channel width is greater than the neck of the abutting object, or one end of the elastic component abuts against the body and the other end abuts against the stop portion of the abutting object.

[0030] Optionally, the abutting force of the abutting top is used to apply pressure against a printed circuit board, a printed circuit board of inconsistent thickness, or an object of inconsistent thickness.

[0031] Optionally, the abutment is used to fasten the fastened body, wherein the fastened body is a fixing frame, a fluid blocker, a fluid guide, a fluid disruptor, a connector, a spacer, or a driving body; or the fastened body is used to fix a pipe, a flat cable, a connector, or a wire; or the fastened body is used to guide or block fluid; or the fastened body is used to isolate fluid; or the fastened body is used to drive fluid; or the fluid is gas, liquid, oil, or electric current; or the abutment structure or the fastened body is used to guide a heat source to a fluid, object, metallic object, or non-metallic object; or the abutment is used to fasten, assemble, clamp, snap, or slide onto a heat sink; or the abutment is used to fasten, assemble, clamp, snap, or slide onto a track body.

[0032] Optionally, the abutting structure is provided with an anti-rotation part, which mutually prevents rotation, limits or restricts the direction of the object with the corresponding anti-rotation part of the object; or the body of the abutting structure is provided with a connecting part and an anti-rotation part, which is assembled with the object, and the anti-rotation part mutually prevents rotation, limits or restricts the direction of the object with the corresponding anti-rotation part of the object.

[0033] Optionally, the body and the top abutment are fixedly or movably connected by a combination part, or the body or the top abutment is provided with a handle or a first buckle part, or an intermediary is provided between the body, the top abutment and the elastic component, or the abutment structure and the object are fixedly or movably connected by a combination part.

[0034] Optionally, the top abutment is a heat sink, used to apply pressure or fasten pressure to the heat sink for heat dissipation, or the heat sink is a printed circuit board, IC, metal body, non-metal body or chip.

[0035] Optionally, the abutment head enters through the inlet of the heating element, or the abutment head re-enters the channel or structure of the heating element, so as to fasten or set the abutment head on the heating element, or to set the abutment head between the heating element and the body.

[0036] Optionally, the top abutment enters the entry portion and engages with the channel.

[0037] Optionally, a medium is provided between the abutment and the heating element, the medium being a heat dissipation medium, heat dissipation paste, elastomer, or sheet.

[0038] Optionally, the body is used for welding, riveting, expanding, fastening, locking, or integrally forming on an object.

[0039] Optionally, the body is a heat sink, or the body of the abutment structure is assembled to the heat sink, or the heat sink provides heat dissipation for the heating element, or the heat sink has a flow channel for fluid to pass through, or the heat sink has a fastener, or the abutment abuts against the heat sink, or the abutment is a handle or a first fastener, or the heating element is a chip or a conductor, or the heating element is disposed on an object, or the object is a printed circuit board, a heat sink, or a metal body, or the heat sink has a fastener for fastening the object, or the fastener has an elastic component for applying elastic force to the heat sink to press against the heating element for heat dissipation, or the abutment is rotated to lower its height.

[0040] Optionally, it also includes a second buckle, wherein the body has a setting portion for allowing the second buckle to pass through to a setting position, or for mounting or passing through the body at the abutment, or for controlling the second buckle at the abutment.

[0041] Optionally, it further includes a second fastening part, wherein the body has a setting part for allowing the second fastening part to pass through to a setting position, or for combining with the body, or the combining part is the abutment top for abutting the second fastening part, or the abutment top for abutting the second fastening part, or the abutment top moving to control the movement or fastening of the second fastening part, or the combining part and the abutment top combining with another combining part, or the movement of the other combining part controlling the movement or fastening of the second fastening part, or the abutment top driving the movement of the other combining part to control the movement or fastening of the second fastening part, or wherein the second fastening part is a The object can be a sphere, a sloped surface, a unidirectional sloped surface, a cylinder, or a buckle; or the setting part can be a perforation, a movement space, a groove, a sloped surface, a stepped surface, an arc-shaped surface, a right-angled surface, or a non-right-angled surface; or the abutment top can be a first buckle; or the combined part can be a first buckle; or the abutment top can be a second buckle; or the combined part can be a second buckle; or the abutment top and the combined part can be integrally formed; or the abutment top and the combined part can be connected to each other; or the abutment top can be the combined part; or the second buckle can be used to reach the setting position by free fall; or the second buckle can be used to reach the setting position with the assistance of a tool or a magnetic tool.

[0042] Optionally, it may also include a support object, the support object having at least one lifting portion, the lifting portion being used to allow the abutment to elastically abut or elastically engage with the lifting portion or channel, or having two lifting portions, or the lifting portion being connected to the channel to allow the abutment to move, or the lifting portion being used to lift the abutment, or the lifting portion being an inclined surface, slope, step, cross section or arc surface for lifting the abutment, or the abutment structure being a component or module that can retract, extend, move, slide or slide laterally on the support object, or the abutment structure being a handle that can retract, extend, move, slide or slide laterally on the support object, or the width of the lifting portion being less than the abutment, or the width of the channel being greater than the neck of the abutment, or one end of the elastic component abutting against the body and the other end abutting against the stop portion of the abutment, or the abutment having an operating portion for operating the abutment to move or engage.

[0043] Optionally, it may also include a combination part for combining with the body, or the combination part being a first fastener, or the combination part and the abutment being combined with another combination part, or the movement of the combination part being used to control the movement or fastening of the first fastener, or the abutment driving the movement of the combination part to control the movement or fastening of the first fastener, or the combination part being used to first pass through the body and then combine with the abutment with the other combination part, or the combination part being used to first pass through the body and the elastic component and then combine with the abutment with the other combination part.

[0044] Optionally, it further includes a second fastening part, wherein the abutment top has a limiting part and an opening part for rotating to limit the limiting position of the second fastening part, or for limiting the opening position of the second fastening part; or wherein the elastic component is a torsion spring or a torsional elastic body for driving the abutment top normally in the position limiting the second fastening part, or normally in the position opening the second fastening part; or wherein the second fastening part is a sphere, a slope, a unidirectional slope, a cylinder, or a fastening body; or wherein the two ends of the elastic component are respectively limited to the body and the abutment top; or the body or the abutment top has a limiting part for limiting the rotation angle of the abutment top; or wherein the limiting part or the opening part is an arc surface, a slope, a sphere, a groove, a hole, a plane, a concave part, or a convex part.

[0045] Optionally, the abutting structure is disposed on the heat sink, or the heat sink provides heat dissipation for the heat source, or the heat source is disposed in two heat sinks for heat dissipation, or the heat source has heat sinks above and below for heat dissipation, or the abutting structure is used to connect two heat sinks, or the abutting structure is used to connect the heat sink and the object, or the abutting structure is a buckle, or the abutting structure is used to lift or operate the heat sink, or the heat source is a transistor, a power-conducting element, memory, CPU, or GPU.

[0046] Optionally, it also includes a second buckle, the abutment top abutting against the second buckle, the body having a setting part, a limiting part and a lifting part, the limiting part restricting the abutment top, the abutment top moving longitudinally to bring the second buckle to the setting position of the setting part, and the lifting part abutting against the rotated abutment top.

[0047] Optionally, the body is a handle, and the body is assembled to the object with fixing components at both ends, and the body has two adjacent abutments or one abutment.

[0048] Optionally, the abutting structure has a pusher, the pusher being a handle, the pusher having at least one entry part, the entry part being connected to a channel, the entry part being used to lift the abutting top, and the entry part being used to allow the abutting top to elastically abut or elastically engage with the entry part.

[0049] Optionally, the abutting structure or the body is disposed on an object, the object being a casing or cabinet, the body being provided with a handle and a buckle, or the abutting top being provided with a first buckle. The body is moved by the handle and cooperates with the abutting top to abut against the elastic component, so as to fasten or unfasten the buckle or the first buckle to the object.

[0050] Optionally, it also includes a second fastening part, the abutting top abutting the second fastening part, the body, the abutting top and the elastic component are integrally formed, and the body is provided with a setting part and a limiting part. The abutting top moves longitudinally or in a rotational direction to cause the elastic component to be elastically limited or elastically disengaged at the limiting part, so that the abutting top drives the second fastening part to the setting position of the setting part, and the abutting top has an open part, which is used to rotate and limit the limiting position of the second fastening part, or to limit the open position of the second fastening part, so that the second fastening part can be required to be positioned or opened by cooperating with the open part.

[0051] Optionally, the body is provided with a limiting part, which is riveted, threaded, fastened, welded, locked, heat-fused, or punched with a tool to restrict the movement of the abutment and the body.

[0052] Optionally, one end of the body is provided with a connecting part, the connecting part including a fastener or a snap fastener, and the body is assembled to the object by the fastener or the snap fastener.

[0053] Optionally, the abutting structure connects two heat sinks, with a heating element between the two heat sinks. The abutting force of the abutting top applies pressure to the two heat sinks on the heating element, so that the heat sinks dissipate heat from the heating element.

[0054] Optionally, it also includes a first buckle and a second buckle, the body having a setting portion for allowing the second buckle to pass through to a setting position, and the abutment portion combining with the first buckle, so that the movement of the abutment portion is used to control the movement or fastening of the second buckle.

[0055] Optionally, the abutment structure is disposed or integrally formed on the heat sink, and the abutment top is fastened or assembled to an object, circuit board or another heat sink, so that the heat sink can dissipate heat from the heat-generating element.

[0056] Optionally, the abutment is provided on the fastener, or the abutment is used to fasten to an object, so that the fastening part of the fastener is fastened to or limited to the fastening part of the object, so as to prevent the fastener from detaching from the object, wherein the fastening part is a threaded body, an external fastening body, an internal fastening body, a spring fastening body, or a column.

[0057] Optionally, it also includes a first buckle and a second buckle, the first buckle abutting against the second buckle, the body is provided with a rotating part, and the top of the abutting part is provided with a corresponding rotating part. Rotating the top of the abutting part causes the rotating part to cooperate with the corresponding rotating part, so that the first buckle controls the movement of the second buckle in a spiral manner.

[0058] Optionally, the body, the top abutment, and the elastic component are integrally formed. The elastic component can be elastically deformed and snapped into the limiting part of the body to limit the top abutment or prevent the corresponding rotating part of the top abutment from disengaging or loosening from the rotating part.

[0059] Optionally, the abutment can be a threaded body, a column, an outer snap body, an inner snap body, or a spring snap body.

[0060] Optionally, the body is provided with a handle, the body is disposed on an object, and the top is provided with a guide, the guide being used to guide the handle or the object to approach, enter, set or assemble onto another object.

[0061] Optionally, there is a floating amount between the guide portion and the handle portion, or there is another floating amount between the handle portion and the other object.

[0062] Optionally, the guide portion and the handle portion are assembled together, or the assembly portion is a through-joint, riveted, or extended portion.

[0063] Optionally, one end of the elastic component abuts against the body and the other end abuts against the top.

[0064] Optionally, the body is provided with a handle, a pull part, or a buckle, the elastic component is provided on the body, or the body is an elastic component, or the buckle is fastened to the object and another object to elastically release the buckle so that the object can move by the wheels, or the object is a housing, or the other object is a frame or cabinet.

[0065] Optionally, the body is provided with an anti-rotation part, or the top abutment is provided with a corresponding anti-rotation part. The anti-rotation part and the corresponding anti-rotation part are used to prevent rotation between the body and the top abutment, or the anti-rotation part or the corresponding anti-rotation part is used to prevent rotation with the object.

[0066] Optionally, the body is provided with a handle and a second buckle, the body is disposed on an object, and the second buckle is fastened to another object.

[0067] Optionally, the second fastener can be an outer fastener, a threaded body, a column, a spring-loaded fastener, an inner fastener, a beveled body, or a curved body.

[0068] Optionally, the body is provided with a setting part for setting the second buckle. The setting part has an anti-rotation part or a limiting part, which is used to prevent rotation or limit the deformation of the handle part when the stamping force is applied, so that the setting part is kept in the correct position or direction for assembling the second buckle.

[0069] Optionally, the handle portion is injection molded in a mold, and a setting portion for assembling the second buckle portion is formed in a mold or module, or the mold is injection molded in a plastic or metal mold.

[0070] Optionally, the body is provided with at least one second fastener, and the body is laterally attached to the object via the second fastener.

[0071] Optionally, the body is provided with a setting part for allowing the second buckle to enter or reach the setting position or the fastening position, or the setting part is located on the side, above or below the body, or the second buckle is first entered into the body from the setting part, or the second buckle enters the setting position or the fastening position and is used by the abutment to abut against the second buckle, or the abutment is used to open or close the second buckle, or then an elastic component is installed on the body to abut against the abutment, or an elastic component is installed on the body to abut against the body and the abutment, or the abutment has a guide part for guiding the movement of the second buckle, or the guide part is an inclined surface, curved surface, arc surface, step, concave part, convex part or plane, or the abutment has a limiting part for limiting the position of the second buckle or the position after movement.

[0072] Optionally, the number of the second buckle is one, two, or more.

[0073] Optionally, the body is provided with a setting part for allowing the second buckle to enter or reach the setting position or the fastening position, or the setting part is located on the side, above or below the body, or the second buckle is first entered into the body from the setting part, or the second buckle enters the setting position or the fastening position and is used by the abutment to abut against the second buckle, or the abutment is used to open or close the second buckle, or then an elastic component is installed on the body to abut against the abutment, or an elastic component is installed on the body to abut against the body and the abutment, or the abutment has a guide part for guiding the movement of the second buckle, or the guide part is an inclined surface, curved surface, arc surface, step, concave part, convex part or plane, or the abutment has a limiting part for limiting the position of the second buckle or the position after movement.

[0074] Optionally, the body has a setting position for setting the second buckle, or the setting position is located on the side, above, or below the body, or the second buckle is in the setting position or the fastening position and is used by the abutment to abut against the second buckle, or the abutment is used to open or close the second buckle, or the second buckle is first set in the setting position, and then the abutment or elastic component is installed on the body to abut against the abutment, or an elastic component is installed on the body to abut against the body and the abutment. The body has a guide portion for guiding the movement of the second buckle, or the guide portion is an inclined surface, curved surface, arc surface, step, concave portion, convex portion or plane, or the abutment has a limiting portion for limiting the position of the second buckle or its moved position, or the body has a setting portion for allowing the second buckle to pass through to reach the setting position, or the body has a setting portion for allowing the second buckle to pass through to reach the setting position, and then the abutment is installed on the body or an elastic component is installed to abut against the abutment.

[0075] Optionally, the body is used to be assembled or integrally formed into the object, the top abutment is provided with a first buckle, the top abutment is used to be assembled or bolted to the body to form an assembly, connector or link, or the elastic component abuts against the body and the top abutment, or the object is fastened to another object with the first buckle, or the object is provided with a wheel, rolling body, track or sliding body, which can open or close the first buckle to move the object through the wheel, rolling body, track or sliding body, or to detach from the other object.

[0076] Optionally, the abutment top is provided with an entry portion to allow the second buckle to engage with the abutment top on the object, or the entry portion has a channel to allow the second buckle with an elastic component to limit, temporarily limit, or elastically limit the first buckle in a fastened or unfastened position, or to move the first buckle to a fastened or unfastened position.

[0077] Optionally, the body is provided with an anti-rotation part to prevent rotation with the object, or the top abutment is provided with another anti-rotation part to prevent rotation with the body, the other anti-rotation part being used to limit the position or movement of the top abutment, or the other anti-rotation part being used to limit the fastening direction, fastening angle or fastening position of the second buckle.

[0078] Optionally, the body is assembled with the abutment and the object, or the abutment is a fastener, or the object is disposed on another object, or the object and the other object are a housing or cabinet, or the abutment is fastened to the other object, or the body is actuated, rotated or pulled to disengage the abutment from the other object, or to allow an object with wheels or tracks to partially, completely, or fasten to the other object by the rolling of the wheels or the sliding of the tracks.

[0079] Optionally, the body is provided with a setting part for assembling the second buckle, and the body is provided with a setting position, which is a position opposite to the setting part or a position reachable by free fall.

[0080] Optionally, the elastic component is a torsion spring, with its two ends respectively disposed on the body and the abutment, so that the abutment can be elastically rotated to abut against the second buckle, so that the second buckle is in a buckled position or a non-buckled position, or wherein the body or the abutment is provided with a limiting part to limit the abutment to the second buckle being in a buckled position or a non-buckled position.

[0081] Optionally, the number of the abutment and the elastic component is two, each abutment being used to fasten two objects; or the body has a shoulder for supporting at least one object; or the body has a connecting part for connecting with an object; or the body has an anti-rotation part for limiting the direction of the body; or the anti-rotation part for limiting the fastening direction of each abutment; or the anti-rotation part for limiting the direction of the body, each abutment, and the object.

[0082] Optionally, the body is provided with a setting part, through which an object enters the body and is fastened, interfered with, locked, or conductive by the abutment top, wherein the object is a fastened body, a conductive body, a line, a fastener, an optical fiber, a metal body, a plastic body, a column, or a plate, or the abutment top is a fastening part, a column, a threaded body, a protrusion, a concave body, or a planar body, or the two ends of the elastic component abut against the body and the abutment top respectively, or the setting part is a hole, a groove, a channel, or a space.

[0083] Optionally, the body may have a limiting part for limiting the abutment and the elastic component; or the body may have threads for fixing to an object; or it may pass through the object and then be fixed to another object; or the abutment may be laterally assembled to the body and used to laterally abut or fasten to the object; or the abutment may be used to laterally abut or fasten to the fastened part of the object; or the abutment may pass through the object and then laterally abut or fasten to the other object; or the body may pass through the object and then lock into the other object, and the abutment may abut or fasten to the other object or the fastened part of the other object; or the abutment may be used to laterally interfere with a nut, threads, or the object to prevent loosening or fastening; or the body may have an assembly part for riveting, expanding, welding, fastening, or locking to the object; or the body may have an operating part; or the body may have a head.

[0084] Optionally, it also includes an elastic component disposed between the body and the abutment and located on the outside of the body.

[0085] Optionally, the abutment top is a lever body, the body is a handle, and the abutment top is combined with another assembly to form a first buckle, which is used to control the first buckle to engage or disengage with another object by levering the abutment top.

[0086] Optionally, the abutment is pressed by a tool or mold to expand and be assembled to the body, or the abutment is provided with a groove, recess, or hole for pressing by a tool or mold onto the groove, recess, or hole to expand and be assembled to the body.

[0087] Optionally, the top abutment is fastened to a heating element or a heat sink, or the heat sink dissipates heat from the heating element.

[0088] Optionally, the body may be a handle, a buckle, a track, a heat sink, a moving body, a wheel, a rotating body, or a rolling body. The body may be disposed on or assembled to an object, or the abutment may be located on the other side of the object so that the abutment may engage with another object.

[0089] Optionally, the body is provided with a setting part, or the body is provided with a setting position, or the setting part is used to allow the second buckle to pass through and reach the setting position, or the setting position is opposite to the setting part or a position that can be reached by free fall.

[0090] Optionally, the body is provided with a setting part and a setting position, and the second buckle part reaches the setting position through the setting part.

[0091] Optionally, the body is provided with a setting part and a setting position, the second buckle reaches the setting position through the setting part, and an abutment is installed on the body to abut against the second buckle.

[0092] Optionally, the body is provided with a setting part and a setting position, the second buckle reaches the setting position through the setting part, or the second buckle reaches the setting position by free fall through the setting part, or the second buckle is used as a tool to reach the setting position through the setting part, or the second buckle is used as the top limit stop after reaching the setting position, or the second buckle is used to stop the top limit stop after reaching the setting position, or the second buckle reaches the setting position through the setting part and then the top limit stop is installed on the body or an elastic component is installed to stop against the top limit stop.

[0093] The present invention provides a method for abutting abutting a structure, the abutting structure comprising a body, at least one abutting top and an elastic component, the abutting top being movably disposed on the body, and the elastic component being disposed between the body and the abutting top, thereby forming an elastic abutting space between the body and the abutting top during application.

[0094] The present invention provides another method for abutting abutment structure, wherein the abutment structure includes a body, at least one abutment top, a wheel, and an elastic component. The abutment top is movably disposed on the body, the wheel is movably disposed on the body, and the elastic component is disposed between the body and the abutment top. In application, an elastic abutment space is formed between the abutment top and the wheel or the body, or the wheel is the abutment top, or the wheel and the abutment top are integrally formed.

[0095] This invention provides another method for using a blocking structure, the blocking structure comprising a body, at least one blocking top, and an elastic component, wherein the blocking top is used to fasten a fastened object, wherein the fastened object is a fixing frame, a fluid blocker, a fluid guide, a fluid disruptor, a connector, a spacer, or a driving body; or the fastened object is used to fix a pipe, a flat cable, a connector, or a wire; or the fastened object is used to guide or block fluid; or the fastened object is used to isolate fluid; or the fastened object is used to drive fluid; or the fluid is gas, liquid, oil, or electric current; or the blocking structure and the fastened object are used to guide a heat source to a fluid, an object, a metallic object, or a non-metallic object; or the blocking structure is provided with an anti-rotation part, the anti-rotation part and the corresponding anti-rotation part of the object mutually prevent rotation, limit, or restrict the direction of the object; or the body of the blocking structure is provided with a connecting part or an anti-rotation part, the connecting part being assembled with the object, the anti-rotation part... The anti-rotation parts of the body and the object are mutually anti-rotation, limiting or restricting the direction of the object; or the body and the top abutment are fixedly or movably connected by a combination part; or the body or the top abutment is provided with a handle or a first buckle; or an intermediary is provided between the body, the top abutment and the elastic component; or the abutment structure and the object are fixedly or movably connected by a combination part; or the top abutment is a heat sink, or is used to apply pressure or fasten pressure to a heat sink for heat dissipation; or the heat sink is a printed circuit board, IC, metal body, non-metal body or chip; or the top abutment enters through the entry part of the heat sink, or the top abutment re-enters the structure or channel of the heat sink, or is used to fasten or set on the heat sink, or the top abutment is set between the heat sink and the body, or the top abutment enters the entry part and fastens into the structure or channel.

[0096] This invention provides another method for using a supporting structure, wherein the supporting structure includes a body, at least one supporting top, and an elastic component. The body of the supporting structure is a heat sink, or the body of the supporting structure is assembled to a heat sink, or the heat sink provides heat dissipation for a heating element, or the heat sink has a flow channel for fluid passage, or the heat sink has a fastener, or the supporting top abuts against the heat sink, or the supporting top is a handle or a first fastener, or the heating element is a chip or a conductor, or the heating element is disposed on an object, or the object is a printed circuit board, a heat sink, or a metal body, or the heat sink has a fastener for fastening the object, or the fastener has an elastic component for applying elastic force to the heat sink to press against the heating element for heat dissipation, or the supporting top is rotated to reduce its height.

[0097] This invention provides another method for abutting abutment structure, the abutment structure comprising a body, at least one abutment top, an elastic component, and a first fastening part. The body has a setting part for allowing the first fastening part to reach a setting position for combining with the body, or the combining part is the first fastening part, or the combining part is the abutment top for abutting the first fastening part, or the combining part and the abutment top are combined with another combining part, or the other combining part moves to control the movement or fastening of the first fastening part, or the abutment top drives the other combining part to move to control the movement or fastening of the first fastening part, or wherein the first fastening part is a sphere, a slope, a unidirectional slope, a cylinder, or a fastening body, or the setting part is a perforation, a movement space or groove, a sloped part, a stepped part, an arc-shaped part, a right-angled part, or a non-right-angled part.

[0098] This invention provides another method for using a supporting structure, the supporting structure comprising a body, at least one supporting top, an elastic component, and a supported object. The supported object has at least one lifting portion, the lifting portion being used to allow the supporting top to elastically abut or elastically engage with the lifting portion or channel; or the supporting object may have two lifting portions; or the lifting portion may be connected to the channel to allow the supporting top to move; or the lifting portion may be used to lift the supporting top; or the lifting portion may be an inclined surface, slope, step, cross-section, or arc surface to lift the supporting top; or the supporting structure may be a component or module that can retract, extend, move, slide, or slide laterally on the supported object; or the supporting structure may be a handle that can retract, extend, move, slide, or slide laterally on the supported object; or the width of the lifting portion may be smaller than the supporting top; or the width of the channel may be greater than the neck of the supporting top; or one end of the elastic component abuts against the body and the other end abuts against the stop portion of the supporting top; or the supporting top has an operating portion for operating the supporting top to move or engage.

[0099] The present invention provides another method for abutting abutment structure, the abutment structure comprising a body, at least one abutment top, and an elastic component, wherein the abutment structure further comprises a combination part for combining with the body, or the combination part being a first fastener, or the combination part and the abutment top being combined with another combination part, or the movement of the combination part being used to control the movement or fastening of the first fastener, or the abutment top driving the movement of the combination part to control the movement or fastening of the first fastener, or the combination part being used to first pass through the body and then combine with the abutment top with the other combination part, or the combination part being used to first pass through the body and the elastic component and then combine with the abutment top with the other combination part.

[0100] This invention provides another method for abutting abutment structure, the abutment structure comprising a body, at least one abutment top, and an elastic component, wherein it further comprises a second latching part, the abutment top having a limiting part and an opening part, used to rotate and limit the limiting position of the second latching part, or to limit the opening position of the second latching part, or wherein the elastic component is a torsion spring or a torsional elastic body, used to drive the abutment top to be normally located in the position limiting the second latching part, or normally located in the position opening the second latching part, or wherein the second latching part is a sphere, a slope, a unidirectional slope, a cylinder, or a latching body, or wherein the two ends of the elastic component are respectively limited to the body and the abutment top, or the body or the abutment top has a limiting part to limit the rotation angle of the abutment top, or wherein the limiting part or the opening part is an arc surface, a slope, a sphere, a groove, a hole, a plane, a concave part, or a convex part.

[0101] This invention provides another method for using a supporting structure, wherein the supporting structure includes a body, at least one supporting top, and an elastic component, wherein the supporting structure is disposed on a heat sink, or the heat sink provides a heat source for heat dissipation, or the heat source is disposed in two heat sinks for heat dissipation, or the heat source has heat sinks above and below for heat dissipation, or the supporting structure is used to connect two heat sinks, or the supporting structure is used to connect a heat sink and an object, or the supporting structure is a fastener, or the supporting structure is used to lift or operate the heat sink, or the heat source is a transistor, a power-conducting element, memory, CPU, or GPU.

[0102] The present invention provides another method for abutting abutting structure, the abutting structure comprising a body, at least one abutting top and an elastic component, wherein the abutting structure further comprises a second buckle, the body having a setting portion for allowing the second buckle to pass through to a setting position, or for the abutting top to be mounted or passed through the body, or for the abutting top to control the second buckle.

[0103] This invention provides another method for using a resisting structure. The resisting structure includes a body, at least one resisting top, and an elastic component. It further includes a second fastening part. The body has a setting portion for allowing the second fastening part to pass through to a setting position, or for combining with the body, or the combining portion being the resisting top for resisting the second fastening part, or the resisting top for resisting the second fastening part, or the resisting top moving to control the movement or fastening of the second fastening part, or the combining portion and the resisting top being combined with another combining portion, or the movement of the other combining portion controlling the movement or fastening of the second fastening part, or the resisting top driving the other combining portion to move to control the movement or fastening of the second fastening part. The movement or fastening of the fastener, or the second fastener being a sphere, inclined plane, unidirectional inclined plane, cylinder, or fastener, or the setting part being a perforation, movement space, groove, inclined surface, stepped surface, arc surface, right angle, or non-right angle, or the abutment being a first fastener, or the assembly being a first fastener, or the abutment being a second fastener, or the assembly being a second fastener, or the abutment being integrally formed with the assembly, or the abutment being connected to the assembly, or the abutment being the assembly, or the second fastener being used to reach the setting position by free fall, or the second fastener being used to reach the setting position with tool assistance or magnetic tool assistance. Attached Figure Description

[0104] 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.

[0105] Figure 1 This is a schematic diagram of the appearance of the first embodiment of the present invention.

[0106] Figure 2 This is a schematic diagram of the appearance of the second embodiment of the present invention.

[0107] Figure 3 This is a schematic diagram of the appearance of the third embodiment of the present invention.

[0108] Figure 4 This is a schematic diagram of the appearance of the fourth embodiment of the present invention.

[0109] Figure 5 This is a schematic diagram of the appearance of the fifth embodiment of the present invention.

[0110] Figure 6 This is a schematic diagram of the appearance of the sixth embodiment of the present invention.

[0111] Figure 7 This is a schematic diagram of the appearance of the seventh embodiment of the present invention.

[0112] Figure 8 This is another external schematic diagram of the eighth embodiment of the present invention.

[0113] Figure 9 This is a schematic diagram of the appearance of the ninth embodiment of the present invention.

[0114] Figure 10 This is a schematic diagram of the appearance of the tenth embodiment of the present invention.

[0115] Figure 11 This is a schematic diagram of the eleventh embodiment of the present invention.

[0116] Figure 12 This is a schematic diagram of the twelfth embodiment of the present invention.

[0117] Figure 13 This is a schematic diagram of the thirteenth embodiment of the present invention.

[0118] Figure 14 This is a schematic diagram of the fourteenth embodiment of the present invention.

[0119] Figure 15 This is a schematic diagram of the fifteenth embodiment of the present invention.

[0120] Figure 16 This is a schematic diagram of the sixteenth embodiment of the present invention.

[0121] Figure 17 This is a schematic diagram of the seventeenth embodiment of the present invention.

[0122] Figure 18 This is a schematic diagram of the eighteenth embodiment of the present invention.

[0123] Figure 19 This is a schematic diagram of the nineteenth embodiment of the present invention.

[0124] Figure 20 This is a schematic diagram of the twentieth embodiment of the present invention.

[0125] Figure 21 This is a schematic diagram of the twenty-first embodiment of the present invention.

[0126] Figure 22 This is a schematic diagram of the twenty-second embodiment of the present invention.

[0127] Figure 23 This is a schematic diagram of the twenty-third embodiment of the present invention.

[0128] Figure 24 This is a schematic diagram of the twenty-fourth embodiment of the present invention.

[0129] Figure 25This is a schematic diagram of the twenty-fifth embodiment of the present invention.

[0130] Figure 26 This is a schematic diagram of the twenty-sixth embodiment of the present invention. Figure 1 .

[0131] Figure 27 This is a schematic diagram of the twenty-sixth embodiment of the present invention. Figure 2 .

[0132] Figure 28 This is a schematic diagram of the twenty-seventh embodiment of the present invention.

[0133] Figure 29 This is a schematic diagram of the twenty-eighth embodiment of the present invention.

[0134] Figure 30 This is a schematic diagram of the twenty-ninth embodiment of the present invention.

[0135] Figure 31 This is a schematic diagram of the thirtieth embodiment of the present invention.

[0136] Figure 32 This is a schematic diagram of the thirty-first embodiment of the present invention.

[0137] Figure 33 This is a schematic diagram of the thirty-second embodiment of the present invention.

[0138] Figure 34 This is a schematic diagram of the thirty-third embodiment of the present invention.

[0139] Figure 35 This is a schematic diagram of the thirty-fourth embodiment of the present invention.

[0140] Figure 36 This is a schematic diagram of the thirty-fifth embodiment of the present invention.

[0141] Figure 37 This is a schematic diagram of the thirty-fifth embodiment of the present invention.

[0142] Figure 38 This is a schematic diagram of the thirty-sixth embodiment of the present invention.

[0143] Figure 39 This is a schematic diagram of the thirty-seventh embodiment of the present invention.

[0144] Figure 40 This is a schematic diagram of the thirty-eighth embodiment of the present invention.

[0145] Figure 41 This is a schematic diagram of the thirty-ninth embodiment of the present invention.

[0146] Figure 42 This is a schematic diagram of the fortieth embodiment of the present invention.

[0147] Figure 43 This is a schematic diagram of the forty-first embodiment of the present invention.

[0148] Figure 44 This is a schematic diagram of the forty-second embodiment of the present invention.

[0149] Figure 45 This is a schematic diagram of the forty-third embodiment of the present invention.

[0150] Figure 46 This is a schematic diagram of the forty-fourth embodiment of the present invention.

[0151] Figure 47 This is a schematic diagram of the forty-fifth embodiment of the present invention.

[0152] Figure 48 This is a schematic diagram of the forty-sixth embodiment of the present invention. Figure 1 .

[0153] Figure 49 This is a schematic diagram of the forty-sixth embodiment of the present invention. Figure 2 .

[0154] Figure 50 This is a schematic diagram of the forty-seventh embodiment of the present invention.

[0155] Figure 51 This is a schematic diagram of the forty-eighth embodiment of the present invention.

[0156] Figure 52 This is a schematic diagram of the forty-ninth embodiment of the present invention. Figure 1 .

[0157] Figure 53 This is a schematic diagram of the forty-ninth embodiment of the present invention. Figure 2 .

[0158] Figure 54 This is a schematic diagram of the fiftieth embodiment of the present invention.

[0159] Figure 55 This is a schematic diagram of the fifty-first embodiment of the present invention.

[0160] Figure 56 This is a schematic diagram of the fifty-second embodiment of the present invention. Figure 1 .

[0161] Figure 57 This is a schematic diagram of the fifty-second embodiment of the present invention. Figure 2 .

[0162] Figure 58 This is a schematic diagram of the fifty-third embodiment of the present invention.

[0163] Figure 59 This is a schematic diagram of the fifty-fourth embodiment of the present invention.

[0164] Figure 60 This is a schematic diagram of the fifty-fifth embodiment of the present invention. Figure 1 .

[0165] Figure 61 This is a schematic diagram of the fifty-fifth embodiment of the present invention. Figure 2 .

[0166] Figure 62 This is a schematic diagram of the fifty-sixth embodiment of the present invention.

[0167] Figure 63 This is a schematic diagram of the fifty-seventh embodiment of the present invention.

[0168] Figure 64 This is a schematic diagram of the fifty-eighth embodiment of the present invention.

[0169] Figure 65 This is a schematic diagram of the fifty-ninth embodiment of the present invention.

[0170] Figure 66 This is a schematic diagram of the sixtieth embodiment of the present invention.

[0171] Figure 67 This is a schematic diagram of the sixty-first embodiment of the present invention.

[0172] Figure 68 This is a schematic diagram of the sixty-second embodiment of the present invention.

[0173] Figure 69 This is a schematic diagram of the sixty-third embodiment of the present invention.

[0174] Figure 70 This is a schematic diagram of the sixty-fourth embodiment of the present invention.

[0175] Figure 71 This is a schematic diagram of the sixty-fifth embodiment of the present invention.

[0176] Figure 72 This is a schematic diagram of the sixty-sixth embodiment of the present invention.

[0177] Figure 73 This is a schematic diagram of the sixty-seventh embodiment of the present invention.

[0178] Figure 74 This is a schematic diagram of the sixty-eighth embodiment of the present invention.

[0179] Figure 75 This is a schematic diagram of the sixty-ninth embodiment of the present invention.

[0180] Figure 76 This is a schematic diagram of the seventieth embodiment of the present invention.

[0181] Figure 77 This is a schematic diagram of the seventy-first embodiment of the present invention.

[0182] Figure 78 This is a schematic diagram of the seventy-second embodiment of the present invention.

[0183] Figure 79 This is a schematic diagram of the seventy-third embodiment of the present invention.

[0184] Figure 80 This is a schematic diagram of the seventy-fourth embodiment of the present invention.

[0185] Figure 81 This is a schematic diagram of the seventy-fifth embodiment of the present invention.

[0186] Figure 82 This is a schematic diagram of the seventy-sixth embodiment of the present invention.

[0187] Figure 83 This is a schematic diagram of the seventy-seventh embodiment of the present invention.

[0188] Figure 84 This is a schematic diagram of the seventy-eighth embodiment of the present invention.

[0189] Figure 85 This is a schematic diagram of the seventy-ninth embodiment of the present invention.

[0190] Figure 86 This is a schematic diagram of the eightieth embodiment of the present invention.

[0191] Figure 87 This is a schematic diagram of the eighty-first embodiment of the present invention.

[0192] Figure 88 This is a schematic diagram of the eighty-second embodiment of the present invention.

[0193] Figure 89 This is a schematic diagram of the eighty-third embodiment of the present invention.

[0194] Figure 90 This is a schematic diagram of the eighty-fourth embodiment of the present invention.

[0195] Figure 91 This is a schematic diagram of the eighty-fifth embodiment of the present invention.

[0196] Figure 92 This is a schematic diagram of the eighty-sixth embodiment of the present invention.

[0197] Figure 93 This is a schematic diagram of the eighty-seventh embodiment of the present invention.

[0198] Figure 94 This is a schematic diagram of the eighty-eighth embodiment of the present invention.

[0199] Figure 95 This is a schematic diagram of the eighty-ninth embodiment of the present invention.

[0200] Figure 96 This is a schematic diagram of the ninetieth embodiment of the present invention.

[0201] Figure 97 These are schematic diagrams showing different forms of the second buckle of the present invention.

[0202] Figure 98 This is a schematic diagram of the ninety-first embodiment of the present invention.

[0203] Figure 99 This is a schematic diagram of the ninety-second embodiment of the present invention.

[0204] Figure 100 This is a schematic diagram of the ninety-third embodiment of the present invention.

[0205] Figure 101 This is a schematic diagram of the ninety-fourth embodiment of the present invention.

[0206] Figure 102 This is a schematic diagram of the ninety-fifth embodiment of the present invention.

[0207] Figure 103 This is a schematic diagram of the ninety-sixth embodiment of the present invention.

[0208] Figure 104 This is a schematic diagram of the ninety-seventh embodiment of the present invention.

[0209] Figure 105 This is a schematic diagram of the ninety-eighth embodiment of the present invention.

[0210] Figure 106 This is a schematic diagram of the ninety-ninth embodiment of the present invention.

[0211] Figure 107 This is a schematic diagram of the hundredth embodiment of the present invention.

[0212] Figure 108 This is a schematic diagram of the 101st embodiment of the present invention.

[0213] Figure 109 This is a schematic diagram of the 102nd embodiment of the present invention.

[0214] Figure 110 This is a schematic diagram of the 103rd embodiment of the present invention.

[0215] Figure 111 This is a schematic diagram of the 104th embodiment of the present invention.

[0216] Figure 112 This is a schematic diagram of the 105th embodiment of the present invention.

[0217] Figure 113 This is a schematic diagram of the 106th embodiment of the present invention.

[0218] Figure 114 This is a schematic diagram of the 107th embodiment of the present invention.

[0219] Figure 115 This is a schematic diagram of the 108th embodiment of the present invention.

[0220] Figure 116 This is a schematic diagram of the 109th embodiment of the present invention.

[0221] Figure 117 This is a schematic diagram of the 110th embodiment of the present invention.

[0222] Figure 118 This is a schematic diagram of the 111th embodiment of the present invention.

[0223] Figure 119 This is a schematic diagram of the 112th embodiment of the present invention.

[0224] Figure 120 This is a schematic diagram of the 113th embodiment of the present invention.

[0225] Figure 121 This is a schematic diagram of the 114th embodiment of the present invention.

[0226] Figure 122 This is a schematic diagram of the 115th embodiment of the present invention.

[0227] Figure 123 This is a schematic diagram of the 116th embodiment of the present invention.

[0228] Figure 124 This is a schematic diagram of the 117th embodiment of the present invention.

[0229] Figure 125 This is a schematic diagram of the 118th embodiment of the present invention.

[0230] Figure 126 This is a schematic diagram of the 119th embodiment of the present invention.

[0231] Figure 127 This is a schematic diagram of the 120th embodiment of the present invention.

[0232] Figure Labels

[0233] 1. Support structure

[0234] 11 Body

[0235] 111 Assembly Section

[0236] 1110 Raise part

[0237] 1111 Fastener

[0238] 1112 Snap-on Body

[0239] 1113 Rotating part

[0240] 112 Anti-transfer Department

[0241] 113 Assembly Section

[0242] 1131 Bevel part

[0243] 114 Handle

[0244] 115 Perforation

[0245] 116 Fixing Components

[0246] 117 flow channel

[0247] 118 Button Body

[0248] 119 Resilient Components

[0249] 110 Equipment Department

[0250] 1101 Setting Location

[0251] 1102 Shoulder

[0252] 1103 Thread

[0253] 1104 Operations Department

[0254] 1105 Head

[0255] 12 Reach the top

[0256] 120 groove

[0257] 121 Handle

[0258] 1211 Guidance Department

[0259] 1212 corresponds to the anti-rotation unit

[0260] 1213 Another anti-rotation unit

[0261] 122 First buckle

[0262] 123 Guide Surface

[0263] 124 Neck

[0264] 125 Barrier

[0265] 126 Operations Department

[0266] 127 Another assembly section

[0267] 128 Second buckle

[0268] 129 Corresponding rotating part

[0269] 13. Flexible components

[0270] 14 Wheels

[0271] 15. Stopping section

[0272] 16 Joint

[0273] 17 Stop section

[0274] 18 Limiting section

[0275] 19 Intermediaries

[0276] 10 objects

[0277] 100 wheels

[0278] 101 Corresponding anti-rotation unit

[0279] 102 Fastening Part

[0280] 103 Detained Department

[0281] 20. Load-bearing structure

[0282] 30. Object on top

[0283] 301 Entry Department

[0284] Channel 302

[0285] 303 bevel

[0286] 304 Lifting section

[0287] 40 Heat sink

[0288] 41. Fever Element

[0289] 410 Entering Department

[0290] Channel 411

[0291] 412 Medium

[0292] 413 Perforation

[0293] 414 flow channel

[0294] 415 Button Body

[0295] 42 Printed Circuit Board

[0296] 421 connector

[0297] 43. Detained body

[0298] 431 pipe body

[0299] 44 Fluid Baffle

[0300] 45 connector

[0301] 451 Flat Cable

[0302] 401 Fan

[0303] 50 orbital bodies

[0304] 60 Limiting section

[0305] 61 Open Department

[0306] 62 Restriction Section

[0307] 7 tools

[0308] 70 Another object

[0309] 701 Detained Department

[0310] 71 Mold

[0311] 72 Nuts

[0312] 8 Fasteners

[0313] 80 seized items

[0314] 81 Button

[0315] a friction-reducing substance

[0316] a1 Float

[0317] a2 is another floating amount.

[0318] S-shaped elastic support space

[0319] S1 Activity Space Detailed Implementation

[0320] The fluid bonding structure of the present invention will be further described below with reference to the accompanying drawings.

[0321] 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.

[0322] To fully understand the purpose, features, and effects of the present invention, the present invention will be described in detail below through specific embodiments and in conjunction with the accompanying drawings:

[0323] Please see Figures 1 to 6 As shown in the figure: The present invention is a top-blocking structure and a top-blocking method thereof. The top-blocking structure 1 includes a body 11, at least one top-blocking part 12, and an elastic component 13.

[0324] The top abutment 12 is movably disposed on the body 11.

[0325] The elastic component 13 is disposed between the body 11 and the top abutment 12, so that an elastic abutment space S is formed between the body 11 and the top abutment 12.

[0326] When the abutment structure 1 is applied, the elastic abutment space S is formed between the body 11 and the abutment top 12 through the cooperation of the body 11, the abutment top 12 and the elastic component 13. The abutment structure 1 can be connected to the object 10 with one end of the body 11, and the outer side of the body 11 is provided on the support 20. The abutment top 12 abuts against the object 30 at the other end of the body 11, so that the body 11 can move on the support 20. The abutment top 12 and the elastic component 13 serve as the abutment correction, movement, elastic correction, elastic movement, limit or elastic limit of the object 10. In this way, the abutment structure 1 can achieve the purpose of smoother movement and abutment limit.

[0327] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the object being pushed 30 may be a handle, track, slider, moving object, rod, rotating body, heat sink, wheeling body, track body, column, chip, buckle, handle body, flow channel, fluid block, fluid disturbance, heat sink, support body, elastic body, shell, printed circuit board, or telescopic structure; thus, the present invention can better meet the needs of practical applications.

[0328] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the surface of the body 11 (or the abutment 12) is provided with a friction-reducing substance a to reduce the friction of the body 11 (or the abutment 12) moving on the support 20. The friction-reducing substance a is an electroplated layer, Teflon, nylon, plastic, oil, sprayed substance, soaking substance, or soft substance; thus, the body 11 can be easily moved on the support 20.

[0329] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutting structure 1 or the body 11 is a wheel, track, column, buckle, handle, flow channel, fluid barrier, chip, fluid disturbance, heat sink, support, or elastic body, and the object 10 can be an electronic device, motherboard, server, storage device, data center, cabinet, rack, casing, heat sink, or heat-generating body; thus, the present invention can better meet the needs of practical applications.

[0330] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that one end of the body 11 is provided with a connecting part 111, and the body 11 or the connecting part 111 of the body 11 is used for welding, riveting, expanding, fastening, locking or integrally forming on the object 10; thus, the present invention can better meet the needs of practical application.

[0331] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that one end of the elastic component 13 abuts against the body 11, and the other end of the elastic component 13 abuts against the top 12; thus, the pushing of the elastic component 13 can be used to form an elastic abutting space S with a fixed distance between the body 11 and the top 12.

[0332] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the body 11 is provided with a limiting part 18, which restricts the movable combination of the top abutment 12 and the body 11; thus, the limiting part 18 can be used to limit the movable combination of the top abutment 12 with the body 11.

[0333] Please see Figures 7 to 12 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 present invention provides another abutment structure, which includes: a body 11, at least one abutment top 12, a wheel 14 and an elastic component 13. The abutment top 12 is movably disposed on the inner side of the body 11, the wheel 14 is movably disposed on the outer side of the body 11 (or the wheel 14 and the abutment top 12 are integrally formed), and the elastic component 13 is disposed between the body 11 and the abutment top 12, so that an elastic abutment space S is formed between the abutment top 12, the wheel 14 and the body 11 when in use.

[0334] When the abutment structure 1 is applied, the elastic abutment space S is formed between the abutment top 12, the wheel body 14, and the body 11 through the cooperation of the body 11, the abutment top 12, the wheel body 14, and the body 11. The abutment structure 1 can be connected to the object 10 with one end of the body 11, and the wheel body 14 on the outer side of the body 11 is placed on the support 20, so that the abutment top 12 abuts against the object 30, so that the wheel body 14 can move on the support 20. The elastic component 13 of the abutment top 12 serves as the abutment correction, movement, elastic correction, elastic movement, limit, or elastic limit of the object 10. In this way, the abutment structure 1 can achieve the purpose of smoother movement and abutment limitation.

[0335] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the surface of the wheel 14 is provided with a friction-reducing substance a to reduce the friction of the wheel 14 moving on the support 20. The friction-reducing substance a is an electroplating layer, Teflon, nylon, plastic, oil, spraying substance, soaking substance, or soft substance; thus, the wheel 14 can be easily moved on the support 20.

[0336] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that one end of the elastic component 13 abuts against the body 11, and the other end of the elastic component 13 abuts against the stop portion 15 connected to the abutting top 12; thus, by utilizing the cooperation between the stop portion 15 and the elastic component 13, a fixed-distance elastic abutting space S can be formed between the abutting top 12, the wheel 14 and the body 11.

[0337] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the top abutment 12 is provided with a connecting portion 16, which is connected to the body portion 11; thus, the connecting portion 16 can be used to securely connect the top abutment 12 to the body portion 11.

[0338] Please see Figure 13 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 body is provided with a stop portion 17, the stop portion stops between the wheel body 14 and the elastic component 13, and the joint portion 16 is limited to the stop portion 17; in this way, the stop portion 17 can be used to securely connect the wheel body 14 to the predetermined position of the body 11.

[0339] Please see Figure 14As 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 number of the abutment 12 is two (or more), and each abutment 12 is provided on both sides, both ends or different positions of the object 10, so as to use each abutment 12 to abut the object 30 being abutted.

[0340] Please see Figure 15 and Figure 16 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 top abutment 12 and the body 11 are provided with a limiting part 18 for combination, and the limiting part 18 restricts the top abutment 12 and the body 11 from moving together; in this way, the top abutment 12 can be moved and limited to the body 11, so that the top abutment 12 can be used as a wheel.

[0341] Please see Figures 17 to 20 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 top abutment 12 is located in a lateral position of the body 11, so that the top abutment 12 is located in a lateral position of the object 10.

[0342] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutting structure 1 and the object being abutted 30 are combined into a module. The abutting structure 1 or the module may be a handle, track, slider, moving object, rod, rotating body, heat sink, wheeling body, chip, track body, column, buckle body, handle body, flow channel, fluid blocker, fluid disturbance, heat sink, support body, wire bundle body, tube bundle body, fiber bundle body, wire, tube, fiber, elastic body, shell, printed circuit board, or telescopic structure; thus, the present invention can better meet the needs of practical applications.

[0343] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the object being pushed 30 is provided with at least one entry part 301, the entry part 301 is connected to a channel 302, the entry part 301 is used to lift the abutment 12, and in this embodiment, the entry part 301 is provided with an inclined surface 303 (or slope) to lift the abutment 12, and the abutment 12 is elastically pushed against or elastically engaged with the entry part 301; thus, the purpose of smoother movement and abutment limiting can be achieved through the abutment structure 1.

[0344] Please see Figure 21As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference is that the abutment 12 is used to abut against the heat sink 40, so that the heat sink 40 applies pressure to the heat-generating body 41 by the abutment force of the abutment 12, so that the heat sink 40 dissipates heat from the heat-generating body 41; thus, the present invention can better meet the needs of practical applications.

[0345] Please see Figure 22 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 abutting force of the abutting top 12 is used to press against a printed circuit board 42 (or the object 10), and the thickness of the printed circuit board 42 (or the object 10) may be uniform or inconsistent; in this way, the present invention can better meet the needs of practical applications.

[0346] Please see Figures 23 to 25 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 abutment 12 is used to fasten the fastened body 43 and the fluid blocking 44 (or to fasten the guiding or turbulent fluid). The fastened body 43 is used to fix the required pipe 431, flat cable, connector, or wire, while the fluid blocking 44 can be used to guide or block the fluid. In addition, the abutment 12 can also be used to fasten the spacer or to fasten the driving body, so that the spacer is used to separate the fluid, and the driving body is used to drive the fluid, and the fluid is gas, liquid, oil, or electric current (e.g., gas, liquid, oil, or electric current). Figure 23 and Figure 24 As shown), for example, the fluid may be the gas produced by fan 401 (such as...). Figure 24 (As shown). In addition, the abutment 12 can also be used to fasten the heat sink 40 and the heating element 41, so that the abutment structure 1, the heat sink 40 or the heating element 41 guide the heat source to the fluid, object, metal object or non-metal object; in this way, the present invention can better meet the needs of practical application.

[0347] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the fastened body 43 may be a fixing frame, a fluid block, a heat sink, a heat generator, a fluid guide, a fluid disruptor, a connector, a spacer, or a driving body, so that the fastened body 43 can fix a pipe, flat cable, connector, or wire, or guide, block, isolate, or drive fluid using the fastened body 43, or guide a heat source to a fluid, object, metal object, or non-metal object through the cooperation of the abutting structure 1 and the fastened body 42; thus, the present invention can better meet the needs of practical applications.

[0348] In addition to the embodiments described above, in one embodiment of the present invention, the difference lies in that the abutment 12 is used to engage a connector 45 having a flat cable 451, and the connector 45 mates with a connector 421 disposed on the printed circuit board 42 (e.g., Figure 24 (as shown); thus, the present invention can better meet the needs of practical applications.

[0349] Please see Figure 26 and Figure 27 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 abutting structure 1 is provided with an anti-rotation part 112. In this embodiment, the anti-rotation part 112 can be provided at the assembly part 111 of the body 11. The anti-rotation part 112 and the corresponding anti-rotation part 101 of the object 10 mutually prevent rotation, limit and restrict the direction of the object 10; thus, the present invention can better meet the needs of practical application.

[0350] Please see Figures 28 to 31 As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference is that the body 11 and the top abutment 12 are fixedly or movably connected by a combination part 113. For example, the combination part 113 is bolted to the body 11 and the top abutment 12, so that the body 11 and the top abutment 12 are fixedly or movably connected by bolting. In this way, the present invention can better meet the needs of practical application.

[0351] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the body 11 may be provided with a handle 114 (e.g., Figure 28 As shown, the handle portion 114 is used as the force-applying part of the body portion 11; thus, the present invention can better meet the needs of practical application.

[0352] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the top abutment 12 is provided with a handle portion 121 (e.g., Figure 29 and Figure 30 As shown, the handle portion 121 is used as the force-applying part of the abutment 12; thus, the present invention can better meet the needs of practical application.

[0353] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the top 12 (or the body 11) is provided with a handle 121 and a first buckle 122 (e.g., Figure 31As shown, the first buckle 122 is used as the force applied to the abutment 12, thereby enabling the first buckle 122 to perform the required fastening; thus, the present invention can better meet the needs of practical application.

[0354] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that an intermediary 19 (such as...) is provided between the body 11, the abutment 12 and the elastic component 13. Figures 29 to 31 As shown, the intermediate body 19 serves as a stop or block between the body 11, the top abutment 12, and the elastic component 13; thus, the present invention can better meet the needs of practical applications.

[0355] Please see Figures 32 to 35 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 abutment 12 can be configured as a heat sink as needed, so that the abutment 12 applies pressure or fastens pressure to the heat sink 41 for heat dissipation, or the heat sink 41 is a printed circuit board, IC, metal body, non-metal body or chip, so that the heat sink 41 is provided by the abutment 12 for heat dissipation; in this way, the present invention can better meet the needs of practical applications.

[0356] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 enters through the entry portion 410 of the heating element 41, so that the abutment 12 enters the channel 411 (or structure) of the heating element 41, so as to fasten (or set) the abutment 12 to the heating element 40, or so that the abutment 12 is disposed between the heating element 40 and the body 11; thus, the present invention can better meet the needs of practical application.

[0357] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the bottom of the abutment 12 is provided with a guide slope 123, so that the abutment 12 can move more smoothly in the entry part 410 and the channel 411.

[0358] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that a medium 412 is provided between the abutment 12 and the heating element 41. The medium 412 is a heat dissipation medium, heat dissipation paste, elastomer or sheet, so that the abutment 12 is firmly attached to the heating element 41 through the medium 412 to achieve a better heat dissipation effect.

[0359] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the body 11 and the heating element 41 respectively have corresponding perforations 115 and 413, so that the top abutment 12 is movably inserted through each perforation 115 and 413 and disposed between the heating element 40 and the body 11 (e.g., Figure 35 (As shown).

[0360] Please see Figures 36 to 38 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 body 11 is provided with a handle 114 (or the body 11 is a handle), so that the top 12 enters through the entry part 410 of the object 10 and engages with the channel 411, thereby performing the required engagement; thus, the present invention can better meet the needs of practical application.

[0361] Please see Figure 39 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 body 11 is a handle, and the body 11 is provided with two adjacent abutment tops 12, and each abutment top 12 is provided with an elastic component 13 between it and the body 11. The body 11 is assembled to the object 10 with the connecting parts 111 at both ends respectively cooperating with the fixing components 116. In this way, the present invention can better meet the needs of practical application.

[0362] Please see Figure 40 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 body 11 can be a heat sink, the body 11 (the heat sink) provides heat dissipation for the heat-generating element 41 disposed on the object 10, and the body 11 is provided with a flow channel 117 for fluid to pass through, the top abutment 12 abuts against the body 11, and the body 11 is provided with a buckle 118 for fastening to the object 10, the buckle 118 has an elastic component 119 for applying elastic force to the body 11 to press against the heat-generating element 41 for heat dissipation, the top abutment 12 can be a handle (e.g., a lever) and is provided with a first buckle 122, the first buckle 122 is disposed on the body 11 for applying force to the top abutment 12, and the top abutment 12 is used to rotate to lower the height.

[0363] When in use, the body 11 can be placed on the heating element 41, and the body 11 can be fixedly fastened to the object 10 by the buckle 118. Then, the top abutment 12 can be turned to reduce its height, and then the first buckle 122 can drive the body 11 to abut against the heating element 41, so that the fluid in the body 11 and its flow channel 117 can dissipate heat from the heating element 41.

[0364] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the object 10 may be a printed circuit board, a heat sink or a metal body, and the heating element 41 may be a chip or a conductor; thus, the present invention can better meet the needs of practical applications.

[0365] Please see Figure 41 As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference is that the body 11 of the abutment structure 1 is connected to the heat sink 40, the heat sink 40 provides heat dissipation for the heat-generating element 41, and the heat sink 40 is provided with a flow channel 414 for fluid to pass through. The abutment top 12 is a handle and abuts against the heat sink 40, and the abutment top 12 is provided with a first buckle 122, which is provided on the heat sink 40. The heat-generating element 41 is disposed on the heat sink 40. The object 10 is attached to the heat sink 41, which is provided with a fastener 415 for fastening the object 10. The fastener 415 has an elastic component 416 for applying elastic force to the heat sink 40 to press against the heat source 41 for heat dissipation. The top 12 can be rotated to lower its height, so that the first fastener 122 can drive the body 11 and the heat sink 40, so that the heat sink 40 abuts against the heat source 41, so that the heat source 41 is dissipated through the fluid in the heat sink 40 and its flow channel 414.

[0366] Please see Figure 42 and Figure 43 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 abutment 12 is used to fasten, assemble, clamp, snap or slide into the heat sink 40, or the abutment 12 is used to fasten, assemble, clamp, snap or slide into the track body 50; thus, the present invention can better meet the needs of practical application.

[0367] Please see Figures 44 to 47 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 abutting structure 1 has a resisting object 30, the resisting object 30 is provided with at least one entry part 301, the entry part 301 is used to allow the abutting object 12 to elastically abut or elastically engage with the entry part 301, the entry part 301 has a lifting part 304, or the entry part 301 has two lifting parts 304, and the entry part 301 is connected to the channel 302 to allow the abutting object 12 to move, the entry part 301 is used to lift the abutting object 12, wherein the entry part 301 can be an inclined surface, slope, step, cross section or arc surface to lift the abutting object 12; thus, the present invention can better meet the needs of practical application.

[0368] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutting structure 1 can be a component or module that can contract, extend, move, slide or slide laterally on the object being abutted 30; thus, the present invention can better meet the needs of practical applications.

[0369] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the abutting structure 1 can be a handle that can retract, extend, move, slide, or slide laterally on the object being abutted 30; thus, the present invention can better meet the needs of practical applications.

[0370] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the width of the channel 302 is greater than the neck 124 of the top abutment 12, or one end of the elastic component 13 abuts against the body 11 and the other end abuts against the stop portion 125 of the top abutment; thus, the present invention can better meet the needs of practical applications.

[0371] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the width of the lifting part 304 is smaller than that of the abutment top 12, and the abutment top 12 has an operating part 126 for operating the abutment top 12 to move or engage; thus, the present invention can better meet the needs of practical applications.

[0372] Please see Figure 48 and Figure 49 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 present invention further includes a second buckle 128, and the body 11 has a setting part 110 for allowing the second buckle 128 to be combined with the body 11 by reaching the setting position 1101 for the combination part 113; thus, the present invention can better meet the needs of practical application.

[0373] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 is again used to install or pass through the body 11, or the abutment 12 is used to control the second buckle 128, the combined part 113 is the first buckle, or the combined part 113 is the abutment used to abut the second buckle 128, or the abutment 12 is used to abut the second buckle 125, or the movement of the abutment 12 is used to control the movement or fastening of the second buckle 128; thus, the present invention can better meet the needs of practical application.

[0374] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the combined part 113 and the abutment top 12 are combined with another combined part 127, so that the other combined part 127 moves to control the movement or fastening of the second fastening part 128, and the abutment top 12 drives the other combined part 127 to move to control the movement or fastening of the second fastening part 128. The second fastening part 128 may be a sphere, a slope, a unidirectional slope, a cylinder, or a fastening body. The setting part 110 may be a perforation, a movement space or groove, a sloped part, a stepped part, an arc-shaped part, a right-angled part, or a non-right-angled part. In this way, the present invention can better meet the needs of practical applications.

[0375] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the combined part 113 can be combined with the body 11, and the combined part 113 and the abutment 12 can be combined with the other combined part 127, so that the combined part 113 moves to control the movement or fastening of the first buckle 122 (or the abutment 12 drives the combined part 113 to move to control the movement or fastening of the first buckle 122). The combined part 113 is used to pass through the body 11 first and then combine with the abutment 12 with the other combined part 127 (or the combined part 113 is used to pass through the body 11 and the elastic component 13 first and then combine with the abutment 12 with the other combined part 127). In this way, the present invention can better meet the needs of practical applications.

[0376] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 and the assembly part 113 are connected to each other (or the abutment is the assembly part), and the first buckle 122 is used to reach the setting position 1101 by free fall, or the first buckle 122 is used to reach the setting position 1101 with the assistance of a tool or a magnetic tool; thus, the present invention can better meet the needs of practical application.

[0377] Please see Figure 50 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 combined part 113 is the first fastening part, and the abutting top 12 is integrally formed with the combined part 113, and the combined part 113 abuts the second fastening part 128 with an inclined surface 1131; in this way, the movement of the abutting top 12 can be controlled by the combined part 113 to control the movement or fastening of the second fastening part 128, so that the present invention can better meet the needs of practical application.

[0378] Please see Figure 51As 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 body 11, the top abutment 12, and the elastic component 13 are integrally formed (or the body 11 and the top abutment 12 are integrally formed, or the body 11 and the elastic component 13 are integrally formed, or the top abutment 12 and the elastic component 13 are integrally formed), and the elastic component 13 is disposed between the body 11 and the top abutment 12, and the body 11 is locked to the object 10 by the connecting part 111, and the top abutment 12 is used to cooperate with the elastic component 13 to fasten and fix the required tube 431 (e.g., optical fiber); in this way, the present invention can better meet the needs of practical applications.

[0379] Please see Figure 52 and Figure 53 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 it also includes a second fastening part 128, wherein the second fastening part 128 can be a sphere, a slope, a unidirectional slope, a cylinder, or a fastening body, and the abutment top has a limiting part and an opening part 61, wherein the limiting part 60 and the opening part 61 can be an arc surface, a slope, a sphere, a groove, a hole, a plane, a concave part, or a convex part, respectively; the limiting part 60 and the opening part 61 are used to rotate and limit the limiting position of the second fastening part 128, or to limit the opening position of the second fastening part 128; in this way, the second fastening part 128 can be required to be limited or opened by the cooperation of the limiting part 60 and the opening part 61, so that the abutment top 12 of the present invention can better meet the needs of practical application.

[0380] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the elastic component 13 is a torsion spring (or torsional elastomer), and the two ends of the elastic component 13 are respectively limited to the body 11 and the abutment 12, so that the elastic component 13 can drive the abutment 12 to be normally in the position of restricting the second buckle 128, or to make the abutment 12 normally in the position of opening the second buckle 128; thus, the present invention can better meet the needs of practical application.

[0381] Please see Figure 54 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 body 11 and the top abutment 12 may each have a limiting part 62, which is used to limit the rotation angle of the top abutment 12; thus, the present invention can better meet the needs of practical application.

[0382] Please see Figure 55As 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 supporting structure 1 can be disposed on the heat sink 40 so as to provide heat dissipation for the heat sink 41 through the heat sink 40. In this embodiment, the heat sink 41 is disposed in two heat sinks 40 for heat dissipation, and the heat sink 41 has heat sinks 40 above and below it for heat dissipation. The supporting structure 1 is used to connect the two heat sinks 40 (or the supporting structure 1 is used to connect the heat sink 40 and the object 10). In this way, the present invention can better meet the needs of practical application.

[0383] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutting structure 1 can be a buckle or a handle, so that the abutting structure 1 can be used to lift or operate the heat sink 40, and the heat sink 41 can be a transistor, a power-conducting body, memory, CPU or GPU; thus, the present invention can better meet the needs of practical applications.

[0384] Please see Figure 56 and Figure 57 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 it also includes a second fastening part 128. The abutment top 12 abuts against the second fastening part 128. The body 11 has a setting part 110, a limiting part 18, and a lifting part 1110. The limiting part 18 restricts the abutment top 12. The abutment top 12 moves longitudinally so that the second fastening part 128 reaches the setting position 1101 of the setting part 110. The lifting part 1110 is used to abut against the rotated abutment top 12. In this way, the movement of the abutment top 12 can control the fastening or unfastening of the second fastening part 128 and the object 10, so that the present invention can better meet the needs of practical application.

[0385] Please see Figure 58 and Figure 59 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 body 11 is a handle, for example: a U-shaped handle (such as... Figure 58 (as shown) or T-shaped handle (such as) Figure 59 As shown), the body 11 is assembled to the object 10 by means of connecting parts 111 at both ends and fixing components 116, and the body 11 is provided with two adjacent abutment tops 12 (as shown). Figure 58 (as shown) or the body 11 is provided with a top 12 (as shown) Figure 59 (as shown); thus, the present invention can better meet the needs of practical applications.

[0386] Please see Figure 60 and Figure 61As 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 abutting structure 1 has a backing object 30, the backing object 30 is a handle, the backing object 30 is provided with at least one entry part 301, the entry part 301 is connected to a channel 302, the entry part 301 is used to lift the abutting top 12, and the entry part 301 is used to make the abutting top 12 elastically abut or elastically engage with the entry part 301; in this way, the present invention can better meet the needs of practical application.

[0387] Please see Figures 62 to 64 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 abutting structure 1 or the body 11 is provided on the object 10, the object 10 may be a housing or cabinet with wheels 100 or rails, the body 11 is provided with a handle 114 and a buckle 118, or the abutting top 12 is provided with a first buckle 122. The body 11 is moved by the handle 114 and cooperates with the abutting top 12 and the elastic component 13 to abut, so as to fasten and unfasten the buckle 118 or the first buckle 122 to the object 10; in this way, the present invention can better meet the needs of practical application.

[0388] Please see Figure 65 and Figure 66 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 it also includes a second buckle 128. The abutment top 12 abuts against the second buckle 128. The body 11, the abutment top 12 and the elastic component 13 are integrally formed. The body 11 is provided with a setting part 110 and a limiting part 18. The abutment top 12 moves longitudinally or rotatably to make the elastic component 13 elastically limited or elastically disengaged from the limiting part 18. The abutment top 12 drives the second buckle 128 to the setting position 1101 of the setting part. The abutment top 12 has an opening part 61. The opening part 61 is used to rotate and limit the limiting position of the second buckle 128, or to limit the opening position of the second buckle 128. The second buckle 128 can be required to be limited or opened by the cooperation of the opening part 61. In this way, the present invention can better meet the needs of practical application.

[0389] Please see Figures 67 to 69 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 body 11 is provided with a limiting part 18, and the limiting part 18 is riveted to the body 11 (e.g. Figure 67 As shown), splicing combination (such as) Figure 68(as shown), snap-fit ​​assembly, welding assembly, locking assembly, hot-melt assembly, or stamping assembly with tool 7 (such as...) Figure 69 As shown), the limiting part 18 restricts the movable combination of the top 12 and the body 11; thus, the top 12 can be movablely limited to the body 11 to meet the usage requirements of the top 12.

[0390] Please see Figure 70 and Figure 71 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 one end of the body 11 is provided with a connecting part 111, the connecting part 111 includes a fastening body 1111 and a spring-loaded fastener 1112, the body 11 is combined with the fastening body 1111 and the spring-loaded fastener 1112 to the object 10, and the fastening body 1111 can also be in the form of a spring-loaded fastener; in this way, the present invention can better meet the needs of practical application.

[0391] Please see Figure 72 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 abutting structure 1 is connected to two heat sinks 40, and a heating element 41 is provided between the two heat sinks 40. The abutting force of the abutting top 12 applies pressure to the two heat sinks 40 on the heating element 41, so that the heat sinks 40 dissipate heat from the heating element 41. In this way, the present invention can better meet the needs of practical applications.

[0392] Please see Figure 73 and Figure 74 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 it also includes a first buckle 122 and a second buckle 128. The body 11 has a setting part 110 for allowing the second buckle 128 to pass through to the setting position 1101. The abutment 12 combines the first buckle 122 with the combination part 113 so that the movement of the abutment 12 is used to control the movement or fastening of the second buckle 128.

[0393] Please see Figure 75 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 abutting structure 1 is disposed or integrally formed on the heat sink 40, and the abutting top 12 is fastened or assembled on the fastening part 102 of the object 10 (circuit board or another heat sink) so that the heat sink 40 can supply heat to the heat-generating element 41 for heat dissipation.

[0394] Please see Figures 76 to 80As 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 abutment top 12 is provided on the fastener 8, and the abutment top 12 is used to fasten to the object 10, so that the fastening part 81 of the fastener 8 is fastened to or limited to the fastening part 102 of the object 10, so as to prevent the fastener 8 from detaching from the object 10; thus, the present invention can better meet the needs of practical application.

[0395] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the fastening part 81 may be a threaded body (such as...). Figure 80 Part a), outer buckle (such as part a), outer buckle body ... Figure 80 Part b), inner buckle (such as Figure 80 Part c), the snap fastener (such as Figure 80 (d part) or column (such as Figure 80 (e part); thus, the present invention can better meet the needs of practical applications.

[0396] Please see Figure 81 and Figure 84 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 it also includes a first buckle 122 and a second buckle 128. The first buckle 122 abuts against the second buckle 128. The body 11 is provided with a rotating part 1113, and the abutting top 12 is provided with a corresponding rotating part 129. Rotating the abutting top 12 causes the rotating part 1113 to cooperate with the corresponding rotating part 129, so that the first buckle 122 controls the movement of the second buckle 128 in a spiral manner. In this way, the present invention can better meet the needs of practical applications.

[0397] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 of the body 11 is integrally formed with the elastic component 13, and the elastic component 13 can be elastically deformed to engage with the limiting portion 18 of the body 11, so as to limit the abutment 12 or prevent the corresponding rotating portion 129 of the abutment 12 from disengaging or loosening from the rotating portion 1113; thus, the present invention can better meet the needs of practical application.

[0398] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the second buckle 128 enters (or reaches) the setting position 1101 (or the buckling position) and abuts against the second buckle 128 with the abutment top 12, or the second buckle 128 is switched on and off with the abutment top 12; thus, the abutment top 12 and the second buckle 128 of the present invention can better meet the needs of practical application.

[0399] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the second buckle 128 is first set at the setting position 1101, and then the elastic component 13 (or the abutment 12) is installed on the body 11 and abuts against the abutment 12, or the elastic component 13 is installed on the body 11 and abuts against the body 11 and the abutment 13, so that the abutment 12 can achieve the effects of automatic reset, elastic fastening or positioning after actuation through the cooperation of the elastic component 13.

[0400] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment top 12 has a guide portion 1211 for guiding the movement of the second buckle portion 128, and the guide portion 1211 may be an inclined surface, curved surface, arc surface, step portion, concave portion, convex portion or plane, and the abutment top 12 has a limiting portion 60 for limiting the position of the second buckle portion 128 or its moved position; thus, the abutment top 12 and the second buckle portion 128 of the present invention can better meet the needs of practical application.

[0401] Please see Figure 85 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 abutment 12 may be a threaded body (such as...). Figure 83 Part a), column (such as Figure 83 Part b), outer buckle (such as Figure 83 (part c), inner buckle or spring buckle; thus, the top 12 of the present invention can better meet the needs of practical application.

[0402] Please see Figure 86 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 body 11 is provided with a handle 114, the object to be pushed 30 is provided with at least one entry part 301, the entry part 301 is connected to a channel 302, the entry part 301 is used to lift the top 12, and the top 12 is elastically pushed against or elastically engaged with the entry part 301; thus, the present invention can better meet the needs of practical application.

[0403] Please see Figure 87As 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 body 11 is provided with a handle 114, the body 11 is disposed on the object 10, the top abutment 12 is provided with a guide 1211, the guide 1141 and the handle 114 are assembled with a combination 113, wherein the combination 113 is a through-body, a riveting body or an expansion body, and one end of the elastic component 13 abuts against the body 11 and the other end abuts against the top abutment 12. The guide 1211 is used to guide the handle 114 (or the object 10) to approach, enter, set or assemble on another object 70; thus, the present invention can better meet the needs of practical application.

[0404] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that there is a floating amount a1 between the guide part 1211 and the handle part 114, or another floating amount a2 between the handle part 114 and the other object 70; the floating amount a1 and the other floating amount a2 are used as adjustments when guiding the handle part 114 (or the object 10) to approach, enter, set or assemble with the other object 70.

[0405] Please see Figure 88 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 body 11 is provided with a handle 114 (or a pulling part) and a buckle 118, the elastic component 13 is provided on the body 11 (or the body 11 is an elastic component), and the buckle 118 is fastened to the object 10 and another object 70, so as to elastically release the buckle and allow the object 10 to move through the wheel 100. The object 10 can be a housing, and the other object 70 can be a frame or cabinet. In this way, the present invention can better meet the needs of practical application.

[0406] Please see Figures 89 to 91 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 body 11 is provided with an anti-rotation part 112, or the top abutment 12 is provided with a corresponding anti-rotation part 1212. The anti-rotation part 112 and the corresponding anti-rotation part 1212 are used to prevent rotation between the body 11 and the top abutment 12, or the anti-rotation part 112 and the corresponding anti-rotation part 1212 are used to prevent rotation with the object 10.

[0407] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the top abutment 12 is provided with a handle 121, the body 11 is combined with the top abutment 12 by the combined part 113, and the two ends of the elastic component 13 abut against the body 11 and the combined part 113 respectively, and the body 11 is provided with an active space S1 for the combined part 113 to move; thereby pressing the handle 121 to move the top abutment 12 for abutment.

[0408] Please see Figures 92 to 97 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 body 11 is provided with a handle 114 and a second buckle 128, the body 11 is disposed on the object 10, and the second buckle 128 is fastened to the fastened part 701 of another object 70 (e.g., Figure 92 As shown), or the top abutment 12 and the second fastening part 128 are respectively fastened to the fastened part 701 of the other object 70 (as shown). Figure 93 (As shown in Figure 96); thus, the present invention can better meet the needs of practical applications.

[0409] In addition to the embodiments described above, in one embodiment of the present invention, the difference lies in that the second buckle portion 128 may be an outer buckle body (such as...). Figure 97 Part a), threaded body (such as Figure 97 Part b), column (such as Figure 97 Part c), the snap fastener (such as Figure 97 (part d), inner buckle (such as) Figure 97 part e), inclined plane (such as Figure 97 (f part) or curved surface; in this way, the second buckle 128 can better meet the needs of actual application.

[0410] Please see Figure 98 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 body 11 is provided with a setting part 110 for assembling the second buckle 128. The setting part 110 has an anti-rotation part 112 (or a limiting part) to prevent rotation (or limit) when the handle part 114 is deformed by the stamping force of the mold 71, so that the setting part 110 is kept in the correct position or direction for assembling the second buckle 128, so as to maintain the stability of the second buckle 128 during use; in this way, the present invention can better meet the needs of practical application.

[0411] Please see Figure 99As 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 handle portion 114 is injection molded in mold 71, and the setting portion 110 for assembling the second buckle portion 128 is formed in mold 71 or module, and the mold 71 can be injection molded in plastic or metal as needed; thus, the present invention can better meet the needs of practical application.

[0412] Please see Figure 100 and Figure 101 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 body 11 is provided with at least one second buckle 128, and the body 11 is laterally connected to the object 10 with the second buckle 128; in this way, the present invention can better meet the needs of practical application.

[0413] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the body 11 is provided with a setting part 110 for allowing the second buckle 128 to enter (or reach) the setting position 1101 (or the fastening position), or the setting part 110 is located on the side, above or below the body 11, or the second buckle 128 is first inserted into the body 11 from the setting part 110, and then the elastic component 13 is installed on the abutment top 12 on the body 11, and the other combination part 127 is fastened to the first buckle 122 and the abutment top 12; thus, the present invention can better meet the needs of practical application.

[0414] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the number of the second buckle 128 is one, two or more; thus, the present invention can better meet the needs of practical applications.

[0415] Please see Figure 102 and Figure 103As 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 body 11 is used to be assembled or integrally formed with the object 10, the top abutment 12 is provided with a first buckle 122, the top abutment 12 is used to be assembled or bolted to the body 11 with the other assembly part 127 to form an assembly body, connecting body or connecting rod body, or the elastic component 13 abuts against the body 11 and the top abutment 12, or the object 10 is fastened to another object 70 with the first buckle 122, or the object 10 is provided with a wheel 100, a rolling body, a track body or a sliding body, which can open or close the first buckle 122 to move the object 10 by the wheel 100, the rolling body, the track body or the sliding body, or to detach from the other object 70; thus, the present invention can better meet the needs of practical application.

[0416] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 is provided with an entry portion 301 so that the second fastening portion 128 fastens the abutment 12 to the object 10, or the entry portion 301 has a channel 302 for limiting, temporarily limiting or elastically limiting the first fastening portion 122 in the fastening position or the unfastening position of the second fastening portion 128 having the elastic component 13, or for moving the first fastening portion 122 to the fastening position or the unfastening position; thus, the present invention can better meet the needs of practical applications.

[0417] Please see Figure 104 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 body 11 is provided with an anti-rotation part 112 to prevent rotation with the object 10, and the top abutment 12 is provided with another anti-rotation part 1213 to prevent rotation with the body 11. The other anti-rotation part 1213 is used to limit the position or movement of the top abutment 12, or the other anti-rotation part 1213 is used to limit the fastening direction, fastening angle or fastening position of the second fastening part 128; in this way, the present invention can better meet the needs of practical application.

[0418] Please see Figure 105As 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 body 11 is assembled with the top abutment 12 and the object 10 by the assembly part 111. The top abutment 12 is a fastener. The object 10 is disposed on the other object 70. The object 10 and the other object 70 are a housing or cabinet. The top abutment 12 is fastened to the other object 70. The body 11 can be actuated, rotated, or pulled to disengage the top abutment 12 from the other object 70, or to allow the object 10 with wheels 100 (or tracks) to partially, completely, or be fastened to the other object 70 by the rolling of the wheels 100 (or the sliding of the tracks). In this way, the present invention can better meet the needs of practical applications.

[0419] Please see Figure 106 and Figure 107 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 body 11 is provided with a setting part 110 for assembling the second buckle 128. The setting part 110 is used to allow the second buckle 128 to reach the setting position 1101, and the setting position 1101 is in a relative position to the setting part 110 or a position that can be reached by free fall, and then be limited by the top 12; in this way, the present invention can better meet the needs of practical application.

[0420] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the elastic component 13 is a torsion spring, with its two ends respectively disposed on the body 11 and the abutment 12, so that the abutment 12 can be elastically rotated to abut against the second buckle 128, so that the second buckle 128 is in a buckled position or a non-buckled position. The body 11 (or the abutment 12) may be provided with a limiting part 18 to limit the abutment 12 to be in the buckled position or a non-buckled position of the second buckle 128. In this way, the present invention can better meet the needs of practical application.

[0421] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the second buckle 128 can also be reached to the setting position 1101 by means of the setting part 110, and then limited by the abutment top 12; thus, the present invention can better meet the needs of practical application.

[0422] Please see Figures 108 to 110As 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 number of the abutment 12 and the elastic component 13 is two, each abutment 12 is used to fasten two fastened objects 80, and the body 11 is provided with a shoulder 1102, a connecting part 111 and an anti-rotation part 112. The shoulder 1102 is used to support at least one fastened object 80, the connecting part 111 is used to connect with the object 10, and the anti-rotation part 112 corresponds to the anti-rotation part 101 of the object 10 to prevent rotation, so that the anti-rotation part 112 is used to limit the direction of the body 11, the fastening direction of each abutment 12, or the direction of the body 11, each abutment 12 and the object 10; in this way, the present invention can better meet the needs of practical application.

[0423] Please see Figures 111 to 114 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 body 11 is provided with a setting part 110, and the other object 70 (or the object 10) enters the body 11 through the setting part 110 and is fastened, interfered with, locked or conductive by the abutment top 12; thus, the present invention can better meet the needs of practical application.

[0424] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the other object 70 (or the object 10) can be a fastened body, a conductor, a circuit, a fastener, an optical fiber, a metal body, a plastic body, a column, or a plate, so that the top abutment 12 is fastened to the fastened part 701 of the other object 70 (or the object 10) to conduct electricity; thus, the present invention can better meet the needs of practical applications.

[0425] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the abutment 12 can be a buckle, a column, a threaded body, a protrusion, a concave body, or a planar body, and the two ends of the elastic component 13 abut against the body 11 and the abutment 12 respectively. In addition, the setting part 110 can be a hole, a groove, a channel, or a space; thus, the present invention can better meet the needs of practical applications.

[0426] In addition to the embodiments described above, in one embodiment of the present invention, the difference is that the fan 401 (power supply or heat sink) can be combined with the other object 70 via the abutment structure 1, and the abutment structure 1 can be used for fastening or electrical conduction (e.g., Figure 114 (as shown); thus, the present invention can better meet the needs of practical applications.

[0427] Please see Figures 115 to 117As 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 body 11 is provided with a limiting part 18, the limiting part 18 is used to limit the abutment top 12 and the elastic component 13, and the body 11 is provided with threads 1103 for fixing to the object 10 (or the other object 70), and the abutment top 12 is laterally connected to the body 11 and used to laterally abut or fasten to the other object 70 (or the object 10, such as...). Figure 115 (as shown); thus, the present invention can better meet the needs of practical applications.

[0428] In addition to the embodiments described above, one embodiment of the present invention differs from the embodiments described above in that, as follows: Figure 116 As shown, the thread 1103 of the body 11 first passes through the object 10 and then is fixed to the other object 70, and the top abutment 12 is laterally abutted or fastened to the object 10 or the fastened part 103 of the object 10; in this way, the present invention can better meet the needs of practical application.

[0429] In addition to the embodiments described above, one embodiment of the present invention differs from the embodiments described above in that, as follows: Figure 117 As shown, the thread 1103 of the body 11 first passes through the object 10 and then locks into the other object 70, and the abutment 12 abuts or fastens to the other object 70 or the fastened part 701 of the other object 70, and the abutment 12 is used to laterally interfere with the nut 72 (thread or the object 10) to prevent loosening or fastening; in this way, the present invention can better meet the needs of practical application.

[0430] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the body 11 is provided with an operating part 1104 and a head 1105, and a rotational external force can be applied to the operating part 1104 or the head 1105 during use, so that the threads 1103 of the body 11 cause the object 10, the other object 70 or the nut 72 to be screwed; thus, the present invention can better meet the needs of practical application.

[0431] Please see Figures 118 to 121 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 assembly portion 111 of the body 11 is used for locking (e.g. Figure 118 As shown), riveting (as shown) Figure 119 As shown), expansion (such as) Figure 120 As shown), welding (as shown) Figure 121(as shown) or fastened to the object 10; in this way, the body 11 of the abutting structure 1 can be firmly connected to the object 10, so that the present invention can better meet the needs of practical application.

[0432] Please see Figures 122 to 123 As shown in the figure: In addition to the above embodiments, in one embodiment of the present invention, the difference is that the abutment 12 can be a handle (e.g., a lever), the elastic component 13 is disposed between the body 11 and the abutment 12, and the elastic component 13 is located on the outside of the body 11 (e.g., Figure 122 (as shown), or so that the elastic component 13 is located inside the body 11 (as shown). Figure 123 (As shown).

[0433] When in use, the body 11 can be placed on the object 10, and the top abutment 12 can be turned to reduce its height, thereby driving the second buckle 128 to fasten or unfasten.

[0434] Please see Figure 124 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 abutment 12 can be in the form of a lever, the body 11 can be in the form of a handle, and the abutment 12 is combined with the first buckle 122 by the other assembly part 127, so as to control the first buckle 122 to engage or disengage with the other object 70 by levering the abutment 12; in this way, the abutment 12 can drive the first buckle 122 to be firmly engaged with or quickly disengaged from the other object 70, so that the present invention can better meet the needs of practical application.

[0435] Please see Figure 125 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 abutment 12 is pressed by the tool 7 (or the mold 71) to expand the abutment 12 and connect it to the body 11; in this way, the abutment 12 can be stably and movably disposed on the body 11, so that the present invention can better meet the needs of practical application.

[0436] In addition to the above embodiments, in one embodiment of the present invention, the difference is that the abutment 12 is provided with a groove 120 (recess or hole) for the tool 7 (or the mold 71) to apply pressure to the groove 120 (recess or hole), thereby expanding the abutment 12 and connecting it to the body 11; thus, the abutment 12 can be stably and movably disposed on the body 11, so that the present invention can better meet the needs of practical application.

[0437] Please see Figure 126 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 abutment 12 is fastened to the heating element 41 (e.g., a chip or a conductor), or the abutment 12 is fastened to the heat sink 40, so that the heat sink 40 dissipates heat from the heating element 41; in this way, the abutment 12 can securely fasten the heating element 41 or the heat sink 40, so that the present invention can better meet the needs of practical applications.

[0438] Please see Figure 127 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 body 11 may be a handle (or may be a buckle, track, heat sink, moving body, wheel, rotating body or rolling body), and after the body 11 is disposed or assembled on the object 10, the abutment 12 is located on the other side of the object 10; in this way, the abutment 12 can be used to fasten to the other object 70, so that the present invention can better meet the needs of practical application.

[0439] In summary, the abutting structure of the present invention can achieve smoother movement and abutting limit through the abutting structure.

[0440] 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 type of abutment structure, characterized in that, The abutment structure includes: Body; and At least one abutment is located at the top, and its movement is located in the body.

2. The abutment structure according to claim 1, characterized in that, It also includes a second buckle, the abutment top abutting against the second buckle, or the body has a setting part, a limiting part or a lifting part, or the limiting part restricts the abutment top, or the abutment top moves longitudinally to allow the second buckle to reach the setting position of the setting part, or the lifting part is used to abut against the rotated abutment top.

3. The abutment structure according to claim 1, characterized in that, The body is a handle, or the body is assembled to an object with fixing components at both ends, or the body has two adjacent abutments or one abutment, or the abutment structure has a supported object, or the supported object is a handle, or the supported object has at least one entry part, or the entry part is connected to a channel, or the entry part is used to lift the abutment, or the entry part is used to allow the abutment to elastically abut or elastically engage with the entry part, or the abutment structure or the body is located on an object, or the object is a housing or cabinet, or the body has a handle or a fastener, or the abutment has a first fastener, or the body is moved by the handle and engages with the abutment or the elastic component, or it serves as the fastener or the first fastener to engage and disengage with the object.

4. The abutment structure according to claim 1, characterized in that, It also includes a second buckle or elastic component, or the abutment abuts against the second buckle, or the body, the abutment and the elastic component are integrally formed, or the body is provided with a setting part or a limiting part, or the abutment moves longitudinally or rotatably to make the elastic component elastically limited or elastically disengaged from the limiting part, or the abutment drives the second buckle to the setting position of the setting part, or the abutment has an open part, or the open part is used to rotate and limit the limiting position of the second buckle, or to limit the open position of the second buckle, or the second buckle can be allowed to perform the required position restriction or position opening through the cooperation of the open part.

5. The abutment structure according to claim 1, characterized in that, The body is provided with a limiting part, or the limiting part is riveted, threaded, fastened, welded, locked, heat-fused, or punched with a tool to combine with the body, or the limiting part restricts the movement of the abutment and the body, or one end of the body is provided with a connecting part, or the connecting part includes a fastening body or a spring-loaded fastener, or the body is combined with the fastening body or the spring-loaded fastener to the object.

6. The abutment structure according to claim 1, characterized in that, The abutting structure connects two heat sinks, or a heating element is provided between the two heat sinks, or the abutting force of the abutting top applies pressure to the two heat sinks on the heating element, or the heat sinks dissipate heat from the heating element, or the abutting structure is set or integrally formed on the heat sink, or the abutting top is fastened or assembled on an object, circuit board or another heat sink, or the heat sink provides heat dissipation to the heating element.

7. The abutment structure according to claim 1, characterized in that, It may also include a first buckle or a second buckle, or the body may have a setting part for allowing the second buckle to pass through to a setting position, or the abutment may combine the first buckle with a combining part, or the abutment may move to control the movement or fastening of the second buckle, or it may also include a first buckle or a second buckle, or the first buckle may abut the second buckle, or the body may have a rotating part, or the abutment may have a corresponding rotating part, or the abutment may be rotated to make the rotating part cooperate with the corresponding rotating part, or the first buckle may control the movement of the second buckle in a spiral manner.

8. The abutment structure according to claim 1, characterized in that, The abutment is provided on the fastener, or the abutment is used to fasten to an object, or to make the fastening part of the fastener fasten or limit it to the fastening part of the object, or to prevent the fastener from detaching from the object, or the fastening part is a threaded body, an external fastening body, an internal fastening body, a spring fastening body or a column.

9. The abutment structure according to claim 1, characterized in that, The body and the abutment are integrally formed with the elastic component, or the elastic component can be elastically deformed to snap into the limiting part of the body, or limit the abutment, or prevent the corresponding rotating part of the abutment from disengaging or loosening from the rotating part, or the abutment is a threaded body, a column, an outer snap body, an inner snap body, or a spring snap body.

10. The abutment structure according to claim 1, characterized in that, The body may have a handle, or the body may be located on an object, or the top may have a guide, or the guide may be used to guide the handle or the object to approach, enter, set, or assemble onto another object, or there may be a floating amount between the guide and the handle, or there may be another floating amount between the handle and the other object, or the guide and the handle may be assembled by a combination, or the combination may be a through-body, riveting body, or expansion body, or one end of an elastic component may abut against the body and the other end may abut against the top, or the body may have a handle, a pulling part, or a buckle, or the elastic component may be located on the body, or the body may be an elastic component, or the buckle may be fastened to the object and another object, or used to elastically release the buckle to allow the object to move via wheels, or the object may be a housing, or the other object may be a frame or cabinet.

11. The abutment structure according to claim 1, characterized in that, The body is provided with an anti-rotation part, or the top abutment is provided with a corresponding anti-rotation part, or the anti-rotation part and the corresponding anti-rotation part are used to prevent rotation between the body and the top abutment, or the anti-rotation part or the corresponding anti-rotation part is used to prevent rotation with the object.

12. The abutment structure according to claim 1, characterized in that, The body is provided with a handle or a second buckle, or the body is provided on an object, or the second buckle is fastened to another object, or the second buckle is an outer buckle body, a threaded body, a column, a spring buckle body, an inner buckle body, an inclined body, or a curved body, or the body is provided with a setting part for setting the second buckle, or the setting part has an anti-rotation part or a limiting part, or is used to prevent rotation or limit the deformation of the handle when the handle is deformed by stamping, or the setting part is kept in the correct position or direction for assembling the second buckle, or the handle is injection molded in a mold, or the setting part for assembling the second buckle is formed by a mold or module, or the mold is injection molded in a plastic or metal mold.

13. The abutment structure according to claim 1, characterized in that, The body is provided with at least one second fastening part, or the body is fastened to an object by the second fastening part, or the body is provided with a setting part for allowing the second fastening part to enter or reach the setting position or fastening position, or the setting part is located on the side, above or below the body, or the second fastening part is first entered into the body from the setting part, or the second fastening part enters the setting position or fastening position and is used by the abutment top to abut against the second fastening part, or the abutment top is used to open or close the second fastening part, or then an elastic component is installed on the body to abut against the abutment top, or an elastic component is installed on the body to abut against the body and the abutment top, or the abutment top has a guide part for guiding the movement of the second fastening part, or the guide part is an inclined surface, curved surface, arc surface, step, concave part, convex part or plane, or the abutment top has a limiting part for limiting the position of the second fastening part or the position after movement, or the number of the second fastening parts is one, two or more.

14. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part for allowing the second buckle to enter or reach the setting position or the fastening position, or the setting part is located on the side, above or below the body, or the second buckle is first entered into the body from the setting part, or the second buckle enters the setting position or the fastening position and is used by the abutment to abut against the second buckle, or the abutment is used to open or close the second buckle, or then an elastic component is installed on the body to abut against the abutment, or an elastic component is installed on the body to abut against the body and the abutment, or the abutment has a guide part for guiding the movement of the second buckle, or the guide part is an inclined surface, curved surface, arc surface, step, concave part, convex part or plane, or the abutment has a limiting part for limiting the position of the second buckle or the position after movement.

15. The abutment structure according to claim 1, characterized in that, The body has a designated position for mounting a second fastener, or the designated position may be located on the side, top, or bottom of the body. Alternatively, the second fastener may be positioned in the designated or engaged position and used by the abutment to abut against the second fastener, or the abutment may be used to open or close the second fastener. Alternatively, the second fastener may be first positioned in the designated position, and then the abutment or elastic component may be installed on the body to abut against the abutment. Or, an elastic component may be installed on the body to abut against both the body and the abutment. The abutment top may have a guide portion for guiding the movement of the second buckle portion, or the guide portion may be an inclined surface, curved surface, arc surface, step portion, concave portion, convex portion or plane, or the abutment top may have a limiting portion for limiting the position of the second buckle portion or its position after movement, or the body may have a setting portion for allowing the second buckle portion to pass through to reach the setting position, or the body may have a setting portion for allowing the second buckle portion to pass through to reach the setting position, and then the abutment top or an elastic component may be installed on the body to abut against the abutment top.

16. The abutment structure according to claim 1, characterized in that, The body is used to be assembled or integrally formed into an object, or the top abutment is provided with a first fastening part, or the top abutment is used to be assembled or bolted to the body, or to form an assembly, connector or linkage, or an elastic component abuts against the body and the top abutment, or the object is fastened to another object by the first fastening part, or the object is provided with a wheel, rolling body, track or sliding body, which can open or close the first fastening part, or to move the object by the wheel, rolling body, track or sliding body, or to detach from the other object, or the top abutment is provided with an entry part, or to allow a second fastening part to fasten the top abutment to the object, or the entry part has a channel, or to allow the second fastening part with an elastic component to limit, temporarily limit or elastically limit the first fastening part in the fastening position or the unfastening position, or to allow the first fastening part to move to the fastening position or the unfastening position.

17. The abutment structure according to claim 1, characterized in that, The body is provided with an anti-rotation part to prevent rotation with the object, or the top is provided with another anti-rotation part to prevent rotation with the body, or the other anti-rotation part is used to limit the position or movement of the top, or the other anti-rotation part is used to limit the fastening direction, fastening angle or fastening position of the second buckle.

18. The abutment structure according to claim 1, characterized in that, The body is assembled with the abutment and the object, or the abutment is a fastener, or the object is disposed on another object, or the object and the other object are a housing or cabinet, or the abutment is fastened to the other object, or the body is actuated, rotated or pulled, or used to disengage the abutment from the other object, or used to allow an object with wheels or tracks to partially, completely, or fasten to the other object by the rolling of the wheels or the sliding of the tracks.

19. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part, or the body is provided with a setting position, or the setting part is used to allow the second buckle to pass through and reach the setting position, or the setting position is opposite to the setting part or a position that can be reached by free fall.

20. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part and a setting position, and the second buckle part reaches the setting position through the setting part.

21. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part and a setting position. The second buckle reaches the setting position through the setting part and is provided with a top abutment on the body to abut against the second buckle.

22. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part and a setting position. The second buckle reaches the setting position through the setting part, or the second buckle reaches the setting position by free fall through the setting part, or the second buckle is used as a tool to reach the setting position through the setting part, or the second buckle is used as the top stop after reaching the setting position, or the second buckle is used as the top stop after reaching the setting position, or the second buckle reaches the setting position through the setting part and then the top stop is installed on the body or an elastic component is installed to abut against the top stop.

23. The abutment structure according to claim 1, characterized in that, The elastic component is a torsion spring, or its two ends are respectively provided on the body and the abutment, or it is used to make the abutment rotate elastically to abut against the second buckle, or to make the second buckle be in a buckling position or a non-buckled position, or the body or the abutment is provided with a limiting part, or it is used to limit the abutment to be in a buckling position or a non-buckled position at the second buckle.

24. The abutment structure according to claim 1, characterized in that, The number of abutments and elastic components is two, or each abutment is used to fasten two objects, or the body has a shoulder, or the shoulder is used to support at least one object, or the body has a connecting part, or the connecting part is used to connect with an object, or the body has an anti-rotation part, or the anti-rotation part is used to limit the direction of the body, or the anti-rotation part is used to limit the fastening direction of each abutment, or the anti-rotation part is used to limit the direction of the body, each abutment, and the object.

25. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part, or an object enters the body through the setting part and is fastened, interfered with, locked, or conductive by the abutment top, or the object is a fastened body, a conductive body, a line, a fastener, an optical fiber, a metal body, a plastic body, a column, or a plate, or the abutment top is a fastening part, a column, a threaded body, a protrusion, a concave body, or a planar body, or the two ends of the elastic component abut against the body and the abutment top respectively, or the setting part is a hole, a groove, a channel, or a space.

26. The abutment structure according to claim 1, characterized in that, The body is provided with a limiting part, or the limiting part is used to limit the abutment and the elastic component, or the body is provided with threads for fixing to an object, or passes through the object and then is fixed to another object, or the abutment is laterally assembled to the body and used to laterally abut or fasten to the object, or the abutment is used to laterally abut or fasten to the fastened part of the object, or the abutment passes through the object and then laterally abuts or fastens to the other object, or the body passes through the object and then is used to lock into the other object, or the abutment abuts or fastens to the other object or the fastened part of the other object, or the abutment is used to laterally interfere with the nut, threads or the object to prevent loosening or fastening, or the body is provided with a connecting part, or the connecting part is used to rivet, expand, weld, fasten or lock to the object, or the body is provided with an operating part, or the body is provided with a head.

27. The abutment structure according to claim 1, characterized in that, It also includes an elastic component, or a component disposed between the body and the abutment and located on the outside of the body, or wherein the abutment is a lever, or the body is a handle, or the abutment is combined with the first buckle by another assembly, or is used to lever the abutment to control the first buckle to engage or disengage with another object.

28. The abutment structure according to claim 1, characterized in that, The abutment is pressed by a tool or mold, or the abutment is enlarged and assembled to the body, or the abutment is provided with a groove, recess or hole, or is pressed by a tool or mold to the groove, recess or hole, so that the abutment is enlarged and assembled to the body.

29. The abutment structure according to claim 1, characterized in that, The abutment top is fastened to a heating element or a heat sink, or the heat sink dissipates heat from the heating element, or the body is a handle, a buckle, a track, a heat sink, a moving body, a wheel, a rotating body, or a rolling body, the body is disposed or assembled on the object, or the abutment top is located on the other side of the object, so that the abutment top can fasten to another object.