Conduction structure
By using the snap-fit or snap-unscrew design of the moving part of the conductive structure with the body, combined with elastic components and precision-machined assembly parts, the problems of difficult assembly and disassembly caused by screw fixing are solved, achieving the effect of quick assembly and disassembly.
Patent Information
- Application Number
- CN202510401013.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-11-14
- Filing Date
- 2025-04-01
- Publication Date
- 2025-11-11
AI Technical Summary
In existing technologies, using screws to fix objects makes assembly difficult and disassembly challenging, hindering rapid assembly and separation.
Employing a conductive structure, the device enables rapid connection and separation of at least two objects through the fastening or unfastening of the moving part and the body. It utilizes elastic components to provide elasticity and operating parts for assembly, and combines CNC or milling machined assembly and fastening parts to achieve rapid and repeated connection and separation.
It enables rapid connection and separation of at least two objects, solving the problems of difficult assembly and disassembly, and features easy assembly and repeated use.
Smart Images

Figure CN120926331A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a conductive structure, and more particularly to a conductive structure that can be used to repeatedly and rapidly connect and disconnect at least two objects. Background Technology
[0002] When connecting at least one object, screws are typically used for locking to ensure the connection between the objects.
[0003] While the commonly used fixing method can fix at least one object in a way that is not easy to separate, in addition to making assembly difficult, the fixing and connection method of the screws will also make at least one object difficult to disassemble.
[0004] In view of the aforementioned well-known technologies, the inventor has developed a conductive structure that allows the body to fasten or unfasten to an object or another body part through a moving part, so as to complete the rapid connection and separation of at least two objects, thereby achieving the effect of repeated rapid connection and separation. Summary of the Invention
[0005] The conductive structure of the present invention allows the body to fasten or unfasten with an object or another body part through the moving part, so as to complete the rapid connection and separation of at least two objects, thereby achieving the effect of repeated rapid connection and separation.
[0006] To achieve the above and other objectives, the present invention provides a conductive structure comprising: a body and at least one movable part. The movable part is movably combined with the body, or the movable part is used to fasten an object or another body part.
[0007] The present invention provides another conductive structure, comprising: a body and at least one movable part. The body is provided with at least one connecting part; the movable part is movably combined with the body, and the movable part is provided with at least one fastening part combined with the connecting part, and the fastening part fastens an object or another body part.
[0008] The present invention provides another method for conducting a conductive structure, the conductive structure including a body and a moving part, the moving part being movably combined with the body, the moving part engaging with a set of connecting parts and a connecting part of the body via a fastening part, the moving part being further combined with the body via an operating part and an elastic component, or the operating part being combined with the moving part via a connecting member, and then combined with the elastic component and the body.
[0009] The present invention provides another method for conducting a conductive structure, the conductive structure including a body and a moving part, the moving part being movably combined with the body, the body being docked with another body to connect the flow channels of the body and the other body or to connect fluid, or the fluid being liquid, gas or oil.
[0010] The present invention provides another method for conducting a conductive structure, the conductive structure comprising a body and a moving part, the moving part being movably combined with the body, the body being a fluid connector or quick-release connector for connecting a server, computer, IC, chip, conductor, motherboard, data center or chip.
[0011] The present invention provides another method for conducting a conductive structure, the conductive structure including a body and a moving part, wherein another connecting part of the moving part is connected to the connecting part of the body, and another set of connecting parts is combined with a set of connecting parts of the body through the moving space of the moving part, so that the moving part and the body can be movably combined.
[0012] This invention provides another method for constructing a conductive structure, the conductive structure comprising a body and a moving part, the moving part being movably combined with the body; or the moving part being movably combined with the body or another body; wherein the body or the other body has a flow channel, the body or the other body being used for injecting liquid material into a mold and then solidifying it, or the body or the other body being used for injecting liquid material into the mold and then cooling and solidifying it, or the mold being composed of multiple modules to form the body or the other body, or the mold or each module blocking the flow channel to prevent liquid material from flowing through the flow channel to form the flow channel, or the mold having at least one flow path to allow liquid material to enter the mold to form the body or the other body, or wherein the liquid material is a metal, a non-metal, or a plastic material.
[0013] This invention provides another method for establishing a conductive structure, the conductive structure comprising a body and a moving part, wherein the moving part is movably combined with the body; or the moving part or the body is movably combined with another body; wherein the body or the other body is formed into a mounting part during liquid injection by means of a mold stop, and a limiting body is mounted on the mounting part after forming, so that the limiting body limits the elastic member and the stop to elastically move, or the limiting body is equipped with a stop part to limit the elastic member and the stop, or the limiting body is an elastic body for... The device may be fastened to the mounting portion, or the mounting portion may be a hole, groove, recess, or protrusion, or the body portion or the other body portion may have a mounting portion, the mounting portion may be equipped with a limiting body to limit the elastic member and the stop body to move elastically, or the limiting body may be equipped with a stop to limit the elastic member and the stop body, or the limiting body may be an elastic body to fasten to the mounting portion, or the mounting portion may be a hole, groove, recess, or protrusion, or the structure of the limiting body may allow fluid passing through the body portion or object or the other body portion to pass through.
[0014] This invention provides another method for establishing a conductive structure. The conductive structure includes a body and a moving part, which are movably combined with the body. The body has an embedded portion for placement into a mold for liquid injection molding of the body. Alternatively, a fluid-blocking device may be provided at the location of the embedded portion. The embedded portion may be made of metal, the body of plastic, or the fluid-blocking device may be an O-ring, rubber, a non-metallic material, or a fluid-blocking material. Two fluid-blocking devices may be used. Alternatively, the embedded portion may be placed into a mold for liquid injection molding of the body, and a fluid-blocking device may be provided at the location of the embedded portion. Or, the conductive structure may have another body that is connected to the body to block the fluid. Used to prevent liquid from flowing out or overflowing through the body and another body, or wherein the body has an embedded part, or a fluid-blocking part is provided at the setting part of the embedded part, or wherein the embedded part is made of metal or plastic, or the body is made of plastic or metal, or the fluid-blocking part is an O-ring, rubber, non-metallic material, or a material that can block fluid, or the embedded part is used to be placed in a mold and then liquid injection molded into the body and the fluid-blocking part is provided at the setting part of the embedded part, or the embedded part is used to be placed into a solid body for assembly, or the fluid-blocking part is provided at the setting part of the embedded part, or the other body is connected to the body, and the fluid-blocking part is used to prevent liquid from flowing out or overflowing through the body and the other body.
[0015] Optionally, the moving part is provided with an operating part, which is connected to the moving part by a connecting member, or the operating part is first snapped or fastened to the moving part and then connected by a connecting member.
[0016] Optionally, an elastic component is provided between the moving part and the body, the elastic component providing elasticity or elasticity for movement fastening.
[0017] Optionally, the body is provided with a docking part, which docks with the moving part, or the docking part is a sectional edge, a sectional groove, a slot, or a hole.
[0018] Optionally, the body is provided with at least one connecting part, the moving part is provided with at least one fastening part combined with the connecting part, or the fastening part is a hole or a groove.
[0019] Optionally, the number of the connecting parts is one or two, and each connecting part is respectively connected to one or two fastening parts of the moving part.
[0020] Optionally, the body or the moving part may be made of metal, non-metal, plastic, metal with an electroplated surface, or metal with heat treatment to increase elasticity.
[0021] Optionally, the fastening part is provided with an inclined surface, which is used to fasten or move in accordance with the inclined surface of the other body part or the inclined surface of another object.
[0022] Optionally, the fastening part is a column, a curved surface, a sheet, or an inclined surface.
[0023] Optionally, the connecting part is a hole or a groove.
[0024] Optionally, the connecting part or the fastening part is machined into a hole or groove by CNC machining, lathe machining or milling.
[0025] Optionally, the moving part is provided with an entry part for the other body part to enter.
[0026] Optionally, the body is provided with a docking part, and the moving part is provided with another docking part, and the docking part and the other docking part dock with each other.
[0027] Optionally, the mating portion or the other mating portion may be a rib, a hole, or a groove.
[0028] Optionally, the moving part is provided with a movement space, and is connected to the body part via another connection part through the movement space, so that the moving part is connected or moves within the body part.
[0029] Optionally, the moving part is a sphere, a protrusion, a concave body, a hook, a snap fastener, a spring-loaded snap fastener, or an elastic body; or the moving part is the snap fastening part; or the moving part and the snap fastening part are integrally formed or assembled; the snap fastening part is a sphere, a protrusion, a concave body, a hook, a spring-loaded snap fastener, or an elastic body; or the assembly part is a riveting part, an expansion part, a locking part, a welding part, a hole, a groove, a protrusion, a concave body, or an object with a head; or the assembly part or the snap fastening part is injection molded, in-mold injection molded, metal injection molded, or plastic injection molded; or the snap fastening part is a sphere, a protrusion, a concave body, a hook, a spring-loaded snap fastener, or an elastic body; or the body or object or another body is used for fluid flow; or the fluid is water, coolant, oil, gas, or gas flow.
[0030] Optionally, the moving part is provided with an elastic retraction space, which is used to allow another connecting part of the moving part to retract and fasten to the connecting part.
[0031] Optionally, the elastic retraction space is a groove, a hole, an open groove, or a closed groove.
[0032] Optionally, the connecting part is provided with a movement space, which is connected to another connecting part of the moving part for movably connecting the moving part.
[0033] Optionally, the body is provided with a stop portion for fastening the object between the fastening portion and the stop portion.
[0034] Optionally, the body is provided with a flow channel, and there is a floating space between the flow channel and the body, so that the body can float and align itself when docking with an object.
[0035] Optionally, there is a floating space between the body and the object, which allows the body to float and align with the object for docking.
[0036] Optionally, the body is equipped with a fluid quick-release connector or flow channel, the flow channel being connected to a heat sink or a heat generator to remove or reduce the heat source, the heat sink or the heat generator being located in a server, computer, data center or storage device, or the conductive structure being a quick-release connector or a fluid quick-release connector.
[0037] Optionally, the fastening part is provided with an operating part, which is used to operate the fastening part, or for the object to be fastened or limited between the fastening part and the operating part.
[0038] Optionally, the body is provided with a flow channel, and an elastic component or a limiting body is provided between the body and the flow channel. The elastic component and the limiting body are used to elastically limit the flow channel within the body, or there is a floating space between the body and the limiting body, or there is a floating space between the elastic component and the body, or there is a floating space between the elastic component and the flow channel.
[0039] Optionally, the body or the flow channel may be a pipe, a pipeline, a quick connector, a liquid quick-release connector, a water-cooled liquid quick-release connector, a floating pipe, a floating connector, a metal body, a non-metal body, a fastener, an elastic body, a floating body, a baffle, or a fluid channel.
[0040] Optionally, the connecting part is connected to the object, or the connecting part is provided with an anti-rotation part, which is used to prevent rotation of the object or limit its direction.
[0041] Optionally, the number of the body parts is two, each body part is provided with a baffle, and the baffles push against each other to open the flow channel of each body part respectively, so that the fluid flows in the flow channel of each body part, or the two bodies parts are quick-release connectors or liquid quick-release connectors.
[0042] Optionally, the body is provided with a docking part, which is an anti-rotation structure to prevent the docking part from rotating with the moving part.
[0043] Optionally, the connecting part is a groove, recess, protrusion, snap-fit, open space, or open structure, used to provide a moving part or a snap-fit part of the moving part.
[0044] Optionally, the body is provided with a joint, and the body is provided with the moving part and assembled with the joint by a combination part to limit the moving part, or the combination part is an external thread body, an internal thread body, a spring snap body, a thread body, a snap body, a C-shaped snap, a ring body, a riveting body, a welding body, or a riveting body.
[0045] Optionally, the body is provided with a docking part, and the moving part is provided with another docking part. The moving part enters the body through the other docking part, so that the moving part is fastened to the fastening part of the body by a snap fastener. Alternatively, the fastening part is an open structure, or the snap fastener passes over or through the flow channel of the body and then fastens to the fastening part.
[0046] Optionally, the body or the other body portion has a flow channel, the body or the other body portion is used for injecting liquid material into the mold and then solidifying it, or the body or the other body portion is used for injecting liquid material into the mold and then cooling and solidifying it, or the mold is composed of multiple modules combined to form the body or the other body portion, or the mold or each module blocks the position of the flow channel to prevent liquid material from flowing through the flow channel to form the flow channel, or the mold has at least one flow path to allow liquid material to enter the mold to form the body or the other body portion, or wherein the liquid material is a metallic material, a non-metallic material, or a plastic material.
[0047] Optionally, the body or the other body is formed into a device portion during liquid injection by the mold stop, and a limiting body is installed on the device portion after forming, so that the limiting body limits the elastic member and the stop to move elastically, or the limiting body is equipped with a stop portion to limit the elastic member and the stop, or the limiting body is an elastic body to snap into the device portion, or the device portion is a hole, groove, recess or protrusion.
[0048] Optionally, the body or the other body has a mounting portion, the mounting portion is equipped with a limiting body for limiting the elastic member and the stop body to move elastically, or the limiting body is equipped with a stop portion for limiting the elastic member and the stop body, or the limiting body is an elastic body for fastening into the mounting portion, or the mounting portion is a hole, groove, recess or protrusion, or the structure of the limiting body allows fluid passing through the body or object or the other body to pass through.
[0049] Optionally, the body is provided with an embedded part for being placed in a mold for liquid injection molding of the body, or a fluid barrier is provided at the setting part of the embedded part, or the embedded part is made of metal, or the body is made of plastic, or the fluid barrier is an O-ring, rubber, non-metallic material, or a material that can block fluid, or the number of fluid barriers is two, or the embedded part is placed in a mold for liquid injection molding of the body and then the fluid barrier is provided at the setting part of the embedded part, or the other body part is connected to the body part, and the fluid barrier is used to prevent liquid flowing through the body part and the other body part from flowing out or overflowing.
[0050] Optionally, the body is provided with an embedded part, or a fluid-blocking part is provided at the setting part of the embedded part, or the embedded part is made of metal or plastic, or the body is made of plastic or metal, or the fluid-blocking part is an O-ring, rubber, non-metallic material, or a material that can block fluid, or the number of fluid-blocking parts is two, or the embedded part is used to be placed in a mold for liquid injection molding of the body, and then the fluid-blocking part is provided at the setting part of the embedded part, or the embedded part is used to be placed in a solid body for assembly molding, or the fluid-blocking part is provided at the setting part of the embedded part, or the other body part is connected to the body part, and the fluid-blocking part is used to prevent the liquid flowing through the body part and the other body part from flowing out or overflowing. Attached Figure Description
[0051] 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.
[0052] Figure 1 This is a schematic diagram of the disassembled state of the first embodiment of the present invention.
[0053] Figure 2 This is a cross-sectional schematic diagram of the first embodiment of the present invention.
[0054] Figure 3 This is a schematic diagram of the first embodiment of the moving part of the present invention.
[0055] Figure 4 This is a schematic diagram of a second embodiment of the moving part of the present invention.
[0056] Figure 5 This is a schematic diagram of the usage state of the first embodiment of the present invention. Figure 1 .
[0057] Figure 6 This is a schematic diagram of the usage state of the first embodiment of the present invention. Figure 2 .
[0058] Figure 7 This is a cross-sectional schematic diagram of the second embodiment of the present invention.
[0059] Figure 8 This is a schematic diagram of the disassembled state of the third embodiment of the present invention.
[0060] Figure 9 This is a cross-sectional view of the third embodiment of the present invention. Figure 1 .
[0061] Figure 10 This is a cross-sectional view of the third embodiment of the present invention. Figure 2 .
[0062] Figure 11 This is a front view schematic diagram of the third embodiment of the present invention.
[0063] Figure 12 This is a schematic diagram of the usage state of the third embodiment of the present invention.
[0064] Figure 13 This is a schematic diagram of another type of connection of the present invention.
[0065] Figure 14 This is a schematic diagram of the body according to the third embodiment of the present invention.
[0066] Figure 15 This is a schematic diagram of the disassembled state of the fourth embodiment of the present invention.
[0067] Figure 16 This is a front view schematic diagram of the fourth embodiment of the present invention.
[0068] Figure 17 This is a schematic diagram of the usage state of the fourth embodiment of the present invention.
[0069] Figure 18 This is a front view schematic diagram of the fifth embodiment of the present invention.
[0070] Figure 19 This is a schematic diagram of the body according to the fifth embodiment of the present invention.
[0071] Figure 20 This is a schematic diagram of the moving part of the fifth embodiment of the present invention. Figure 1 .
[0072] Figure 21 This is a schematic diagram of the moving part of the fifth embodiment of the present invention. Figure 2 .
[0073] Figure 22 This is a cross-sectional schematic diagram of the fifth embodiment of the present invention.
[0074] Figure 23 This is a schematic diagram of the view from the sixth embodiment of the present invention.
[0075] Figure 24 This is a cross-sectional schematic diagram of the sixth embodiment of the present invention.
[0076] Figure 25 This is a schematic diagram of the body according to the sixth embodiment of the present invention.
[0077] Figure 26 This is a schematic diagram of the usage state of the sixth embodiment of the present invention.
[0078] Figure 27 This is a schematic diagram of the usage state of the seventh embodiment of the present invention.
[0079] Figure 28 This is a schematic diagram of the usage state of the eighth embodiment of the present invention.
[0080] Figure 29 This is a schematic diagram of the usage state of the ninth embodiment of the present invention.
[0081] Figure 30 This is a schematic diagram of the usage state of the tenth embodiment of the present invention. Figure 1 .
[0082] Figure 31 This is a schematic diagram of the usage state of the tenth embodiment of the present invention. Figure 2 .
[0083] Figure 32 This is a schematic diagram of the usage state of the eleventh embodiment of the present invention.
[0084] Figure 33 This is a schematic diagram of the usage state of the thirteenth embodiment of the present invention. Figure 1 .
[0085] Figure 34 This is a schematic diagram of the usage state of the thirteenth embodiment of the present invention. Figure 2 .
[0086] Figure 35 This is a schematic diagram of the usage state of the fourteenth embodiment of the present invention. Figure 1 .
[0087] Figure 36 These are schematic diagrams showing different configurations of the assembly part of the present invention.
[0088] Figure 37 This is a schematic diagram of the usage state of the fifteenth embodiment of the present invention. Figure 1 .
[0089] Figure 38 This is a schematic diagram of the usage state of the fifteenth embodiment of the present invention. Figure 2 .
[0090] Figure 39 This is a schematic diagram of the body's appearance in the sixteenth embodiment of the present invention.
[0091] Figure 40 This is an exploded schematic diagram of the body in the sixteenth embodiment of the present invention.
[0092] Figure 41 This is a cross-sectional view of the body in the sixteenth embodiment of the present invention. Figure 1 .
[0093] Figure 42 This is a schematic diagram of the appearance of another body part in the sixteenth embodiment of the present invention.
[0094] Figure 43 This is a schematic cross-sectional view of another body part in the sixteenth embodiment of the present invention. Figure 1 .
[0095] Figure 44 This is a schematic cross-sectional view of another body part in the sixteenth embodiment of the present invention. Figure 2 .
[0096] Figure 45 This is a cross-sectional view of the sixteenth embodiment of the present invention in use. Figure 1 .
[0097] Figure 46 This is a cross-sectional view of the sixteenth embodiment of the present invention in use. Figure 2 .
[0098] Figure 47 This is a schematic diagram of the molding method of the body of the present invention. Figure 1 .
[0099] Figure 48 This is a schematic diagram of the molding method of the body of the present invention. Figure 2 .
[0100] Figure 49 This is a schematic diagram of the molding method of another body part of the present invention. Figure 1 .
[0101] Figure 50 This is a schematic diagram of the molding method of another body part of the present invention. Figure 2 .
[0102] Figure label:
[0103] 1. Conductive structure;
[0104] 11. Body;
[0105] 110. Joint;
[0106] 1101. Assembly Section;
[0107] 1102. Fastening part;
[0108] 1103. Buried part;
[0109] 1104. Setting up the department;
[0110] 1105. Fluid blocking;
[0111] 1106. Another flexible component;
[0112] 111. Assembly / Connection Section;
[0113] 112. Docking section;
[0114] 113. Movement space;
[0115] 114. Blocking part;
[0116] 115. Flow channel;
[0117] 116. Quick-release fluid coupling;
[0118] 117. Limiting body;
[0119] 118. Prevention and control of the transfer of vehicles;
[0120] 119. Blocking body;
[0121] 12. Sports Department;
[0122] 120. Snap-lock mechanism;
[0123] 121. Fastening part;
[0124] 122. Operations Department;
[0125] 123. Assembly components;
[0126] 124. Incline;
[0127] 125. Another docking part;
[0128] 126. Movement space;
[0129] 127. Another set of joints;
[0130] 128. Entry Section;
[0131] 129. Elastic retraction space;
[0132] 13. Flexible components;
[0133] 14. Operations Department;
[0134] 15. Opposing part;
[0135] 10. The other part of the body;
[0136] 101. Incline;
[0137] 102. Detained part;
[0138] 103. Flow channel;
[0139] 104. Blocking body;
[0140] 105. Installation Department;
[0141] 106. Limiting body;
[0142] 1061. Channel;
[0143] 107. Elastic components;
[0144] 108. Block;
[0145] 1081, Channel;
[0146] 20. Object;
[0147] 21. Another object;
[0148] 211. Button bevel;
[0149] 30. Heat sink;
[0150] 40. Heating element;
[0151] 50. Mold;
[0152] 501. Flow path;
[0153] 502, Module;
[0154] 503, Module;
[0155] 504, Module;
[0156] 505, Module;
[0157] 506, Module;
[0158] 507, Module;
[0159] 508, Module;
[0160] 509. Module;
[0161] a1. Floating space;
[0162] a2. Floating space;
[0163] a3. Floating space;
[0164] a4. Floating space;
[0165] a5. Floating space. Detailed Implementation
[0166] The conductive structure of the present invention will be further described below with reference to the accompanying drawings.
[0167] 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.
[0168] Please see Figures 1 to 6 As shown in the figure: The present invention provides a conductive structure and a conductive method thereof. The conductive structure 1 includes a body 11 and at least one moving part 12.
[0169] The moving part 12 and the body part 11 can be movably combined; the body part 11 can be fastened or unfastened with another body part 10 (or object) by means of the moving part 12, so as to complete the rapid connection and separation of at least two objects, and achieve the purpose of repeated rapid connection and separation.
[0170] In one embodiment of the present invention, the body 11 is provided with at least one connecting part 111; and the moving part 12 is movably combined with the body 11, and the moving part 12 is provided with at least one fastening part 121 combined with the connecting part 111, so that the body 11 can be connected with the other body 10 (or object), and the fastening part 121 can fasten (or unfasten) the fastened part 102 of the other body 10, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation.
[0171] In one embodiment of the present invention, the moving part 12 is provided with an operating part 122, which is connected to the moving part 12 by a connecting member 123 (e.g., a bolt). Force is applied to the operating part 122 to drive the fastening part 121 of the moving part 12 to fasten (or unfasten) the other body part 10.
[0172] In one embodiment of the present invention, an elastic component 13 is provided between the moving part 12 and the body 11. The elastic component 13 provides the elastic force required by the moving part 12 or the elastic force when the movement is fastened. In this embodiment of the present invention, the body 11 is located between the operating part 122 and the operating part 122. Furthermore, through the compression and reset of the elastic component 13, the operating part 122 drives the fastening part 121 to have the effect of automatic reset when fastening (or unfastening).
[0173] In one embodiment of the present invention, the body 11 or the moving part 12 may be provided with a pair of alignment parts 15 simultaneously or separately, and the elastic component 13 is disposed on the alignment part 15; thus, the alignment part 15 can maintain the stability of the elastic component 13 during operation.
[0174] In one embodiment of the present invention, the fastening part 121 is provided with an inclined surface 124, which is used to fasten or move in correspondence with the inclined surface 101 of the other body part 10 (or the inclined surface of another object); in this way, the moving part 12 and the other body part 10 can be easily assembled by the inclined surface 124 of the fastening part 121 and the inclined surface 101 of the other body part 10.
[0175] In one embodiment of the present invention, when in use, the body 11 and the other body 10 can be fastened together, and the body 11 and the other body 10 can be used as a guide fluid; thus, the present invention can better meet the needs of actual manufacturing and use.
[0176] In one embodiment of the present invention, the moving part 12 may be a sphere, a convex body, a concave body, a hook, a buckle, a spring buckle, or an elastic body, or the moving part 12 may be a fastening part, or the moving part 12 and the fastening part 121 may be integrally formed or assembled, and the fastening part 121 may be a sphere, a convex body, a concave body, a hook, a spring buckle, or an elastic body; thus, the present invention can better meet the needs of actual manufacturing and use.
[0177] In one embodiment of the present invention, the connecting part 111 and the fastening part 121 can be made into holes or grooves, cylinders, curved surfaces, sheets or inclined surfaces by means of CNC machining, lathe machining or milling machine machining as needed; in this way, the connecting part 111 and the fastening part 121 can better meet the actual manufacturing and use requirements.
[0178] In one embodiment of the present invention, the body 11 and the moving part 12 may be metal, non-metal, plastic, metal with an electroplated surface, or metal with heat treatment to increase elasticity; thus, the body 11 and the moving part 12 can better meet the actual manufacturing and use requirements.
[0179] In one embodiment of the present invention, in the conduction method provided by the present invention, the moving part 12 is movably combined with the body 11, such that the moving part 12 engages with the assembly part 111 of the body 11 via the fastening part 121, and the operating part 122 is combined with the moving part 12 via the assembly member 123, and then combined with the elastic component 13 and the body 11; thereby making the conduction structure 1 easy to assemble.
[0180] Please see Figure 7As shown in the figure: In one embodiment of the present invention, the number of the connecting part 111 and the fastening part 121 can be two (or one), so that each connecting part 111 of the body 11 is respectively connected to each fastening part 121 of the moving part 12; in this way, the body 11 and the moving part 12 can have better stability to meet the needs of actual operation.
[0181] Please see Figures 8 to 14 As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a docking part 112, which docks with the moving part 12, and the moving part 12 is provided with another docking part 125, which docks with each other; in this way, the body 11 can also be connected or unconnected with the other body 10 (or object) by means of the moving part 12, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation.
[0182] In one embodiment of the present invention, the moving part 12 is provided with a moving space 126, and is combined with the body part 111 via the moving space 126 by another connecting part 127, so that the moving part 12 is combined or moves in the body part 11.
[0183] In one embodiment of the present invention, the moving part 12 is provided with an entry part 128 for the other body part 10 to enter; in this way, the body part 11 can also be connected or unconnected with the other body part 10 (or object) by the moving part 12, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation.
[0184] In one embodiment of the present invention, the other connecting portion 127 is a riveted body (e.g., Figure 13 Part a), extender (such as Figure 13 Part b), locking body (such as Figure 13 The other assembly part 127 can be injection molded, in-mold injection molded, metal injection molded, or plastic injection molded, or the fastening part 121 can be a sphere, protrusion, concave body, hook, spring-loaded body, or elastic body; thus, the other assembly part 127 can better meet the actual manufacturing and use requirements.
[0185] In one embodiment of the present invention, the mating portion 112 and the other mating portion 125 may be a rib, a side edge, a groove, a hole, or a slot (e.g., Figure 14(as shown); thus, the docking part 112 and the other docking part 125 can better meet the actual manufacturing and use requirements.
[0186] In one embodiment of the present invention, in the conduction method provided by the present invention, the moving part 12 is movably combined with the body 11, such that the moving part 12 connects with the assembly part 111 and the docking part 112 of the body 11 via the fastening part 121, and the moving part 12 is further combined with the body 11 via the operating part 122 and the elastic component 13; thereby making the conduction structure 1 easy to assemble.
[0187] Please see Figures 15 to 17 As shown in the figure: In one embodiment of the present invention, the moving part 12 is provided with an elastic retraction space 129. The elastic retraction space 129 is used to allow the other connecting part 127 of the moving part 12 to retract and fasten to the connecting part 111 of the body part 11. In this way, the body part 11 can also be fastened or unfastened with the moving part 12 and the other body part 10 (or object) as required, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation.
[0188] In one embodiment of the present invention, the elastic retraction space 129 may be a groove, a hole, an open groove, or a closed groove; thus, the elastic retraction space 129 can better meet the needs of actual manufacturing and use.
[0189] Please see Figures 18 to 22 As shown in the figure: In one embodiment of the present invention, the connecting part 111 of the body 11 is provided with a movement space 113. The movement space 113 of the connecting part 111 is connected to another connecting part 127 of the moving part 12, so as to allow the body 11 to move and connect to the moving part 12. In this way, the body 11 can also be connected or unconnected to the other body 10 (or object) with the moving part 12 as required, so as to complete the rapid connection and separation of at least two objects, and achieve the purpose of repeated rapid connection and separation.
[0190] In one embodiment of the present invention, in the communication method provided by the present invention, the communication structure 1 can connect another docking portion 125 of the moving part 12 to the docking portion 112 of the body part 11, and combine the other connecting portion 127 with the connecting portion 111 of the body part 11 via the movement space 113 of the moving part 12, so that the moving part 12 and the body part 11 can be movably combined; thereby making the communication structure 1 easy to assemble.
[0191] Please see Figures 23 to 26As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a stop portion 114 for the object 20 to be fastened between the fastening portion 121 and the stop portion 114; in this way, the body 11 can also be fastened or unfastened with the object 20 (or another body part) by means of the moving portion 12, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation.
[0192] In one embodiment of the present invention, the body 11 is provided with a flow channel 115, a floating space a1 is provided between the flow channel 115 and the body 11, and a floating space a2 is provided between the body 11 and the object 20; thus, the flow channel 115, the body 11 and the object 20 have the function of floating (or fine adjustment) during operation and use through the floating spaces a1 and a2, so as to meet the needs of actual use and assembly.
[0193] In one embodiment of the present invention, in the conduction method provided by the present invention, the body 11 is connected to the other body 10 to connect the flow channel 115 of the body 11 and the other body 10, the flow channel 115 being connected to a fluid, or the fluid being a liquid, gas or oil; thus, the present invention can better meet the needs of practical applications.
[0194] Please see Figure 27 and Figure 28 As shown in the figure: In one embodiment of the present invention, the body 11 is connected to a fluid quick-release connector 116, the fluid quick-release connector 116 is provided with a flow channel 115, the flow channel 115 is connected to a fluid (e.g., liquid, gas or oil), and the flow channel 115 connects the heat sink 30 and the heating element 40, so that the flow channel 115 cooperates with the fluid to remove the heat source of the heat sink 30 (or the heating element 40) or reduce the heat source; thus, the conductive structure 1 can be used to connect the heat sink 30.
[0195] In one embodiment of the present invention, the fastening part 121 is provided with an operating part 14, which is used to operate the fastening part 121 so that the object 20 is fastened (or limited) between the fastening part 121 and the operating part 14; in this way, the object 20 can be securely connected to the body 11.
[0196] In one embodiment of the present invention, the body 11 may be a fluid connector or quick-release connector for connecting a server, computer, IC, chip, conductor, motherboard, data center, or chip, and the heat sink 30 or the heat generator 40 may be disposed on the server, computer, IC, chip, conductor, motherboard, data center, or storage device, or the conductive structure 1 may be a quick-release connector or a fluid quick-release connector; thus, the present invention can better meet the needs of practical applications.
[0197] Please see Figure 29 As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a flow channel 115, and an elastic component 13 and a limiting body 117 are provided between the body 11 and the flow channel 115. The elastic component 13 and the limiting body 117 are used to elastically limit the flow channel 115 within the body 11; thus, the conductive structure 1 can be used to conduct the object 20 through the body 11 and to guide the fluid through the flow channel 115.
[0198] In one embodiment of the present invention, there is a floating space a3 between the body 11 and the limiting body 117, a floating space a4 between the elastic component 13 and the body 11, and a floating space a5 between the elastic component 13 and the flow channel 115; thus, the floating spaces a3, a4, and a5 enable the body 11, the limiting body 117, and the flow channel 115 to have a floating (or fine-tuning) function during operation and use, so as to meet the needs of actual application and assembly.
[0199] In one embodiment of the present invention, the flow channel 115 (or the body 11) may be a pipe, a pipeline, a quick connector, a liquid quick-release connector, a water-cooled liquid quick-release connector, a floating pipe, a floating connector, a metal body, a non-metal body, a fastener, an elastic body, a floating body, a baffle, or a fluid channel; thus, the present invention can better meet the needs of practical applications.
[0200] Please see Figure 30 and Figure 31 As shown in the figure: In one embodiment of the present invention, the assembly portion 111 of the body 11 can be assembled with the object 20, so that another object 21 can be connected and communicated with the moving part 12 through the assembly portion 111 of the body 11, and the moving part 12 and the other object 21 can be easily assembled through the inclined surface 124 of the fastening portion 121 and the fastening inclined surface 211 of the other object 21; in this way, the body 11 can be fastened or unfastened with the other object 21 through the moving part 12, so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation; thus, the present invention can better meet the needs of practical application.
[0201] In one embodiment of the present invention, the connecting part 111 is provided with an anti-rotation part 118, which can be used to prevent the object 20 from rotating or to limit its direction; thus, the present invention can better meet the needs of practical applications.
[0202] Please see Figure 32 As shown in the figure: In one embodiment of the present invention, there are two bodies 11, and each body 11 is provided with a baffle 119. The baffles 119 push against each other to open the flow channel 115 of each body 11, so that the fluid flows in the flow channel 115 in each body 11. Alternatively, the two bodies 11 can be quick-release connectors or liquid quick-release connectors. In this way, the present invention can better meet the needs of practical applications.
[0203] Please see Figure 33 and Figure 34 As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a docking part 112, which can be an anti-rotation structure to prevent the docking part 112 from rotating with the moving part 12; thus, the present invention can better meet the needs of practical application.
[0204] In one embodiment of the present invention, the connecting portion 111 may be a groove, a recess, a protrusion, a snap fastener, an open space, or an open structure, so that the connecting portion 111 is provided with the snap fastener 121 of the moving portion 12; thus, the present invention can better meet the needs of practical applications.
[0205] Please see Figure 35 and Figure 36 As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a connecting portion 110, and the body 11 is provided with the moving part 12 and is assembled with the connecting portion 1101 to limit the moving part 12; in this way, the present invention can better meet the needs of practical application.
[0206] In one embodiment of the present invention, the assembly portion 1101 may be an externally threaded body (such as...). Figure 36 Part a), internal thread body (such as Figure 36 Part b), the snap fastener (such as...) Figure 36 (part c), threaded body, snap body, C-shaped snap, ring body, riveted body, welded body or riveted body; thus, the present invention can better meet the needs of practical application.
[0207] Please see Figure 37 and Figure 38As shown in the figure: In one embodiment of the present invention, the body 11 is provided with a docking portion 112, and the moving part 12 is provided with another docking portion 125. The moving part 12 enters the body 11 through the other docking portion 125, so that the moving part 12 is fastened to the fastening portion 1102 of the body 11 by a spring-loaded fastening portion 120, or the fastening portion 1102 is an open structure, or the spring-loaded fastening portion 120 passes over or through the flow channel 115 of the body 11 and then fastens to the fastening portion 1102; in this way, the present invention can better meet the needs of practical application.
[0208] Please see Figures 39 to 46 As shown in the figure: In one embodiment of the present invention, the body 11 and the other body 10 may respectively have flow channels 115 and 103. The moving part 12 is movably connected to the other docking part 125 and the docking part 112 of the body 11, and the moving part 12 is movably assembled to the body 11 by the connecting member 123. In this embodiment of the present invention, the moving part 12 is snapped or fastened to the operating part 122 and then assembled by the connecting member 123, so that the body 11 and the other body 10 can be assembled, and the... The fastening part 121 fastens (or unfastens) the fastened part 102 of the other body part 10, and the inclined surface 124 of the fastening part 121 is made to fasten or move in accordance with the inclined surface 101 of the other body part 10, so that the body part 11 and the baffles 119 and 104 in the other body part 10 push against each other to open the flow channels 115 and 103 of the coolant; so as to complete the rapid connection and separation of at least two objects, thereby achieving the purpose of repeated rapid connection and separation, and making the moving part 12 and the other body part 10 easy to assemble.
[0209] In one embodiment of the present invention, the other body portion 10 is provided with at least one mounting portion 105, a limiting body 106, an elastic member 107, and a stop 104. The mounting portion 105 mounts the limiting body 106 so that the limiting body 106 limits the elastic member 107 and the stop 104 to move elastically. The limiting body 106 is equipped with a stop 108 to limit the elastic member 107 and the stop 104. The limiting body 106 and the stop 108 respectively have channels 1061 and 1081 so that the structure of the limiting body 106 allows passage through the body portion 11 and the other body portion 10 (where the limiting body 106 is located). The fluid passes through the object 20, causing the baffle 119 in the body 11 and the baffle 104 in the other body 10 to push against each other and compress the other elastic component 1106 and the elastic element 107, thereby opening the fluid channels 115 and 103 so that the channels 115 and 103 cooperate with each channel 1061 and 1081 to conduct the required fluid, wherein the fluid is water, coolant, oil, gas or gas flow; so as to complete the rapid combination, conduction and separation of at least two objects, thereby achieving the purpose of repeated rapid combination, conduction and separation, and making the moving part 12 and the other body 10 easy to assemble.
[0210] Please see Figures 47 to 50As shown in the figure: In one embodiment of the present invention, the body 11 and the other body 10 may respectively have flow channels 115 and 103, and the body 11 and the other body 10 are respectively used for injecting liquid material into the mold 50 and then solidifying it (e.g., cooling and solidifying). The mold 50 has at least one flow path 501 for allowing liquid material to enter the mold 50 to form the body 11 or the other body 10. The mold 50 is combined in a manner using multiple modules 502, 503, 504, 505, 506, 507, 508, and 509 to form the body 11 and the other body 10. In the present invention, the mold 50 can be formed by using four different modules 502, 503, 504, 505, 506, 507, 508, and 509. Modules 503, 504, and 505 are combined to form the body 11, and the flow path 501 can be provided in the required modules 502, 503, 504, and 505; and four other different modules 506, 507, 508, and 509 are combined to form the other body 10, and the flow path 501 can be provided in the required modules 506, 507, 508, and 509, so that each module 502, 503, 504, 505, 506, 507, 508, and 509 blocks the positions of the flow channels 115 and 103 to prevent liquid material from flowing through the positions of the flow channels 115 and 103 to form the flow channels 115 and 103, or the liquid material is a metal, a non-metal, or a plastic material. In this way, after the liquid material is injected into the mold 50 through the flow path 501 and cooled and solidified, the modules 502, 503, 504, 505, 506, 507, 508, and 509 are demolded to form the body 11 and the other body 10.
[0211] In one embodiment of the present invention, the body 11 (or the other body 10) is provided with an embedded portion 1103. The embedded portion 1103 is used to be placed into the mold 50 before liquid injection molding of the body 11 (or the other body 10). A fluid-blocking 1105 is provided at the setting portion 1104 of the embedded portion 1103. The embedded portion 1103 may be made of metal, the body 11 (or the other body 10) may be made of plastic, and the fluid-blocking 1105 may be an O-ring, a rubber material, a non-metallic material, or a material that can block fluid, such as... Figure 47 The body 11 is in a form where the embedded part 1103 is not provided, while Figure 48 The body 11 is provided with the embedded part 1103; in addition, the embedded part 1103 can also be assembled into a solid body 11.
[0212] In one embodiment of the present invention, there are two fluid blocking parts 1105. The embedded part 1103 is used to be placed in the mold 50 and then liquid injection molded into a body. The fluid blocking parts 1105 are then set in the setting part 1104 of the embedded part 1103, so that the other body part 10 is connected to the body part 11, and the fluid blocking parts 1105 are used to block the liquid flowing through the body part 11 and the other body part 10 from flowing out or overflowing.
[0213] In one embodiment of the present invention, the other body 10 (or the body 11) is formed into the mounting portion 105 during liquid injection by the stop of the mold 50, so that the limiting body 106 is mounted on the mounting portion 105 after forming. The limiting body 106 may be an elastic body for fastening into the mounting portion 105, so that the limiting body 106 limits the elastic member 107 and the stop 104 to move elastically. The stop portion 108 is mounted on the limiting body 106 to limit the elastic member 107 and the stop 104. The mounting portion 105 may be a hole, a groove, a recess, or a protrusion (e.g., Figure 49 and Figure 50 ).
[0214] In summary, the conductive structure 1 of the present invention enables the body 11 to be fastened or unfastened to an object or another body 10 via the moving part 12, thereby completing the rapid connection and separation of at least two objects and achieving the effect of repeated rapid connection and separation.
[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 conductive structure, characterized in that, The conductive structure includes: Body; and The moving part is used to combine with the movement of the body part, or the moving part is used to fasten an object or another body part.
2. A conductive structure, characterized in that, The conductive structure includes: The body, having at least one connecting part; and A moving part, which is movable in combination with the body part, the moving part having at least one fastening part that is combined with the connecting part, and the fastening part fastening an object or another body part.
3. A conductive structure, characterized in that, The conductive structure includes: Body, or having at least one connecting part thereon; and The moving part is combined with the movement of the body; or the moving part is provided with at least one fastening part, or the fastening part is used to fasten an object or another body part.
4. The conductive structure according to claim 1, 2, or 3, characterized in that, The moving part is provided with an operating part, or the operating part is connected to the moving part by a connecting member, or the operating part is first snapped or fastened to the moving part and then connected by a connecting member; or an elastic component is provided between the moving part and the body, or the elastic component is used to provide elasticity or elasticity for the moving fastener.
5. The conductive structure according to claim 1, 2, or 3, characterized in that, The body is provided with a docking part, which has an electroplated metal part that docks with the moving part, or the docking part is a slit, groove, slot or hole, or the body or the moving part is metal, non-metal, plastic or metal with heat treatment to increase elasticity; or the body is provided with a docking part, or the moving part is provided with another docking part, or the docking part docks with the other docking part, or the docking part or the other docking part is a rib, hole or slot.
6. The conductive structure according to claim 1, characterized in that, The moving part is a sphere, a convex body, a concave body, a hook, a buckle, a spring buckle, or an elastic body; or the moving part is the fastening part; or the moving part and the fastening part are integrally formed or assembled; or the fastening part is a sphere, a convex body, a concave body, a hook, a spring buckle, or an elastic body; or the body has at least one assembly part; or the moving part has at least one fastening part combined with the assembly part; or the fastening part is a hole or a groove; or the assembly part is a hole or a groove; or the assembly part or the fastening part is... The part is machined by CNC, lathe or milling machine into a hole or groove, or the assembly part is a riveted body, expansion body, locking body, welded body, welded body, hole, groove, protrusion, concave body or object with a head, or the assembly part or the fastening part is injection molded, in-mold injection molded, metal injection molded or plastic injection molded, or the fastening part is a ball, protrusion, concave body, hook, spring fastener or elastic body, or the body or object or another body part is used for fluid to flow through, or the fluid is water, coolant, oil, gas or gas flow.
7. The conductive structure according to claim 2, 3 or 6, characterized in that, The number of the connecting parts is one or two, or each connecting part is respectively connected to one or two fastening parts of the moving part.
8. The conductive structure according to claim 2 or 3, characterized in that, The fastening part is provided with an inclined surface, or the inclined surface is used to fasten or move corresponding to the inclined surface of the other body part or the inclined surface of another object, or the fastening part is a column, a plate, or an inclined surface; or the moving part is provided with an entry part, or the entry part is used to allow the other body part to enter; or the body part is provided with a stop part, used to fasten the object between the fastening part and the stop part; or there is a floating space between the body part and the object, used to float and align when the body part docks with the object; or the fastening part is provided with an operating part, or the operating part is used to operate the fastening part, or the object is fastened or limited between the fastening part and the operating part; or the assembly part is assembled with the object, or the assembly part is provided with an anti-rotation part, the anti-rotation part is used to prevent the object from rotating or to limit its direction; or the assembly part is a groove, a recess, a protrusion, a fastening part, an open space, or an open structure, used to provide a moving part in the assembly part, or the fastening part of the moving part.
9. The conductive structure according to claim 1, 2 or 3, characterized in that, The moving part is provided with a moving space, or is combined with another connecting part of the body through the moving space, or the moving part is combined or moves in the body, or the moving space is connected with another connecting part of the moving part, or is used to movably connect the moving part; or the moving part is provided with an elastic retraction space, or the elastic retraction space is used to allow another connecting part of the moving part to retract and fasten to the connecting part, or the elastic retraction space is a groove, hole, open groove or closed groove.
10. The conductive structure according to claim 1, 2 or 3, characterized in that, The body is provided with a flow channel, and there is a floating space between the flow channel and the body, which is used to float and align the body when docking with an object; or the body is connected to a fluid quick-release connector or flow channel, or the flow channel is connected to a heat sink or a heat source, or to remove or reduce the heat source, or the heat sink or the heat source is located in a server, computer, IC, chip, conductor, motherboard, data center or storage device, or the conductive structure is a quick-release connector, or the conductive structure is a fluid quick-release connector.
11. The conductive structure according to claim 1, 2 or 3, characterized in that, The body has a flow channel, or an elastic component or limiting body is provided between the body and the flow channel, or the elastic component and the limiting body are used to elastically limit the flow channel within the body, or there is a floating space between the body and the limiting body, or there is a floating space between the elastic component and the body, or there is a floating space between the elastic component and the flow channel, or the body or the flow channel is a pipe, pipe, quick connector, liquid quick-release connector, water-cooled liquid quick-release connector, floating pipe, floating connector, metal body, non-metal body, fastener, elastic body, floating body, baffle, or fluid channel; or there are two bodies, or each body is provided with a baffle, or each baffle pushes against each other to open the flow channel of each body respectively, or to allow fluid to flow in the flow channel within each body, or the two bodies are quick-release connectors or liquid quick-release connectors.
12. The conductive structure according to claim 1, 2 or 3, characterized in that, The body is provided with a docking portion, which is an anti-rotation structure used to prevent rotation between the docking portion and the moving part; or the body is provided with a docking portion, and the moving part is provided with another docking portion, or the moving part enters the body through the other docking portion, or the moving part is engaged with the opposite fastening portion of the body by a spring-loaded fastening portion, or wherein the opposite fastening portion is an open structure, or the spring-loaded fastening portion engages with the opposite fastening portion after passing through or across the flow channel of the body; or the body is provided with a joining portion, the body is provided with the moving part and is assembled with the joining portion by a combination portion, or used to limit the moving part, or the combination portion is an external thread body, an internal thread body, a spring-loaded fastening body, a thread body, a fastening body, a C-shaped fastening body, etc. Buckle, ring, riveted body, welded body or riveted body.
13. The conductive structure according to claim 1, 2 or 3, characterized in that, The body or the other body has a flow channel, the body or the other body is used for injecting liquid material into the mold and then solidifying it, or the body or the other body is used for injecting liquid material into the mold and then cooling and solidifying it, or the mold is composed of multiple modules to form the body or the other body, or the mold or each module blocks the position of the flow channel to prevent liquid material from flowing through the flow channel to form the flow channel, or the mold has at least one flow path to allow liquid material to enter the mold to form the body or the other body, or the liquid material is a metal, a non-metal, or a plastic material.
14. The conductive structure according to claim 1, 2 or 3, characterized in that, The body or the other body is formed into a device when it is injected in liquid state by the stop of the mold. After forming, a limiting body is installed on the device to limit the elastic member and the stop to move elastically. Alternatively, the limiting body is equipped with a stop to limit the elastic member and the stop. Or the limiting body is an elastic member to snap into the device. Or the device is a hole, groove, recess or protrusion.
15. The conductive structure according to claim 1, 2 or 3, characterized in that, The body or the other body has a mounting portion, the mounting portion is equipped with a limiting body for limiting the elastic member and the stop body to move elastically, or the limiting body is equipped with a stop portion for limiting the elastic member and the stop body, or the limiting body is an elastic body for fastening into the mounting portion, or the mounting portion is a hole, groove, recess or protrusion, or the structure of the limiting body allows fluid passing through the body or object or the other body to pass through.
16. The conductive structure according to claim 1, 2 or 3, characterized in that, The body is provided with an embedded part, which is used to be placed in a mold for liquid injection molding of the body, or a fluid-blocking device is provided at the setting part of the embedded part, or the embedded part is made of metal, or the body is made of plastic, or the fluid-blocking device is an O-ring, rubber, non-metallic material, or a material that can block fluid, or the number of fluid-blocking devices is two, or the embedded part is used to be placed in a mold for liquid injection molding of the body and then the fluid-blocking device is provided at the setting part of the embedded part, or the other body part is connected to the body part, and the fluid-blocking device is used to prevent liquid flowing through the body part and the other body part from flowing out or overflowing; or the The body has an embedded part, or a fluid-blocking part is provided at the setting part of the embedded part, or the embedded part is made of metal or plastic, or the body is made of plastic or metal, or the fluid-blocking part is an O-ring, rubber, non-metallic material, or a material that can block fluid, or the embedded part is used to be placed in a mold for liquid injection molding of the body, and then the fluid-blocking part is provided at the setting part of the embedded part, or the embedded part is used to be placed in a solid body for assembly molding, or the fluid-blocking part is provided at the setting part of the embedded part, or the other body part is connected to the body part, and the fluid-blocking part is used to prevent the liquid flowing through the body part and the other body part from flowing out or overflowing.