Stop structure and method of stopping
By designing a support structure that includes a body, a top support, and elastic components, the problem of supporting objects during assembly or limitation is solved, enabling smooth movement and top support limitation of objects, and improving the efficiency and reliability of the assembly process.
Patent Information
- Application Number
- CN202510777608.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-12-06
- Filing Date
- 2025-06-11
- Publication Date
- 2026-06-09
Smart Images

Figure CN122170140A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a top-stopping structure, and more particularly to a top-stopping structure and method thereof that can abut against the top and drive the buckle to achieve the effect of top-stopping and limiting. Background Technology
[0002] When objects are assembled or limited, the lack of a corresponding support structure makes it impossible for the objects to be successfully supported and limited. Summary of the Invention
[0003] In view of the above-mentioned prior art, the inventors have developed a blocking structure in order to achieve the purpose of blocking and limiting.
[0004] The abutting structure and abutting method of the present invention can achieve smoother movement and abutting limit through the abutting structure.
[0005] To achieve the above and other objectives, the present invention provides a support structure comprising: a body, at least one support top, and a fastening part. The support top is movably disposed on the body; the support top abuts against the fastening part, or the support top is used to control or drive the movement or fastening of the fastening part.
[0006] In the aforementioned abutting structure, the body is attached to the object, and the abutting top is used to abut against a target object, so that the object can be abutted, moved, elastically abutted, elastically moved, limited, or elastically limited.
[0007] In the aforementioned abutting structure, one end of the elastic component abuts against the body, and the other end of the elastic component abuts against a stop portion joined to the abutting top.
[0008] In the aforementioned supporting structure, 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.
[0009] In the aforementioned abutment structure, the abutment top is provided with a joint, which is assembled with the body.
[0010] In the above-mentioned abutting structure, the number of abutting tops is two or more, and each abutting top is located on both sides, both ends or different positions of the object to abut against the object being abutted.
[0011] In the aforementioned abutment structure, the body is provided with a limiting part, which restricts the movement and combination of the abutment top and the body, or the limiting part restricts the abutment top and the body after deformation.
[0012] In the aforementioned abutting structure, the abutting top and the body are provided with limiting portions for assembly.
[0013] In the aforementioned abutment structure, the abutment top is located on the side of the body, or the abutment top is located on the side of the object.
[0014] In the aforementioned abutment structure, the abutment structure or the abutment structure combined with a supported object forms a module. The abutment structure or the module is a handle, track, slider, moving object, rod, rotating body, heat sink, shell, printed circuit board, or telescopic structure. Alternatively, the supported object is 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, elastic body, shell, printed circuit board, or telescopic structure.
[0015] In the aforementioned abutment structure, the abutment 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 abutment 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.
[0016] In the aforementioned supporting structure, the body is used for welding, riveting, expansion, fastening, locking, or integrally forming with the object.
[0017] In the aforementioned abutment structure, the body has a setting portion for allowing the buckle to reach the setting position, or for the abutment top to be installed or passed through the body, or for the abutment top to control the buckle.
[0018] In the aforementioned abutting structure, the body has a setting portion for allowing the buckle to reach a setting position, or a combination portion for combining with the body, or the combination portion is the abutting top for abutting the buckle, or the abutting top for abutting the buckle, or the movement of the abutting top for controlling the movement or fastening of the buckle, or the combination portion and the abutting top are combined with another combination portion, or the movement of the other combination portion for controlling the movement or fastening of the buckle, or the abutting top drives the movement of the other combination portion for controlling the movement or fastening of the buckle, or the buckle is a sphere, an inclined surface, or a single... The setting part may be a sloping body, column, or buckle, or the setting part may be a perforation, movement space, groove, sloping part, stepped part, arc-shaped part, right-angled part, or non-right-angled part, or the abutment top may be another buckle, or the combination part may be another buckle, or the abutment top may be the buckle, or the combination part may be the buckle, or the abutment top and the combination part may be integrally formed, or the abutment top and the combination part may be connected to each other, or the abutment top may be the combination part, or the buckle may be used to reach the setting position by free fall, or the buckle may be used to reach the setting position with the assistance of a tool or a magnetic tool.
[0019] The aforementioned abutment structure further includes a combination part for combining with the body, or the combination part being another 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 other fastener, or the abutment top driving the movement of the combination part to control the movement or fastening of the other fastener, or the combination part being used to first pass through the body and then combine with the abutment top, or the combination part being used to first pass through the body and the elastic component and then combine with the abutment top.
[0020] In the above-described abutting structure, the abutting top has a limiting part and an opening part, used to rotate and limit the limiting position of the buckle, or to limit the opening position of the buckle, or the elastic component is a torsion spring or a torsional elastic body, used to drive the abutting top to be normally in the position limiting the buckle, or normally in the position opening the buckle, or the buckle is a sphere, a slope, a unidirectional slope, a cylinder, or a buckle body, or the two ends of the elastic component are respectively limited to the body and the abutting top, or the body or the abutting top has a limiting part, used to limit the rotation angle of the abutting top, or 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.
[0021] In the aforementioned support structure, the body has a setting part for allowing the buckle part to reach the setting position through the setting part.
[0022] In the above-described abutting structure, the abutting top abuts against the buckle, the body has a setting part, a limiting part and a lifting part, the limiting part restricts the abutting top, the abutting top moves longitudinally to allow the buckle to reach the setting position of the setting part, and the lifting part is used to abut against the rotated abutting top.
[0023] The aforementioned abutting structure also includes an elastic component. The abutting top abuts against the buckle. The body is provided with a limiting part. The abutting top moves longitudinally or rotatably to cause the elastic component to be elastically limited or elastically disengaged from the limiting part, or to cause the abutting top to drive the buckle to the setting position, or the abutting top has an open part, or the open part is used to rotate and limit the limiting position or open position of the buckle.
[0024] In the above-described abutting structure, the abutting top abuts against the buckle. The body, the abutting top, and the elastic component are integrally formed. The body is provided with a setting part and a limiting part. The abutting top moves longitudinally or rotatably, causing the elastic component to be elastically limited or elastically disengaged from the limiting part. The abutting top drives the buckle to the setting position of the setting part. The abutting top has an open part, which is used to rotate and limit the limiting position of the buckle or to limit the open position of the buckle. The buckle can be restricted or opened as required by the cooperation of the open part.
[0025] In the above-described abutting structure, the body has a setting part for allowing the buckle to reach the setting position through the setting part, and then the abutting top abuts against the buckle, or the setting position is opposite to the setting part or a position that can be reached by free fall, or the setting position is a position that the buckle can reach by free fall through the setting part.
[0026] The aforementioned abutment structure also includes another buckle. The body has a setting part for allowing the buckle to pass through to a setting position. The abutment top is combined with the other buckle by an assembly part so that the movement of the abutment top is used to control the movement or fastening of the buckle.
[0027] In the aforementioned abutting structure, the body has a setting part for allowing the buckle to reach the setting position through the setting part, or the abutting top is used to combine one buckle with another by a combining part, or to move the abutting top to control or drive the movement or fastening of the buckle, or the body has a setting part for allowing the buckle to reach the setting position through the setting part, and then the abutting top is set on the body or penetrates the body to abut against the buckle.
[0028] In the above-mentioned abutting structure, the body is provided with a rotating part, or the abutting top is provided with a corresponding rotating part, or the abutting top is rotated to make the rotating part cooperate with the corresponding rotating part, or the abutting top or another fastening part controls the movement of the fastening part in a spiral manner.
[0029] The aforementioned abutting structure also includes another buckle, which abuts against the buckle. The body is provided with a rotating part, and the top abutment is provided with a corresponding rotating part. Rotating the top abutment causes the rotating part to cooperate with the corresponding rotating part, allowing the other buckle to control the movement of the buckle in a spiral manner.
[0030] In the above-mentioned abutting structure, the body, the abutting top, 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 abutting top or prevent the corresponding rotating part of the abutting top from disengaging or loosening from the rotating part.
[0031] In the aforementioned support structure, the body is provided with a handle, the body is located on an object, the buckle is fastened to another object, or the buckle is a sphere, an external buckle, a threaded body, a cylinder, a spring buckle, an internal buckle, an inclined body, or a curved body, or the object or the other object is connected to a heat sink, or the heat sink provides heat dissipation for the heat source, or the object or the other object is a motherboard, a metal body, a plastic body, a server, a transistor, a connector, a track, a rack, a cabinet, a liquid cooling pipe, or a liquid cooling connector.
[0032] In the aforementioned abutment structure, the body is provided with a setting part for allowing the buckle to enter or reach the setting position or the fastening position. The setting part is located on the side, above, or below the body, or the buckle enters the body from the setting part, so that the abutment top abuts against the buckle, or the abutment top opens or closes the buckle, or 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 to guide the movement of the buckle, 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 to limit the position of the buckle or the position after movement, or the number of the buckles is one, two, or more than three, or the buckles are used to reach the setting position by free fall through the setting part.
[0033] In the aforementioned support structure, the fastening part can be an outer fastening body, a threaded body, a column, a spring-loaded fastening body, an inner fastening body, an inclined body, or a curved body.
[0034] In the aforementioned support structure, the body is provided with at least one buckle, and the body is laterally connected to the object via the buckle.
[0035] In the aforementioned abutment structure, the body is provided with a setting part for allowing the 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 buckle is first entered into the body from the setting part, or the buckle enters the setting position or the fastening position and is used by the abutment top to abut the buckle, or the abutment top is used to open or close the buckle, or 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 to guide the buckle to move, 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 to limit the position of the buckle or the position after movement, or the number of the buckles is one, two, or more than three, or the buckles are used to reach the setting position by free fall through the setting part.
[0036] In the aforementioned abutment structure, the body is provided with a setting part for allowing the 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 buckle is first entered into the body from the setting part, or the buckle enters the setting position or the fastening position and is used by the abutment top to abut the buckle, or the abutment top is used to open or close the buckle, 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 buckle, 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 buckle or the position after movement, or the number of the buckles is one, two, or more than three.
[0037] In the aforementioned abutment structure, the number of the buckles is one, two, or three or more.
[0038] In the aforementioned abutment structure, the body is provided with a setting part for allowing the 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 buckle is first entered into the body from the setting part, or the buckle enters the setting position or the fastening position and is used by the abutment top to abut the buckle, or the abutment top is used to open or close the buckle, 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 buckle, 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 buckle or the position after movement, or the number of the buckles is one, two, or more than three.
[0039] In the aforementioned abutting structure, the body has a setting position for setting the buckle, or the setting position is located on the side, above, or below the body, or the two buckles enter the setting position or the buckling position and are used by the abutting top to abut the buckle, or the abutting top is used to open or close the buckle, or then an elastic component is installed on the body to abut the abutting top, or an elastic component is installed on the body to abut the body and the abutting top, or the abutting top has a guide part to guide the buckle to move, or the guide part is an inclined surface, curved surface, arc surface, step, concave part, convex part, or plane, or the abutting top has a limiting part to limit the position of the buckle or the position after movement, or the number of the buckles is one, two, or more than three.
[0040] In the above-mentioned abutment structure, the body is provided with an anti-rotation part to prevent rotation with the object, or the abutment top is provided with another anti-rotation part to prevent rotation with the body. The other anti-rotation part is used to limit the position or movement of the abutment top, or the other anti-rotation part is used to limit the fastening direction, fastening angle or fastening position of the buckle.
[0041] In the aforementioned support structure, the body is provided with a setting part for assembling or inserting the buckle, and the body is provided with a setting position, which is opposite to the setting part or a position that can be reached by free fall, or the setting position is a position that the buckle can reach by free fall through the setting part.
[0042] In the aforementioned abutment structure, the elastic component is a torsion spring, with its two ends respectively located on the body and the abutment top, for the abutment top to elastically rotate and abut against the buckle, so that the buckle is in a snapped or non-snap position. Alternatively, the body or the abutment top may have a limiting part to limit the abutment top to the buckle being in a snapped or non-snap position. Alternatively, it may also include an elastic component located between the body and the abutment top and on the inner or outer side of the body. Alternatively, the body and the abutment top may be integrally formed with the elastic component. Alternatively, the elastic component may be elastically deformable and snap into the limiting part of the body, or limit the abutment top, or prevent the corresponding rotating part of the abutment top from disengaging or loosening from the rotating part. Alternatively, the abutment structure may be connected to a heat sink, or the heat sink may provide heat dissipation for the heat-generating element. Alternatively, the abutment structure may be connected to a motherboard, metal body, plastic body, server, transistor, connector, track, rack, cabinet, liquid cooling pipe, or liquid cooling connector.
[0043] In the aforementioned abutment structure, the body is provided with an anti-rotation part, which is used to limit the direction of the body, or the anti-rotation part is used to limit the snapping direction of the abutment top, or the anti-rotation part is used to limit the direction of the body, the abutment top and the object.
[0044] In the above-mentioned abutment structure, there is an elastic component, or it is disposed between the body and the abutment top and located on the inner or outer side of the body, or the body or the abutment top is integrally formed with the elastic component, or the elastic component can be elastically deformed and snapped into the limiting part of the body to limit the abutment top.
[0045] In the aforementioned abutment structure, the body is provided with a setting part, through which an object enters the body and is fastened, interfered with, locked, or conductively connected by the abutment top. The object is a fastened body, a conductor, a line, a fastener, a sphere, a rod, an optical fiber, a column, or a plate. Alternatively, the abutment top is a fastener, a column, a threaded body, a protrusion, a rod, a concave body, or a planar body. Or, the two ends of the elastic component abut against the body and the abutment top respectively. Alternatively, the setting part is a hole, a groove, a channel, or a space.
[0046] In the aforementioned abutment structure, the body is provided with a setting part, through which an object enters the body and is fastened, interfered with, limited, locked, or conductive by the abutment top. Alternatively, the object may be a fastened body, a conductor, a line, a fastener, a sphere, a rod, an optical fiber, a column, or a plate. Alternatively, the abutment top may be a fastening part, a column, a threaded part, a protrusion, a rod, a concave part, or a planar part. Alternatively, the setting part may be a hole, a groove, a channel, or a space.
[0047] The aforementioned abutment structure also includes an elastic component, which is disposed between the body and the abutment top and located on the inner or outer side of the body.
[0048] In the above-described abutting structure, the abutting top is a lever, the body is a handle, and the abutting top is combined with another fastener by another assembly, which is used to control the other fastener to engage or disengage with another object by levering the abutting top.
[0049] In the aforementioned abutment structure, the body is provided with a receiving portion, which is used to receive the abutment top to reduce the height of the abutment top, or to raise the abutment top and rotate it to a high position on the body of the non-receiving portion, so as to move the abutment top to open or close the buckle.
[0050] Optionally, there are two abutting tops, each abutting top abutting against the other, or one of the abutting tops is assembled to the body with a joint, or one of the abutting tops is rotated or moved to open or close the buckle.
[0051] Optionally, the abutment and the elastic component are moved elastically so that the buckle moves from the abutment position of the abutment to the receiving position of the abutment, thereby moving the buckle.
[0052] Optionally, the abutment structure is connected to a heat sink, which provides heat dissipation for the heat-generating element.
[0053] Optionally, the abutting structure is used to assemble at least two objects, with a gap between the two objects, or the two objects are closely fitted together, or the two objects are respectively a circuit board, a metal object, or a plastic plate, or both objects are metal objects, circuit boards, or plastic plates, or the body is provided with a shoulder, through which the gap between the two objects is formed.
[0054] Optionally, the abutting structure has a moving part, or the moving part is provided with a limiting part and a channel, the limiting part is connected to the channel, and the moving part moves laterally so that the abutting top is lifted from the low position of the limiting part to the high position of the channel, so as to move the abutting top to open or close the buckle.
[0055] Optionally, the abutting structure has a moving part, the body is provided with an anti-rotation part, and the moving part is provided with another corresponding anti-rotation part. The anti-rotation part cooperates with the other corresponding anti-rotation part to limit the rotation position or direction of movement of the moving part.
[0056] Optionally, the abutting structure is provided on the heat sink for the buckle to fasten the object, wherein the object has a heating element, the heat sink dissipates heat from the heating element, or wherein the object is a printed circuit board, or the heating element is a chip, or the object or the heating element is a conductor; or the abutting structure is provided on the object for the buckle to fasten the heat sink, wherein the object has a heating element, the heat sink dissipates heat from the heating element, or wherein the object is a printed circuit board, or the heating element is a chip, or the object or the heating element is a conductor.
[0057] Optionally, the body is provided with a setting part and a setting position, the setting part being larger than the setting position, so that the buckle part can pass through the setting part to reach the setting position for limiting.
[0058] Optionally, the body is provided with a setting part and a setting position, the setting part being larger than the setting position, so that the buckle can pass through the setting part to reach the setting position, and the abutting top is used to abut the buckle, or the abutting top is used to control or drive the movement or fastening of the buckle.
[0059] The present invention provides a method for abutting abutting a structure, the abutting structure including 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, so that an elastic abutting space is formed between the body and the abutting top during application.
[0060] This invention provides another method for abutting abutment structure, the abutment structure including a body, at least one abutment top, an elastic component, and another fastening part. The body has a setting part for allowing the other fastening part to reach a setting position to combine with the body in a combination part, or the combination part is the other fastening part, or the combination part is the abutment top for abutting the other fastening part, or the combination part and the abutment top are combined in another combination part, or the movement of the other combination part is used to control the movement or fastening of the other fastening part, or the abutment top drives the movement of the other combination part to control the movement or fastening of the other fastening part, or the other fastening part is a sphere, a slope, a unidirectional slope, a cylinder, or a fastening body, or the setting part or setting position is a perforation, a movement space, a groove, a slope, a step, an arc surface, a right angle, or a non-right angle.
[0061] This invention provides another method for abutting abutting a structure, the abutting structure comprising a body, at least one abutting top or elastic component or buckle, or the body having a setting part, or for allowing the buckle to pass through to a setting position, or for combining with the body by a combination part, or the combination part being another buckle, or the combination part being the abutting top for abutting the buckle, or the combination part and the abutting top being combined with another combination part, or the movement of the other combination part for controlling the movement or fastening of the buckle, or the abutting top driving the movement of the other combination part for controlling the movement or fastening of the buckle, or wherein the buckle or the other buckle is a sphere, a slope, a unidirectional slope, a cylinder or buckle body, or the setting part or setting position is a perforation, a movement space or groove, a sloped part, a stepped part, an arcuate part, a right-angled part or a non-right-angled part.
[0062] The present invention provides another method for abutting abutment structure, the abutment structure including a body, at least one abutment top, and an elastic component, wherein the abutment further includes a combination part for combining with the body, or the combination part being another fastening part, 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 other fastening part, or the abutment top driving the movement of the combination part to control the movement or fastening of the other fastening part, or the combination part being used to first pass through the body and then combine with the abutment top as another 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 as another combination part.
[0063] 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 the abutment top has a limiting portion and an opening portion for rotating to limit the limiting position of the buckle, or for limiting the opening position of the buckle, 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 buckle, or normally in the position opening the buckle, or wherein the buckle is a sphere, a slope, a unidirectional slope, a cylinder, or a buckle 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 portion for limiting the rotation angle of the abutment top, or wherein the limiting portion or the opening portion is an arc surface, a slope, a sphere, a groove, a hole, a plane, a concave portion, or a convex portion.
[0064] The present invention provides another method for abutting abutting abutting structure, the abutting structure including a body, at least one abutting top and an elastic component, wherein the body has a setting part for allowing the buckle to pass through to a setting position, or for the abutting top to be installed or passed through the body, or for the abutting top to control the buckle, or the body has a setting part for allowing the buckle to pass through the setting part to reach the setting position, and then for the abutting top to be set on the body or passed through the body to abut against the buckle.
[0065] 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. The body may also include a setting portion for allowing the buckle to reach a setting position, or a combination portion for combining with the body; or the combination portion may be the resisting top for resisting the buckle; or the resisting top may move to control the movement or engagement of the buckle; or the combination portion and the resisting top may be combined with another combination portion; or the movement of the other combination portion may control the movement or engagement of the buckle; or the resisting top may drive the movement of the other combination portion to control the movement or engagement of the buckle; or the buckle may be a sphere, a sloped surface, or a unidirectional... The inclined body, column, or buckle body, or the setting part is a perforation, movement space, groove, inclined surface, stepped surface, arc surface, right angle or non-right angle part, or the abutment top is another buckle part, or the combined part is another buckle part, or the abutment top is the buckle part, or the combined part is the buckle part, or the abutment top and the combined part are integrally formed, or the abutment top and the combined part are connected to each other, or the abutment top is the combined part, or the buckle part is used to reach the setting position by free fall through the setting part, or the buckle part is used to reach the setting position with the assistance of a tool or a magnetic tool, or the buckle part is used to reach the setting position with the assistance of a tool or a magnetic tool. Attached Figure Description
[0066] 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.
[0067] Figure 1 This is a schematic diagram of the first embodiment of the present invention. Figure 1 .
[0068] Figure 2 This is a schematic diagram of the first embodiment of the present invention. Figure 2 .
[0069] Figure 3 This is a schematic diagram of the second embodiment of the present invention.
[0070] Figure 4 This is a schematic diagram of the forty-third embodiment of the present invention. Figure 1 .
[0071] Figure 5 This is a schematic diagram of the forty-third embodiment of the present invention. Figure 2 .
[0072] Figure 6 This is a schematic diagram of the fourth embodiment of the present invention.
[0073] Figure 7 This is a schematic diagram of the fifth embodiment of the present invention. Figure 1 .
[0074] Figure 8 This is a schematic diagram of the fifth embodiment of the present invention. Figure 2 .
[0075] Figure 9 This is a schematic diagram of the sixth embodiment of the present invention.
[0076] Figure 10 This is a schematic diagram of the seventh embodiment of the present invention.
[0077] Figure 11 This is a schematic diagram of the eighth embodiment of the present invention.
[0078] Figure 12 This is a schematic diagram of the ninth embodiment of the present invention.
[0079] Figure 13 This is a schematic diagram of the tenth embodiment of the present invention.
[0080] Figure 14 This is a schematic diagram of the eleventh embodiment of the present invention.
[0081] Figure 15 This is a schematic diagram of the twelfth embodiment of the present invention.
[0082] Figure 16 This is a schematic diagram of the thirteenth embodiment of the present invention.
[0083] Figure 17 This is a schematic diagram of the fourteenth embodiment of the present invention.
[0084] Figure 18 This is a schematic diagram of the fifteenth embodiment of the present invention.
[0085] Figure 19 This is a schematic diagram of the sixteenth embodiment of the present invention.
[0086] Figure 20 This is a schematic diagram of the seventeenth embodiment of the present invention.
[0087] Figure 21 This is a schematic diagram of the eighteenth embodiment of the present invention.
[0088] Figure 22 This is a schematic diagram of the nineteenth embodiment of the present invention.
[0089] Figure 23 This is a schematic diagram of the twentieth embodiment of the present invention.
[0090] Figure 24 This is a schematic diagram of the twenty-first embodiment of the present invention.
[0091] Figure 25 This is a schematic diagram of the twenty-second embodiment of the present invention.
[0092] Figure 26 This is a schematic diagram of the twenty-third embodiment of the present invention. Figure 1 .
[0093] Figure 27 This is a schematic diagram of the twenty-third embodiment of the present invention. Figure 2 .
[0094] Figure 28 This is a schematic diagram of the twenty-fourth embodiment of the present invention. Figure 1 .
[0095] Figure 29 This is a schematic diagram of the twenty-fourth embodiment of the present invention. Figure 2 .
[0096] Figure 30 This is a schematic diagram of the twenty-fifth embodiment of the present invention.
[0097] Figure 31 This is a schematic diagram of the twenty-sixth embodiment of the present invention. Figure 1 .
[0098] Figure 32This is a schematic diagram of the twenty-sixth embodiment of the present invention. Figure 2 .
[0099] Figure 33 This is a schematic diagram of the twenty-sixth embodiment of the present invention. Figure 3 .
[0100] Figure 34 This is a schematic diagram of the twenty-seventh embodiment of the present invention. Figure 1 .
[0101] Figure 35 This is a schematic diagram of the twenty-seventh embodiment of the present invention. Figure 2 .
[0102] Figure 36 This is a schematic diagram of the twenty-eighth embodiment of the present invention.
[0103] Figure 37 This is a schematic diagram of the twenty-ninth embodiment of the present invention. Figure 1 .
[0104] Figure 38 This is a schematic diagram of the twenty-ninth embodiment of the present invention. Figure 2 .
[0105] Figure 39 This is a schematic diagram of the thirtieth embodiment of the present invention.
[0106] Figure 40 This is a schematic diagram of the thirty-first embodiment of the present invention.
[0107] Figure 41 This is a schematic diagram of the thirty-second embodiment of the present invention.
[0108] Figure 42 This is a schematic diagram of the thirty-third embodiment of the present invention.
[0109] Figure Labels
[0110] 1. Top Structure
[0111] 11 body parts
[0112] 111th Reception Unit
[0113] 1110 Lifting part
[0114] 1113 Rotating Part
[0115] 112 Anti-transfer Unit
[0116] 113th Assembly Department
[0117] 1131 Bevel face
[0118] 114 handle
[0119] 115 Container Unit
[0120] 110 Emergency Unit
[0121] 1101 Setting Location
[0122] 1102 Shoulder
[0123] 12 to the top
[0124] 1211 Guidance Department
[0125] 1213 Another anti-rotation unit
[0126] 122 Another buckle
[0127] 123 Guide Surface
[0128] 124 neck
[0129] 125 gears
[0130] 126th Operations Department
[0131] 127 Another group
[0132] 128 buckle
[0133] 129 Corresponding Rotating Part
[0134] 13 Flexible Components
[0135] 14 Sports Department
[0136] 141 Limited Movement Department
[0137] 142 channels
[0138] 143 Another corresponding anti-rotation part
[0139] 15 stops
[0140] 16 joints
[0141] 10 objects
[0142] 101 Corresponding Anti-rotation Unit
[0143] 102 Fastening Part
[0144] 103 Detained Department
[0145] 20 load-bearing structures
[0146] 30 objects on top
[0147] 40 heat sink
[0148] 41 Fever Entity
[0149] 421 connector
[0150] 44-speed fluid
[0151] 45 connector
[0152] 401 fan
[0153] 402 perforation
[0154] 60 limit section
[0155] 61 Open Department
[0156] 62 Restriction Department
[0157] 70 Another object
[0158] 701 Detained Department
[0159] 71 mold
[0160] S-interval space Detailed Implementation
[0161] The fluid bonding structure of the present invention will be further described below with reference to the accompanying drawings.
[0162] 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.
[0163] Please see Figure 1 and Figure 2 As shown in the figure: The present invention is a top-stopping structure and a top-stopping method thereof. The top-stopping structure 1 includes a body 11, at least one top-stopping part 12, and a buckle part 128.
[0164] The top abutment 12 is movably disposed on the body 11.
[0165] The abutting top 12 abuts against the buckle 128 (or the abutting top 12 is used to control or drive the movement or fastening of the buckle 128).
[0166] 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 an elastic component 13, which is disposed between the body 11 and the abutment 12 and located on the inner or outer side of the body 11.
[0167] 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 portion 111, and the body 11 or the connecting portion 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.
[0168] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the body 11 has a setting part 110 for allowing the buckle 128 to be combined with the body 11 by reaching the setting position 1101 for a combination part 113; thus, the present invention can better meet the needs of practical application.
[0169] 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 buckle 128, the combined part 113 is another buckle, or the combined part 113 is the abutment used to abut the buckle 128, or the abutment 12 is used to abut the buckle 128, or the abutment 12 moves to control (or drive) the movement or fastening of the buckle 128; thus, the present invention can better meet the needs of practical application.
[0170] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the body 11 has a setting part 110, which allows the buckle 128 to reach the setting position through the setting part 110, and then the abutment top 12 is set on the body 11 or penetrates the body 11 to abut against the buckle 128; thus, the present invention can better meet the needs of practical application.
[0171] 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 (or drive) the movement or fastening of the buckle part 128, and the abutment top 12 drives the other combined part 127 to move to control (or drive) the movement or fastening of the buckle part 128. The buckle part 128 may be a sphere, a slope, a unidirectional slope, a cylinder, or a buckle body. The setting part 110 may be a perforation, a movement space, a groove, a slope, a step, an arc surface, a right angle, or a non-right angle. In this way, the present invention can better meet the needs of practical applications.
[0172] 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 are used to combine with the other combined part 127, so that the movement of the combined part 113 controls the movement or fastening of the other fastening part 122 (or the abutment 12 drives the combined part 113 to move in order to control the movement or fastening of the other fastening part 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 application.
[0173] 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 other fastening part 122 is used to reach the setting position 1101 by free fall through the setting part 110, or the other fastening part 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.
[0174] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the buckle is used to assist the tool or a magnetic tool in reaching the setting position 1101 through the setting part 110; thus, the present invention can better meet the needs of practical application.
[0175] Please see Figure 3 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 another fastening part, and the abutting top 12 is integrally formed with the combined part 113, and the combined part 113 abuts the 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 fastening part 128, so that the present invention can better meet the needs of practical application.
[0176] Please see Figure 4 and Figure 5As 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 buckle 128, wherein the buckle 128 can be a sphere, a slope, a unidirectional slope, a cylinder, or a buckle body, and the abutment top 12 has a limiting part 60 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 buckle 128, or to limit the opening position of the buckle 128; in this way, the buckle 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.
[0177] 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 elastic body), 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 buckle 128, or to make the abutment 12 normally in the position of opening the buckle 128; thus, the present invention can better meet the needs of practical application.
[0178] Please see Figure 6 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, the limiting part 62 being used to limit the rotation angle of the top abutment 12; thus, the present invention can better meet the needs of practical applications.
[0179] Please see Figure 7 and Figure 8 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 buckle 128, the abutment top 12 abuts against the buckle 128, the body 11 has a setting part 110, a limiting part 60 and a lifting part 1110, the limiting part 60 restricts the abutment top 12, the abutment top 12 moves longitudinally so that the buckle 128 reaches the setting position 1101 of the setting part 110, and 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 buckle 128 to fasten or unfasten the object 10, so that the present invention can better meet the needs of practical application.
[0180] Please see Figure 9 and Figure 10As 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 buckle 128, the abutment 12 abuts against the buckle 128, the body 11, the abutment 12 and the elastic component 13 are integrally formed, and the body 11 is provided with a setting part 110 and a limiting part 60. The abutment 12 moves longitudinally or rotatably to make the elastic component 13 elastically limited or elastically disengaged from the limiting part 60, so that the abutment 12 drives the buckle 128 to the setting position 1101 of the setting part, and the abutment 12 has an opening part 61, which is used to rotate and limit the limiting position of the buckle 128, or to limit the opening position of the buckle 128. The 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.
[0181] Please see Figure 11 and Figure 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 it also includes another buckle 122 and buckle 128. The body 11 has a setting part 110 for allowing the buckle 128 to pass through to the setting position 1101. The abutment 12 combines the other buckle 122 with a combination part 113 so that the abutment 12 moves to control (or drive) the movement or fastening of the buckle 128.
[0182] Please see Figures 13 to 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 it also includes another buckle 122 and buckle 128. The other buckle 122 abuts against the buckle 128. The body 11 is provided with a rotating part 1113, and the top abutment 12 is provided with a corresponding rotating part 129. Rotating the top abutment 12 causes the rotating part 1113 to cooperate with the corresponding rotating part 129, so that the other buckle 122 controls the movement of the buckle 128 in a spiral manner. In this way, the present invention can better meet the needs of practical applications.
[0183] 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, and the elastic component 13 can be elastically deformed to snap into the limiting part 60 of the body 11, so as to limit the top abutment 12 or prevent the corresponding rotating part 129 of the top abutment 12 from disengaging or loosening from the rotating part 1113; thus, the present invention can better meet the needs of practical application.
[0184] In addition to the above embodiments, in one embodiment of the present invention, the difference from the above embodiments is that the buckle 128 enters (or reaches) the setting position 1101 (or the fastening position) and abuts the buckle 128 with the abutting top 12, or the buckle 128 is switched with the abutting top 12; thus, the abutting top 12 and the buckle 128 of the present invention can better meet the needs of practical application.
[0185] 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 equipped with the elastic component 13 and abuts against the abutment top 12, or the body 11 is equipped with the elastic component 13 and abuts against the body 11 and the abutment top 13, so that the abutment top 12 can achieve the effects of automatic reset, elastic fastening or positioning after actuation through the cooperation of the elastic component 13.
[0186] 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 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 buckle portion 128 or its moved position; thus, the abutment top 12 and the buckle portion 128 of the present invention can better meet the needs of practical application.
[0187] Please see Figure 17 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 buckle 128, the body 11 is disposed on the object 10, and the buckle 128 is fastened to the fastened part 701 of another object 70 (e.g., Figure 17 (as shown), or the top 12 and the buckle 128 are respectively fastened to the buckled part 701 of the other object 70; thus, the present invention can better meet the needs of practical application.
[0188] Please see Figure 18 and Figure 19 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 buckle 128, and the body 11 is laterally connected to the object 10 with the buckle 128; in this way, the present invention can better meet the needs of practical application.
[0189] 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 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 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 other buckle 122 and the abutment top 12; in this way, the present invention can better meet the needs of practical application.
[0190] 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 buckle 128 is one, two or more; thus, the present invention can better meet the needs of practical applications.
[0191] Please see Figure 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 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 restrict the position or movement of the top abutment 12, or the other anti-rotation part 1213 is used to restrict the fastening direction, fastening angle or fastening position of the buckle 128; in this way, the present invention can better meet the needs of practical application.
[0192] Please see Figure 21 and 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 body 11 is provided with a setting part 110 for assembling the buckle part 128, and the setting position 1101 is in a position opposite to the setting part 110 or a position reachable by free fall; thus, the present invention can better meet the needs of practical application.
[0193] 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 buckle 128, so that the buckle 128 is in a fastened position or a non-fastened position. The body 11 (or the abutment 12) may be provided with a limiting part 60 to limit the abutment 12 to be in the fastened position or a non-fastened position of the buckle 128. In this way, the present invention can better meet the needs of practical application.
[0194] Please see Figure 23As 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, 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 the top abutment 12, or the direction of the body 11, the top abutment 12 and the object 10; in this way, the present invention can better meet the needs of practical application.
[0195] Please see Figure 24 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 top 12; thus, the present invention can better meet the needs of practical application.
[0196] 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 line, a fastener, a sphere, a rod, an optical fiber, 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.
[0197] 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 rod, 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.
[0198] 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 abutting structure 1, and the abutting structure 1 can be used for fastening or electrical conduction (e.g., Figure 24 (as shown); thus, the present invention can better meet the needs of practical applications.
[0199] Please see Figure 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 top abutment 12 can be a handle (e.g., a lever), the elastic component 13 is disposed between the body 11 and the top abutment 12, and the elastic component 13 is located inside the body 11.
[0200] 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 buckle 128 to fasten or unfasten.
[0201] 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 body 11 is provided with a receiving portion 115. The receiving portion 115 is used to receive the abutment 12 to reduce the height of the abutment 12, or the abutment 12 is raised and rotated to a high position of the body that is not receiving portion, so that the abutment 12 can move to open and close the buckle 128, and then the abutment 12 drives the buckle 128 to fasten or unfasten.
[0202] Please see Figure 28 and Figure 29 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 there are two abutment tops 12, each abutting against each other, and one abutment top 12 is connected to the body 11 by the assembly part 113, and one abutment top 12 rotates or moves to open or close the buckle part 128, thereby driving the buckle part 128 to fasten or unfasten.
[0203] Please see Figure 30 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 and the elastic component 13 can be moved (e.g., pressed) to elastically move, so that the buckle 128 moves from the abutment position of the abutment 12 to the receiving position of the abutment 12, so that the buckle 128 can move, and then the abutment 12 can drive the buckle 128 to fasten or unfasten.
[0204] Please see Figures 31 to 33 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 number of the body 11, the top abutment 12, the buckle 128 and the elastic component 13 can each be two. Each top abutment 12 is respectively connected to both ends of the handle 114 by the combination part 113, so that the handle 114 can be rotated or moved by force, so that the handle 114 is linked to each top abutment 12, and then each top abutment 12 drives each buckle 128 to fasten or unfasten at least two objects 10.
[0205] Please see Figures 34 to 35As 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 structure 1 is connected to a heat sink 40, and the heat sink 40 provides heat dissipation for the heat source 41.
[0206] In addition to the above embodiments, in one embodiment of the present invention, the number of the body 11, the top abutment 12, the other fastening part 122, the fastening part 128, and the elastic component 13 may each be two. The assembly part 111 of the body 11 is welded to the object 10. Each top abutment 12 is assembled to each other fastening part 122 by the assembly part 113, so that each top abutment 12 can be rotated or moved to make each other fastening part 122 and each fastening part 128 form an unfastened state, so that the heat sink 40 is inserted into each body 11 through the through hole 402. Then, each top abutment 12 is rotated or moved to make each top abutment 12 move each other fastening part 122, thereby making each top abutment 12 drive each fastening part 128 to fasten or unfasten the heat sink 40.
[0207] 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 on the object 10 (for example, the object 10 may be a printed circuit board or a conductor) for the fastening part 128 to fasten the heat sink 40, wherein the object 10 is provided with the heating element 41 (for example, the heating element 41 may be a chip or a conductor), and the heat sink 40 dissipates heat for the heating element 41.
[0208] Please see Figure 36 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 supporting structure 1 is used to assemble at least two objects 10, and there is a gap space S between the two objects 10, or the two objects 10 are closely attached, or the two objects 10 are respectively a circuit board, a metal object or a plastic plate, or both objects 10 are metal objects, circuit boards or plastic plates, or the body 11 is provided with a shoulder 1102, through which the gap space S is formed between the two objects 10; thereby making the present invention more in line with the needs of practical applications.
[0209] Please see Figure 37 and Figure 38As 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 may have a moving part 14, or the moving part 14 may have a limiting part 141 and a channel 142. The limiting part 141 is connected to the channel 142. The moving part 14 moves laterally, so that the abutting top 12 is lifted from the low position of the limiting part 141 to the high position of the channel 142, so that the abutting top 12 moves to open and close the buckle 128, and then the abutting top 12 drives the buckle 128 to fasten or unfasten.
[0210] 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 abutting structure 1 has a moving part 14, the moving part 14 is movably connected with the body 11, the body 11 is provided with an anti-rotation part 112, and the moving part 14 is provided with another corresponding anti-rotation part 143. The anti-rotation part 112 and the other corresponding anti-rotation part 143 are connected to each other so that the anti-rotation part 112 cooperates with the other corresponding anti-rotation part 143 to limit the rotation position or direction of movement of the moving part 14; thereby making the present invention more in line with the needs of practical application.
[0211] 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 is pressed by a mold 71 so that the material of the object 10 flows into or enters the assembly portion 111, so that the body 11 is firmly connected to the object 10 by means of the assembly portion 111; thus, the present invention can better meet the needs of practical application.
[0212] Please see Figure 41 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 on the heat sink 40 for the buckle 128 to fasten the object 10 (for example, the object 10 may be a printed circuit board), wherein the object 10 is provided with the heat source 41 (for example, the heat source 41 may be a chip), and the heat sink 40 dissipates heat from the heat source 41; thus, the present invention can better meet the needs of practical applications.
[0213] Please see Figure 42As 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 a setting position 1101. The setting part 110 is larger than the setting position 1101, so that the buckle 128 can pass through the setting part 110 to reach the setting position 1101 for limitation, or so that the abutment top 12 can abut against the buckle 128, so that the abutment top 12 can control or drive the movement or fastening of the buckle 128; in this way, the present invention can better meet the needs of practical application.
[0214] In summary, the abutting structure of the present invention can achieve smoother movement and abutting limit through the abutting structure.
[0215] 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; At least one abutment, which is movable within the body; and The buckle, the abutting top is used to abut against the buckle, or the abutting top is used to control or drive the movement or fastening of the buckle.
2. The abutment structure according to claim 1, characterized in that, The body has a setting part so that the buckle can reach the setting position through the setting part.
3. The abutment structure according to claim 1, characterized in that, 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 buckle part to reach the setting position; or the lifting part is used to abut against the rotated abutment top.
4. The abutment structure according to claim 1, characterized in that, It also includes an elastic component, or the abutment abuts against the buckle, the body is provided with a limiting part, 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 buckle to the setting position, or the abutment has an open part, or the open part is used to rotate and limit the limiting position or open position of the buckle.
5. The abutment structure according to claim 1, characterized in that, The body has a setting part for allowing the buckle to reach the setting position through the setting part, and then the abutting top abuts against the buckle, or the setting position is opposite to the setting part or a position that can be reached by free fall, or the setting position is a position that the buckle can reach by free fall through the setting part.
6. The abutment structure according to claim 1, characterized in that, The body is provided with a rotating part, and the top abutment is provided with a corresponding rotating part. Rotating the top abutment causes the rotating part to cooperate with the corresponding rotating part, or the top abutment or another fastening part controls the movement of the fastening part in a spiral manner.
7. The abutment structure according to claim 1, characterized in that, The body is provided with a handle, or the body is located on an object, or the buckle is fastened to another object, or the buckle is a sphere, an external buckle, a threaded body, a cylinder, a spring buckle, an internal buckle, an inclined body, or a curved body, or the object or the other object is connected to a heat sink, or the heat sink provides heat dissipation for the heat-generating body, or the object or the other object is a motherboard, a metal body, a plastic body, a server, a transistor, a connector, a track, a rack, a cabinet, a liquid cooling pipe, or a liquid cooling connector.
8. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part for allowing the buckle to enter or reach the setting position or the fastening position. The setting part is located on the side, above or below the body, or the buckle enters the body from the setting part, and the abutment top is used to abut the buckle, or the abutment top is used to open or close the buckle, or an elastic component is installed on the body to abut the abutment top, or an elastic component is installed on the body to abut the body and the abutment top, or the abutment top has a guide part to guide the movement of the buckle, 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 to limit the position of the buckle or the position after movement, or the number of the buckles is one, two or more, or the buckles are used to reach the setting position by free fall through the setting part.
9. 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 abutment 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 abutment, or the other anti-rotation part is used to limit the fastening direction, fastening angle or fastening position of the buckle, or the body is provided with 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 the top abutment, or the anti-rotation part is used to limit the direction of the body, the top abutment and the object, or the abutment structure has a moving part, or the body is provided with an anti-rotation part, or the moving part is provided with another corresponding anti-rotation part, or the anti-rotation part cooperates with the other corresponding anti-rotation part to limit the rotation position or movement direction of the moving part.
10. The abutment structure according to claim 1, characterized in that, It has an elastic component, which is a torsion spring, with its two ends respectively located on the body and the abutment top, or used to make the abutment top rotate elastically to abut against the buckle, or to make the buckle position in a fastened position or a non-fastened position.
11. 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 inner or outer side of the body, or wherein the body or the abutment is integrally formed with the elastic component, or the elastic component can be elastically deformed and snapped into the limiting portion of the body.
12. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part, through which an object enters the body and is fastened, interfered with, limited, locked or conductive by the top abutment, or wherein the object is a fastened body, a conductor, a line, a fastener, a sphere, a rod, an optical fiber, a column or a plate, or the top abutment is a fastening part, a column, a threaded part, a protrusion, a rod, a concave part or a planar part, or the setting part is a hole, a groove, a channel or a space.
13. The abutment structure according to claim 1, characterized in that, The top abutment is a lever, or the body is a handle, or the top abutment is combined with another fastener by another assembly, or is used to control the other fastener to engage or disengage with another object by levering the top abutment.
14. The abutment structure according to claim 1, characterized in that, The body is provided with a receiving portion, which is used to receive the abutment to lower the height of the abutment, or to raise the abutment and rotate it to a high position on the body that is not in the receiving portion, so as to move the abutment to open or close the buckle.
15. The abutment structure according to claim 1, characterized in that, The abutment and the elastic component are moved elastically, so that the buckle moves from the abutment position of the abutment to the receiving position of the abutment, thereby moving the buckle.
16. The abutment structure according to claim 1, characterized in that, The abutting structure is used to assemble at least two objects, wherein there is a gap between the two objects, or the two objects are closely fitted, or the two objects are respectively a circuit board, a metal object, or a plastic plate, or both objects are metal objects, circuit boards, or plastic plates, or the body is provided with a shoulder, through which the gap between the two objects is formed, or the abutting structure has a moving part, or the moving part is provided with a limiting part or a channel, or the limiting part is connected to the channel, or the moving part moves laterally, or the abutting top is raised from the low position of the limiting part to the high position of the channel, or it is used to move the abutting top to open or close the buckle.
17. The abutment structure according to claim 1, characterized in that, The abutting structure is provided on the heat sink for the fastening part to fasten the object, wherein the object is provided with a heating element, or the heat sink dissipates heat from the heating element, or the object is a printed circuit board, or the heating element is a chip, or the object or the heating element is a conductor; or the abutting structure is provided on the object for the fastening part to fasten the heat sink, wherein the object is provided with a heating element, or the heat sink dissipates heat from the heating element, or the object is a printed circuit board, or the heating element is a chip, or the object or the heating element is a conductor.
18. The abutment structure according to claim 1, characterized in that, The body is provided with a setting part and a setting position. The setting part is larger than the setting position, so that the buckle can pass through the setting part to reach the setting position. The abutting top is used to abut the buckle, or the abutting top is used to control or drive the movement or fastening of the buckle.
19. A method for abutting abutting a structure, the abutting structure comprising a body, at least one abutting top or elastic component or buckle, or the body having a setting portion, or for allowing the buckle to pass through to a setting position, or for combining with the body by a combination portion, or the combination portion being another buckle, or the combination portion being the abutting top for abutting the buckle, or the combination portion and the abutting top being combined with another combination portion, or the movement of the other combination portion for controlling the movement or fastening of the buckle, or the abutting top driving the movement of the other combination portion for controlling the movement or fastening of the buckle, or wherein the buckle portion or the other buckle portion is a sphere, a slope, a unidirectional slope, a cylinder or buckle body, or the setting portion or setting position is a perforation, a movement space, a groove, a slope, a step, an arcuate surface, a right angle or a non-right angle.
20. A method for abutting abutting a structure, the abutting structure comprising a body, at least one abutting top or elastic component, further comprising a buckle, wherein the body has a setting portion for allowing the buckle to pass through to a setting position, and the abutting top is then mounted or inserted into the body for controlling the buckle, or the body has a setting portion for allowing the buckle to pass through the setting portion to a setting position, and the abutting top is then set on or inserted into the body for abutting the buckle.