Assembly type electrical pipeline connecting system

By designing an assembled electrical pipeline connection system with multiple conductive columns and snap-fit ​​parts, the problem of mismatched models of multiple electrical pipelines in the existing technology is solved, and a stable connection of pipeline components of the same model is achieved, which reduces costs and improves construction efficiency.

CN223436710UActive Publication Date: 2025-10-14ANHUI DIGILIGHT INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422938880.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-14
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing connectors require the use of multiple models of electrical pipelines when connecting multiple electrical pipelines, resulting in increased construction costs and delays in the construction process.

Method used

An assembled electrical pipeline connection system is designed. By arranging multiple conductive posts and snap-fit ​​parts in the connection assembly, the pipeline body is allowed to rotate 180° around the central axis to achieve a stable connection. The same model of pipeline assembly can be used to electrically connect to multiple conductive posts.

Benefits of technology

It reduces manufacturing costs, improves connection versatility and construction efficiency, solves the needs of multiple models of electrical pipelines, and achieves stable electrical connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electrical connection, in particular to an assembly type electrical pipeline connecting system which comprises a connecting assembly and a pipeline assembly. And the first clamping part, the second clamping part and the third clamping part are respectively connected with the shell module. The conductive units of the connecting assembly are arranged in a space surrounded by the connecting units. The first conductive column, the second conductive column and the third conductive column are arranged at intervals. And the fourth conductive column, the fifth conductive column and the sixth conductive column are arranged at intervals. The first conductive column is connected with the fourth conductive column, the second conductive column is connected with the fifth conductive column, and the third conductive column is connected with the sixth conductive column. The first clamping part and the second clamping part are arranged on the two sides of the second direction respectively. The first clamping part and the second clamping part are arranged on the two sides of the third direction respectively. The third clamping part is arranged on any side of the third direction. A pipeline buckle of the pipeline assembly is arranged at one end of the pipeline body in the length direction. Therefore, the problem that a plurality of types of electrical pipelines need to be used when a connector is used for connecting a plurality of wires is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of electric connection, specifically, a kind of assembled electrical pipeline connection system. BACKGROUND

[0002] In the process of electrification technology development, the connection technology of electrical pipeline plays a vital role. Whether it is the power wiring in the field of construction or the signal transmission in mechanical equipment, it cannot do without the stable connection between electrical pipeline and connector. Currently, for the connection needs of multiple electrical pipelines, the common practice is to connect the joint of each electrical pipeline through the connector. These connectors are designed with interfaces for connecting the joints of electrical pipelines and ensuring the relative position between electrical pipeline and connector fixed through buckle or threaded connection. Among them, since threaded connection operation is tedious and inefficient, therefore, the way of connecting electrical pipeline and connector by buckle gradually becomes mainstream. Buckle connection method not only simplifies the operation steps, but also improves construction efficiency, making the connection of electrical pipeline more convenient.

[0003] The utility model with publication number CN220774918U discloses a connector structure, comprising a main body, a first socket, a second socket and a third socket; the first socket is arranged at the left end of the main body; the second socket is arranged at the right end of the main body; the third socket is arranged at the top end of the main body, and the first socket, the second socket and the third socket are electrically connected with each other in the main body. The utility model connects the first socket, the second socket and the third socket with the plug, so that the connector can be powered in three directions, thereby expanding the application range of the connector and improving the use flexibility of the connector, making it have higher application value.

[0004] However, when the connector needs to connect three electrical pipelines at the same time, a specific technical problem will be encountered. Specifically, such connectors are usually designed with three interfaces, each interface is equipped with three conductive columns, and the polarity of each conductive column is different. However, the model of electrical pipeline is fixed, and the buckle position for connecting with the connector on the electrical pipeline is also determined. Therefore, during the actual plugging process, due to the fixedness of the connector interface and the electrical pipeline buckle position, the buckle position of one electrical pipeline often cannot perfectly match the interface of the connector. In order to solve this problem, construction personnel have to prepare multiple models of electrical pipelines in order to replace them when necessary. This not only increases the construction cost, but also may cause delay in the construction process, becoming a problem to be solved in the prior art. UTILITY MODEL CONTENTS

[0005] In order to solve the problem that multiple types of electrical pipelines are needed when connecting multiple wires, the utility model provides an assembled electrical pipeline connecting system, which comprises

[0006] The connecting assembly 02 comprises a connecting unit 21 and a conductive unit 22; the connecting unit 21 comprises a shell module 211, a first clamping part 212, a second clamping part 213 and a third clamping part 214; the first clamping part 212, the second clamping part 213 and the third clamping part 214 are fixedly connected with the outer peripheral surface of the shell module 211 respectively; the conductive unit 22 is arranged in the space surrounded by the connecting unit 21; the conductive unit 22 comprises a first conductive column 221, a second conductive column 222, a third conductive column 223, a fourth conductive column 224, a fifth conductive column 225 and a sixth conductive column 226; the first conductive column 221, the second conductive column 222 and the third conductive column 223 are arranged in the first direction in sequence and at intervals; the fourth conductive column 224, the fifth conductive column 225 and the sixth conductive column 226 are arranged in the second direction in sequence and at intervals; the first conductive column 221 is electrically connected with the fourth conductive column 224; the second conductive column 222 is electrically connected with the fifth conductive column 225; the third conductive column 223 is electrically connected with the sixth conductive column 226; the first clamping part 212 is arranged on the first side of the second direction; the second clamping part 213 is arranged on the second side of the second direction; the first clamping part 212 is arranged on the first side of the third direction; the second clamping part 213 is arranged on the second side of the third direction; the third clamping part 214 is arranged on the side away from the first conductive column 221; and the third clamping part 214 is arranged on any one side of the third direction;

[0007] The pipeline assembly 03 comprises a pipeline body 31 and a pipeline buckle 33; the pipeline buckle 33 is arranged at one end of the pipeline body 31 in the length direction;

[0008] The assembled electrical pipeline connecting system comprises a first clamping state, a second clamping state and a third clamping state; the first clamping state comprises that the pipeline body 31 is electrically connected with the first conductive column 221, the second conductive column 222 and the third conductive column 223 respectively, and the pipeline buckle 33 is detachably connected with the first clamping part 212; the second clamping state comprises that the pipeline body 31 is electrically connected with the first conductive column 221, the second conductive column 222 and the third conductive column 223 respectively, and the pipeline buckle 33 is detachably connected with the second clamping part 213; and the third clamping state comprises that the pipeline body 31 is electrically connected with the fourth conductive column 224, the fifth conductive column 225 and the sixth conductive column 226 respectively, and the pipeline buckle 33 is detachably connected with the third clamping part 214.

[0009] In some embodiments, the first conductive column 221 comprises a first column body 2211, two first electrodes 2212, the two first electrodes 2212 are fixedly connected to two ends of the first column body 2211 along the second direction, the second conductive column 222 comprises a second column body 2221, two second electrodes 2222, the two second electrodes 2222 are fixedly connected to two ends of the second column body 2221 along the second direction, the third conductive column 223 comprises a third column body 2231, two third electrodes 2232, the two third electrodes 2232 are fixedly connected to two ends of the third column body 2231 along the second direction, the fourth conductive column 224 is detachably and electrically connected with the first column body 2211, the fifth conductive column 225 is detachably and electrically connected with the second column body 2221, the sixth conductive column 226 is detachably and electrically connected with the third column body 2231.

[0010] The first clamping state further comprises that the pipeline body 31 is electrically connected with the first electrode 2212 close to the first clamping part 212, the second electrode 2222 close to the first clamping part 212, and the third electrode 2232 close to the first clamping part 212 respectively, and the second clamping state further comprises that the pipeline body 31 is electrically connected with the first electrode 2212 close to the second clamping part 213, the second electrode 2222 close to the second clamping part 213, and the third electrode 2232 close to the second clamping part 213 respectively.

[0011] In some embodiments, the fourth conductive column 224 comprises a fourth column body 2241 and a fourth electrode 2242, one end of the fourth column body 2241 is detachably and electrically connected with the first conductive column 221, and the other end is detachably connected with the fourth electrode 2242, the fifth conductive column 225 comprises a fifth column body 2251 and a fifth electrode 2252, one end of the fifth column body 2251 is detachably and electrically connected with the second conductive column 222, and the other end is detachably connected with the fifth electrode 2252, the sixth conductive column 226 comprises a sixth column body 2261 and a sixth electrode 2262, one end of the sixth column body 2261 is detachably and electrically connected with the third conductive column 223, and the other end is detachably connected with the sixth electrode 2262.

[0012] The third clamping state further comprises that the pipeline body 31 is electrically connected with the fourth electrode 2242, the fifth electrode 2252, and the sixth electrode 2262 respectively.

[0013] In some embodiments, the fifth column 2251 is disposed on one side of the third direction; the fourth column 2241 and the sixth column 2261 are respectively disposed on the other side of the third direction.

[0014] In some embodiments, the fourth column 2241 has a dimension along the third direction that is less than a dimension of the fourth electrode 2242 along the third direction; the fifth column 2251 has a dimension along the third direction that is less than a dimension of the fifth electrode 2252 along the third direction; and the sixth column 2261 has a dimension along the third direction that is less than a dimension of the sixth electrode 2262 along the third direction.

[0015] In some embodiments, the housing module 211 includes a connecting shell 2111 and a holder 2112; the holder 2112 is detachably connected with the conductive unit 22; the conductive unit 22 is disposed in a space enclosed by the holder 2112; the connecting shell 2111 is fixedly connected with the holder 2112; the holder 2112 is disposed in a space enclosed by the connecting shell 2111; and the first clamping portion 212, the second clamping portion 213, and the third clamping portion 214 are respectively fixedly connected with an outer peripheral surface of the connecting shell 2111.

[0016] In some embodiments, the assembled electrical pipeline connection system further includes a cover assembly 01; the cover assembly 01 includes a first cover 11 and a second cover 12; the first cover 11 is detachably connected with the second cover 12; the connection assembly 02 is disposed in a space enclosed by the first cover 11 and the second cover 12;

[0017] The first clamping state further includes that the pipeline buckle 33 is located in the space enclosed by the first cover 11 and the second cover 12; the second clamping state further includes that the pipeline buckle 33 is located in the space enclosed by the first cover 11 and the second cover 12; and the third clamping state further includes that the pipeline buckle 33 is located in the space enclosed by the first cover 11 and the second cover 12.

[0018] In some embodiments, the pipeline assembly 03 further includes a sealing ring 32; an inner peripheral wall of the sealing ring 32 is detachably connected with an outer peripheral wall of the pipeline body 31;

[0019] The first clamping state further includes that an outer peripheral wall of the sealing ring 32 respectively abuts against the first cover 11 and the second cover 12; the second clamping state further includes that the outer peripheral wall of the sealing ring 32 respectively abuts against the first cover 11 and the second cover 12; and the third clamping state further includes that the outer peripheral wall of the sealing ring 32 respectively abuts against the first cover 11 and the second cover 12.

[0020] In some embodiments, the cover assembly 01 further comprises a sealing strip 13; the sealing strip 13 is in abutment with the first cover 11 and the second cover 12 respectively.

[0021] In some embodiments, the cover assembly 01 further comprises a limiting part 14; the limiting part 14 is fixedly connected with the first cover 11 and / or the second cover 12; the limiting part 14 is in abutment with the shell module 211.

[0022] To solve the problem that multiple types of electrical pipelines are needed when the connector connects multiple wires, the utility model has the following advantages:

[0023] The first conductive column 221, the second conductive column 222 and the third conductive column 223 are sequentially and spacedly arranged along the first direction, and the fourth conductive column 224, the fifth conductive column 225 and the sixth conductive column 226 are sequentially and spacedly arranged along the second direction, and the structure that the first conductive column 221 is electrically connected with the fourth conductive column 224, the second conductive column 222 is electrically connected with the fifth conductive column 225, and the third conductive column 223 is electrically connected with the sixth conductive column 226 can make the conductive unit 22 be connected with three pipeline assemblies 03 at the same time, keep the structure of the conductive unit 22 simple and facilitate arrangement, thereby effectively reducing the manufacturing cost. At the same time, the first clamping part 212 and the second clamping part 213 are arranged on the two sides of the third direction respectively, and the third clamping part 214 is arranged on any one side of the third direction, so that when the pipeline body 31 is connected with the two ends of the first conductive column 221, the second conductive column 222 and the third conductive column 223, the pipeline buckle 33 can be stably connected with the first clamping part 212 or the second clamping part 213 by rotating the pipeline body 31 by 180° around the central axis, and the relative position of the pipeline body 31 and the conductive unit 22 is fixed. This design makes the same type of pipeline assembly 03 be electrically connected with the two ends of the first conductive column 221, the second conductive column 222 and the third conductive column 223 and the fourth conductive column 224, the fifth conductive column 225 and the sixth conductive column 226, and realizes the relative position of the pipeline assembly 03 and the conductive unit 22 is stably fixed, and finally solves the problem that multiple types of electrical pipelines are needed when the connector connects multiple wires. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 An assembled electrical pipeline connection system schematic diagram of an embodiment is shown;

[0025] Figure 2 An assembled electrical pipeline connection system schematic diagram of another embodiment is shown;

[0026] Figure 3 A connection assembly schematic diagram of an assembled electrical pipeline connection system of an embodiment is shown;

[0027] Figure 4 Fig. 6 shows a schematic view of a connection assembly of an assembled electrical pipeline connection system according to another embodiment;

[0028] Figure 5 Fig. 5 shows a schematic view of a conductive unit, a retaining frame of an assembled electrical pipeline connection system according to an embodiment;

[0029] Figure 6 Fig. 4 shows a schematic view of a conductive unit of an assembled electrical pipeline connection system according to an embodiment;

[0030] Figure 7 Fig. 3 shows a schematic view of an assembled electrical pipeline connection system according to another embodiment;

[0031] Figure 8 Fig. 2 shows a schematic view of a cover assembly, a connection unit of an assembled electrical pipeline connection system according to an embodiment;

[0032] Figure 9 Fig. 1 shows a schematic view of a pipeline assembly of an assembled electrical pipeline connection system according to an embodiment.

[0033] Fig. 1 shows a schematic view of a pipeline assembly of an assembled electrical pipeline connection system according to an embodiment. Fig. 2 shows a schematic view of a cover assembly, a connection unit of an assembled electrical pipeline connection system according to an embodiment. Fig. 3 shows a schematic view of an assembled electrical pipeline connection system according to another embodiment. Fig. 4 shows a schematic view of a conductive unit of an assembled electrical pipeline connection system according to an embodiment. Fig. 5 shows a schematic view of a conductive unit, a retaining frame of an assembled electrical pipeline connection system according to an embodiment. Fig. 6 shows a schematic view of a connection assembly of an assembled electrical pipeline connection system according to another embodiment. 001 Cover assembly; 11 first cover; 12 second cover; 13 sealing strip; 14 limiting part; 02 connection assembly; 21 connection unit; 211 housing module; 2111 connection housing; 2112 retaining frame; 212 first clamping part; 213 second clamping part; 214 third clamping part; 22 conductive unit; 221 first conductive column; 2211 first column body; 2212 first electrode; 222 second conductive column; 2221 second column body; 2222 second electrode; 223 third conductive column; 2231 third column body; 2232 third electrode; 224 fourth conductive column; 2241 fourth column body; 2242 fourth electrode; 225 fifth conductive column; 2251 fifth column body; 2252 fifth electrode; 226 sixth conductive column; 2261 sixth column body; 2262 sixth electrode; 03 pipeline assembly; 31 pipeline body; 32 sealing ring; 33 pipeline buckle. DETAILED DESCRIPTION

[0034] The present disclosure will now be discussed with reference to a number of example embodiments. It should be appreciated that these embodiments are discussed solely for the purpose of enabling those with ordinary skill in the art to better understand and therefore practice the present disclosure, and are not intended to impose any limitations on the scope of the present disclosure.

[0035] As used herein, the term "includes" and its variants are to be read as open-ended terms that mean "including, but not limited to." The term "based on" is to be construed as "based at least in part on." The terms "one embodiment" and "an embodiment" are to be read as "at least one embodiment." The term "another embodiment" is to be read as "at least one other embodiment." The terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," "longitudinal," and similar terms are used for orientation or positional relationships based on the orientation or position as shown in the drawings. These terms are used merely for the sake of description and are not intended to limit the devices, elements, or components to a particular orientation or configuration unless specifically so limited in the claims. Also, the terms "coupled" and "connected" along with derivatives thereof are used broadly and encompass both direct and indirect couplings, connections, and affixings, as appropriate for the context. Further, the terms "mounted" and "connected" and variations thereof, cover both direct and indirect mounting and connecting, and can refer to fixing or affixing in a mechanical or electrical manner, or both. For the purposes of this disclosure, the terms "coupled" and "connected," along with derivatives of both, should not be construed as requiring an direct connection between devices, elements, or components. Further, the terms "first," "second," and other such

[0036] When the connection assembly 02 needs to connect three pipeline assemblies 03, so that the three pipeline assemblies 03 are electrically connected, three interfaces are usually provided, each of which contains three electrically conductive columns of different polarities. However, since the model of the pipeline assembly 03 is fixed, and the position of the pipeline buckle 33 on the pipeline assembly 03 for clamping with the first clamping part 212, the second clamping part 213, and the third clamping part 214 is also fixed, this often causes a problem that the position of one pipeline buckle 33 cannot perfectly match at least one of the first clamping part 212, the second clamping part 213, and the third clamping part 214 when the electrically conductive unit 22 is electrically connected with the pipeline body 31. This mismatch not only limits the versatility of the connection assembly 02, but also increases the demand for various models of pipeline assemblies 03, thereby increasing the use cost and complexity, and further proposing an assembled electrical pipeline connection system.

[0037] In the present embodiment, asFigure 1 、 Figure 2 As shown, the assembled electrical pipeline connection system may include a connection component 02 and a pipeline component 03 .

[0038] The connection assembly 02 may include a connection unit 21 and a conductive unit 22. The connection unit 21 may include a housing module 211, a first engaging portion 212, a second engaging portion 213, and a third engaging portion 214. The first engaging portion 212, the second engaging portion 213, and the third engaging portion 214 may be fixedly connected to the outer circumference of the housing module 211. The conductive unit 22 may be disposed within the space enclosed by the connection unit 21. The conductive unit 22 may include a first conductive post 221, a second conductive post 222, a third conductive post 223, a fourth conductive post 224, a fifth conductive post 225, and a sixth conductive post 226. The first conductive pillar 221, the second conductive pillar 222, and the third conductive pillar 223 can be sequentially spaced apart along a first direction (the first direction can be the radial direction of the first conductive pillar 221); the fourth conductive pillar 224, the fifth conductive pillar 225, and the sixth conductive pillar 226 can be sequentially spaced apart along a second direction (the second direction can be the axial direction of the first conductive pillar 221); the first conductive pillar 221 can be electrically connected to the fourth conductive pillar 224; the second conductive pillar 222 can be electrically connected to the fifth conductive pillar 225; and the third conductive pillar 223 can be electrically connected to the sixth conductive pillar 226. This arrangement allows the first conductive pillar 221, the second conductive pillar 222, and the third conductive pillar 223 to be insulated from each other, and the fourth conductive pillar 224, the fifth conductive pillar 225, and the sixth conductive pillar 226 to be insulated from each other. At the same time, the conductive unit 22 can be connected to the three pipeline assemblies 03 respectively, while simplifying the structure of the conductive unit 22, facilitating layout and reducing manufacturing costs. The first engaging portion 212 can be positioned on the first side in the second direction; the second engaging portion 213 can be positioned on the second side in the second direction; the first engaging portion 212 can be positioned on the first side in the third direction (the third direction can be the thickness direction of the housing module 211); the second engaging portion 213 can be positioned on the second side in the third direction; the third engaging portion 214 can be positioned on the side away from the first conductive post 221; and the third engaging portion 214 can be positioned on either side in the third direction. The polarities of the first conductive post 221, the second conductive post 222, and the third conductive post 223 are all different. In this way, the first engaging portion 212, the second engaging portion 213, and the third engaging portion 214 can each be connected to the pipeline buckle 33 when the model of the pipeline assembly 03 is fixed.

[0039] The pipeline assembly 03 may include a pipeline body 31 and a pipeline buckle 33; the pipeline buckle 33 may be arranged at one end of the pipeline body 31 in the length direction, and is used to connect with the first clamping part 212, the second clamping part 213, and the third clamping part 214, thereby achieving the fixation of the relative position of the shell module 211 and the pipeline body 31.

[0040] The assembled electrical pipeline connecting system can include a first clamping state, a second clamping state, and a third clamping state. The first clamping state can include that the pipeline body 31 is respectively electrically connected with the first conductive column 221, the second conductive column 222, and the third conductive column 223, and the pipeline buckle 33 is detachably connected with the first clamping part 212. The second clamping state can include that the pipeline body 31 is respectively electrically connected with the first conductive column 221, the second conductive column 222, and the third conductive column 223, and the pipeline buckle 33 is detachably connected with the second clamping part 213. The third clamping state can include that the pipeline body 31 is respectively electrically connected with the fourth conductive column 224, the fifth conductive column 225, and the sixth conductive column 226, and the pipeline buckle 33 is detachably connected with the third clamping part 214. Since the two ends of the first conductive column 221, the second conductive column 222, and the third conductive column 223 can be respectively connected with the pipeline assembly 03, the polarities of the first conductive column 221, the second conductive column 222, and the third conductive column 223 are all different, and the relative positions of the pipeline body 31 and the pipeline buckle 33 are fixed. In this way, when the pipeline body 31 is connected with the two ends of the first conductive column 221, the second conductive column 222, and the third conductive column 223, the pipeline body 31 is rotated by 180° around the central axis of the pipeline body 31, so that the pipeline buckle 33 is stably connected with the first clamping part 212 and the second clamping part 213, respectively, and the relative positions of the pipeline body 31 and the conductive unit 22 are fixed. Therefore, the same model of the pipeline assembly 03 can be respectively electrically connected with the two ends of the first conductive column 221, the second conductive column 222, and the third conductive column 223, and the fourth conductive column 224, the fifth conductive column 225, and the sixth conductive column 226, and the relative positions of the pipeline assembly 03 and the conductive unit 22 are stably fixed.

[0041] In the present embodiment, as Figure 6 , Figure 5As shown, the first conductive column 221 can include a first column body 2211, two first electrodes 2212; the two first electrodes 2212 can be fixedly connected at two ends of the first column body 2211 along a second direction (the second direction can be the axial direction of the first conductive column 221); the second conductive column 222 can include a second column body 2221, two second electrodes 2222; the two second electrodes 2222 can be fixedly connected at two ends of the second column body 2221 along the second direction; the third conductive column 223 can include a third column body 2231, two third electrodes 2232; the two third electrodes 2232 can be fixedly connected at two ends of the third column body 2231 along the second direction; the fourth conductive column 224 can be detachably connected and electrically connected with the first column body 2211; the fifth conductive column 225 can be detachably connected and electrically connected with the second column body 2221; the sixth conductive column 226 can be detachably connected and electrically connected with the third column body 2231. Through such a structure, the first column body 2211, the second column body 2221, and the third column body 2231 are used for connection and have high material strength, while the first electrode 2212, the second electrode 2222, and the third electrode 2232 are used for transmitting electric energy and can have lower material strength. Such a design can reduce the cost while ensuring the use strength.

[0042] The first clamping state can further include that the pipeline body 31 is electrically connected with the first electrode 2212 close to the first clamping portion 212, the second electrode 2222 close to the first clamping portion 212, and the third electrode 2232 close to the first clamping portion 212, respectively, so that electric energy can be transmitted between the pipeline body 31 and the first electrode 2212, the second electrode 2222, and the third electrode 2232, respectively; the second clamping state can further include that the pipeline body 31 is electrically connected with the first electrode 2212 close to the second clamping portion 213, the second electrode 2222 close to the second clamping portion 213, and the third electrode 2232 close to the second clamping portion 213, respectively, so that electric energy can be transmitted between the pipeline body 31 and the first electrode 2212, the second electrode 2222, and the third electrode 2232, respectively.

[0043] In the embodiment, as Figure 6 , Figure 5As shown, the fourth conductive column 224 can include a fourth column body 2241, a fourth electrode 2242; one end of the fourth column body 2241 can be detachably connected and electrically connected with the first conductive column 221, and the other end can be detachably connected with the fourth electrode 2242; the fifth conductive column 225 can include a fifth column body 2251, a fifth electrode 2252; one end of the fifth column body 2251 can be detachably connected and electrically connected with the second conductive column 222, and the other end can be detachably connected with the fifth electrode 2252; the sixth conductive column 226 can include a sixth column body 2261, a sixth electrode 2262; one end of the sixth column body 2261 can be detachably connected and electrically connected with the third conductive column 223, and the other end can be detachably connected with the sixth electrode 2262. In this way, the fourth column body 2241, the fifth column body 2251, and the sixth column body 2261 can be used for connection and have high material strength, while the fourth electrode 2242, the fifth electrode 2252, and the sixth electrode 2262 can be used for transmitting electric energy and can have low material strength. In this way, the use strength can be ensured, and the cost can be reduced.

[0044] The third clamping state can further include that the pipeline body 31 is electrically connected with the fourth electrode 2242, the fifth electrode 2252, and the sixth electrode 2262 respectively, so that electric energy can be transmitted in the pipeline body 31 and the fourth electrode 2242, the fifth electrode 2252, and the sixth electrode 2262.

[0045] In the embodiment, as shown in Figure 6 , Figure 5 , the fifth column body 2251 can be arranged on one side of the third direction; the fourth column body 2241 and the sixth column body 2261 can be arranged on the other side of the third direction. In this way, sufficient operation space can be provided, and installation, disassembly and other operations can be facilitated, so that the work efficiency can be improved.

[0046] In the embodiment, as shown in Figure 4 , Figure 5 , the fourth column body 2241 can have a dimension along the third direction smaller than that of the fourth electrode 2242 along the third direction; the fifth column body 2251 can have a dimension along the third direction smaller than that of the fifth electrode 2252 along the third direction; and the sixth column body 2261 can have a dimension along the third direction smaller than that of the sixth electrode 2262 along the third direction. In this way, the connection strength can be ensured to be sufficient and the electric connection can be stable, and meanwhile, the connection assembly 02 can have a smaller dimension along the third direction, so that compactness can be achieved.

[0047] In the embodiment, as shown in Figure 5 , Figure 4 , Figure 3As shown, the housing module 211 may include a connecting shell 2111 and a retaining frame 2112. The retaining frame 2112 may be detachably connected to the conductive unit 22. The conductive unit 22 may be disposed within the space enclosed by the retaining frame 2112. The connecting shell 2111 may be fixedly connected to the retaining frame 2112, such as by injection molding. The retaining frame 2112 may be disposed within the space enclosed by the connecting shell 2111. The first engaging portion 212, the second engaging portion 213, and the third engaging portion 214 may be respectively fixedly connected to the outer circumference of the connecting shell 2111, thereby engaging with the pipeline clip 33 to secure the position of the pipeline body 31. This structure allows the retaining frame 2112 to maintain the relative positions of the first conductive post 221, the second conductive post 222, the third conductive post 223, the fourth conductive post 224, the fifth conductive post 225, and the sixth conductive post 226 in the conductive unit 22, thereby ensuring the stability of the electrical connection and preventing short circuits. At the same time, the connecting shell 2111 can protect the retaining frame 2112 and the conductive unit 22, preventing foreign objects from directly impacting them.

[0048] In this embodiment, if Figure 1 、 Figure 2 、 Figure 8 As shown, the assembled electrical conduit connection system may further include a cover assembly 01; the cover assembly 01 may include a first cover 11 and a second cover 12; the first cover 11 may be detachably connected to the second cover 12; and the connection assembly 02 may be disposed within the space enclosed by the first and second covers 11, 12. This arrangement allows the first and second covers 11, 12 to reduce the impact of foreign objects on the connection assembly 02, thereby extending the service life of the connection assembly 02 and increasing the stability of the assembled electrical conduit connection system.

[0049] In this embodiment, if Figure 2 、 Figure 9 As shown, the pipeline assembly 03 may further include a sealing ring 32 ; the inner circumferential wall of the sealing ring 32 may be detachably connected to the outer circumferential wall of the pipeline body 31 , so that the sealing ring 32 may be quickly replaced.

[0050] The first engagement state may also include the outer circumferential wall of the sealing ring 32 abutting against the first cover 11 and the second cover 12, respectively. The second engagement state may also include the outer circumferential wall of the sealing ring 32 abutting against the first cover 11 and the second cover 12, respectively. The third engagement state may also include the outer circumferential wall of the sealing ring 32 abutting against the first cover 11 and the second cover 12, respectively. This design prevents foreign matter such as liquid and dust from entering the space enclosed by the cover assembly 01, avoids short circuits and oxidation of the conductive unit 22, and improves the reliability of the assembled electrical pipeline connection system.

[0051] In this embodiment, if Figure 7As shown, the cover assembly 01 can further include a sealing strip 13; the sealing strip 13 can abut the first cover 11 and the second cover 12 respectively. Such a structure can prevent liquid or other foreign matter from entering the space enclosed by the cover assembly 01 from the connection between the first cover 11 and the second cover 12, and can further prevent the conductive unit 22 from short circuiting and oxidizing, thereby improving the safety of the assembled electrical pipeline connection system.

[0052] In the present embodiment, as shown, Figure 2 The cover assembly 01 can further include a limiting portion 14; the limiting portion 14 can be fixedly connected with the first cover 11 and / or the second cover 12, and the fixed connection can be injection molding. The limiting portion 14 can abut the shell module 211. Such a setting can limit the relative position of the shell module 211 and the first cover 11, and the relative position of the shell module 211 and the second cover 12, so that the assembled electrical pipeline connection system is more stable during use, thereby improving the stability of the assembled electrical pipeline connection system.

[0053] Those skilled in the art can understand that the above-mentioned embodiments are specific cases for implementing the present disclosure, and in actual application, various changes can be made in form and details without departing from the scope of the present disclosure.

Claims

1. An assembled electrical pipeline connection system, characterized in that: The assembled electrical pipeline connection system includes: A connecting assembly (02), wherein the connecting assembly (02) comprises a connecting unit (21) and a conductive unit (22); the connecting unit (21) comprises a housing module (211), a first clamping portion (212), a second clamping portion (213), and a third clamping portion (214); the first clamping portion (212), the second clamping portion (213), and the third clamping portion (214) are respectively fixedly connected to the outer peripheral surface of the housing module (211); the conductive unit (22) is arranged in a space surrounded by the connecting unit (21); the conductive unit (22) comprises a first conductive column (221), a second conductive column (222), a third conductive column (223), a fourth conductive column (224), a fifth conductive column (225), and a sixth conductive column (226); the first conductive column (221), the second conductive column (222), and the third conductive column (223) are arranged along a first direction. The fourth conductive column (224), the fifth conductive column (225), and the sixth conductive column (226) are sequentially spaced along the second direction; the first conductive column (221) is electrically connected to the fourth conductive column (224); the second conductive column (222) is electrically connected to the fifth conductive column (225); and the third conductive column (223) is electrically connected to the sixth conductive column (226); the first engaging portion (212) is arranged on the first side of the second direction; the second engaging portion (213) is arranged on the second side of the second direction; the first engaging portion (212) is arranged on the first side of the third direction; the second engaging portion (213) is arranged on the second side of the third direction; the third engaging portion (214) is arranged on the side away from the first conductive column (221); and the third engaging portion (214) is arranged on either side of the third direction; A pipeline assembly (03), the pipeline assembly (03) comprising a pipeline body (31) and a pipeline buckle (33); the pipeline buckle (33) is arranged at one end of the pipeline body (31) in the length direction; The assembled electrical pipeline connection system includes a first engaging state, a second engaging state, and a third engaging state; the first engaging state includes the pipeline body (31) being electrically connected to the first conductive column (221), the second conductive column (222), and the third conductive column (223), respectively, and the pipeline buckle (33) being detachably connected to the first engaging portion (212); the second engaging state includes the pipeline body (31) being electrically connected to the first conductive column (221), the second conductive column (222), and the third conductive column (223), respectively, and the pipeline buckle (33) being detachably connected to the second engaging portion (213); the third engaging state includes the pipeline body (31) being electrically connected to the fourth conductive column (224), the fifth conductive column (225), and the sixth conductive column (226), respectively, and the pipeline buckle (33) being detachably connected to the third engaging portion (214).

2. The assembled electrical pipeline connection system according to claim 1, characterized in that: The first conductive column (221) comprises a first column (2211) and two first electrodes (2212); the two first electrodes (2212) are fixedly connected to the two ends of the first column (2211) along the second direction; the second conductive column (222) comprises a second column (2221) and two second electrodes (2222); the two second electrodes (2222) are fixedly connected to the two ends of the second column (2221) along the second direction; the third conductive column (223) The device comprises a third column (2231) and two third electrodes (2232); the two third electrodes (2232) are fixedly connected to two ends of the third column (2231) along the second direction; the fourth conductive column (224) is detachably connected and electrically connected to the first column (2211); the fifth conductive column (225) is detachably connected and electrically connected to the second column (2221); and the sixth conductive column (226) is detachably connected and electrically connected to the third column (2231). The first engaging state also includes the pipeline body (31) being electrically connected to the first electrode (2212) close to the first engaging portion (212), the second electrode (2222) close to the first engaging portion (212), and the third electrode (2232) close to the first engaging portion (212); the second engaging state also includes the pipeline body (31) being electrically connected to the first electrode (2212) close to the second engaging portion (213), the second electrode (2222) close to the second engaging portion (213), and the third electrode (2232) close to the second engaging portion (213).

3. The assembled electrical pipeline connection system according to claim 1, characterized in that: The fourth conductive column (224) includes a fourth column (2241) and a fourth electrode (2242); one end of the fourth column (2241) is detachably connected and electrically connected to the first conductive column (221), and the other end is detachably connected to the fourth electrode (2242); the fifth conductive column (225) includes a fifth column (2251) and a fifth electrode (2252); one end of the fifth column (2251) is detachably connected and electrically connected to the second conductive column (222), and the other end is detachably connected to the fifth electrode (2252); the sixth conductive column (226) includes a sixth column (2261) and a sixth electrode (2262); one end of the sixth column (2261) is detachably connected and electrically connected to the third conductive column (223), and the other end is detachably connected to the sixth electrode (2262); The third engaging state also includes the pipeline body (31) being electrically connected to the fourth electrode (2242), the fifth electrode (2252), and the sixth electrode (2262), respectively.

4. The assembled electrical pipeline connection system according to claim 3, characterized in that: The fifth column (2251) is arranged on one side of the third direction; the fourth column (2241) and the sixth column (2261) are respectively arranged on the other side of the third direction.

5. The assembled electrical pipeline connection system according to claim 3, characterized in that: The size of the fourth column (2241) along the third direction is smaller than the size of the fourth electrode (2242) along the third direction; the size of the fifth column (2251) along the third direction is smaller than the size of the fifth electrode (2252) along the third direction; the size of the sixth column (2261) along the third direction is smaller than the size of the sixth electrode (2262) along the third direction.

6. The assembled electrical pipeline connection system according to claim 1, characterized in that: The housing module (211) comprises a connecting shell (2111) and a retaining frame (2112); the retaining frame (2112) is detachably connected to the conductive unit (22); the conductive unit (22) is arranged in a space surrounded by the retaining frame (2112); the connecting shell (2111) is fixedly connected to the retaining frame (2112); the retaining frame (2112) is arranged in a space surrounded by the connecting shell (2111); the first engaging portion (212), the second engaging portion (213), and the third engaging portion (214) are respectively fixedly connected to the outer peripheral surface of the connecting shell (2111).

7. The assembled electrical pipeline connection system according to claim 1, characterized in that: The assembled electrical pipeline connection system further comprises a cover assembly (01); the cover assembly (01) comprises a first cover (11) and a second cover (12); the first cover (11) and the second cover (12) are detachably connected; the connection assembly (02) is arranged in a space surrounded by the first cover (11) and the second cover (12); The first engaging state also includes the pipeline buckle (33) being located in a space surrounded by the first cover (11) and the second cover (12); the second engaging state also includes the pipeline buckle (33) being located in a space surrounded by the first cover (11) and the second cover (12); and the third engaging state also includes the pipeline buckle (33) being located in a space surrounded by the first cover (11) and the second cover (12).

8. The assembled electrical pipeline connection system according to claim 7, characterized in that: The pipeline assembly (03) further includes a sealing ring (32); the inner peripheral wall of the sealing ring (32) is detachably connected to the outer peripheral wall of the pipeline body (31); The first engaging state also includes the outer peripheral wall of the sealing ring (32) abutting against the first cover (11) and the second cover (12) respectively; the second engaging state also includes the outer peripheral wall of the sealing ring (32) abutting against the first cover (11) and the second cover (12) respectively; the third engaging state also includes the outer peripheral wall of the sealing ring (32) abutting against the first cover (11) and the second cover (12) respectively.

9. The assembled electrical pipeline connection system according to claim 7, characterized in that: The cover assembly (01) further comprises a sealing strip (13); the sealing strip (13) abuts against the first cover (11) and the second cover (12) respectively.

10. The assembled electrical pipeline connection system according to claim 7, characterized in that: The cover assembly (01) further comprises a limiting portion (14); the limiting portion (14) is fixedly connected to the first cover (11) and / or the second cover (12); and the limiting portion (14) abuts against the housing module (211).

Citation Information

Patent Citations

  • Connector structure

    CN220774918U