A connector assembly
By designing a rotatable connector assembly, the problem of the inability to adjust the operating surface of the terminal device by the hose connector was solved, enabling 360° rotation of the terminal device and convenient operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CSSC SYST ENG RES INST
- Filing Date
- 2024-08-21
- Publication Date
- 2026-05-26
AI Technical Summary
The existing hose connectors cannot adjust the orientation of the terminal equipment's operating surface according to the operator's perspective, making them inconvenient to use.
Design a connector assembly comprising a first connecting component, a second connecting component, a rotating component, and a first mounting component. The rotating component enables 360° rotation of the terminal device, and the first mounting component clamps the terminal device, allowing the operator to adjust the orientation of the operating surface.
It enables flexible adjustment of the orientation of the terminal device's operating surface, improving operational convenience and work efficiency.
Smart Images

Figure CN119084683B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of fuel refueling technology, and specifically relates to a connector assembly. Background Technology
[0002] In related technologies, hose connectors are mainly used to connect with end hoses, simultaneously enabling the transport of liquid media within the hose and the transmission of electrical signals from cables on the hose. This allows for the simultaneous transmission of signals from the liquid within the hose assembly and the core wire within the hose. Additionally, hose connectors can be used to fix terminal equipment. However, once the terminal equipment is fixed, the orientation of the operating surface cannot be adjusted according to the operator's actual viewing angle, making it very inconvenient to use. Summary of the Invention
[0003] This invention provides a connector assembly for connecting a terminal device, a first conduit, a second conduit, and a cable. The cable is disposed in the first conduit. The connector assembly includes a first connecting component, a second connecting component, a rotating component, and a first mounting component. The first connecting component has a first cavity. One end of the first connecting component can be connected to the first conduit, and the other end of the first connecting component can be connected to the second conduit. A liquid medium can flow within the first cavity, the first conduit, and the second conduit. The second connecting component is sleeved on the first connecting component, and the cable can pass through the second connecting component. The first connecting component is electrically connected to the terminal device. The rotating component is disposed on the first connecting component, located on the side of the second connecting component closer to the first conduit, and can rotate relative to the first connecting component. The first mounting component is disposed on the rotating component and can clamp the terminal device.
[0004] In addition, the connector assembly in the above embodiments provided by the present invention may also have the following additional technical features:
[0005] In some embodiments of the present invention, the first connecting assembly includes a first connector, a first conduit, and a first mounting component. One end of the first conduit is connected to one end of the first connector; the first mounting component is disposed on the side of the first conduit near the first connector and is connected to the second connecting assembly, and a cable can pass through the first mounting component and the second connecting assembly.
[0006] In some embodiments of the present invention, the second connection assembly includes a second mounting component, a wiring component, a connector, and a third mounting component. The second mounting component is sleeved on the first pipe and connected to one end of the first connector; the wiring component is disposed on the second mounting component and connected to the first mounting component; one end of the connector is disposed on the wiring component, and the other end of the connector can be electrically connected to a terminal device; the third mounting component is disposed on the end of the second mounting component away from the first connector and can be connected to the rotating assembly.
[0007] In some embodiments of the present invention, the rotating assembly includes a rotating component and a supporting component. The rotating component is sleeved on the first pipe, located on the side of the second connecting assembly away from the first connector, and is rotatable relative to the first pipe; one end of the supporting component is connected to the rotating component, and the other end of the supporting component is connected to the first mounting assembly.
[0008] In some embodiments of the present invention, the rotating component is provided with a first mounting hole, and the rotating assembly further includes a first limiting component, which passes through the first mounting hole and can abut against a third mounting component.
[0009] In some embodiments of the present invention, a plurality of first grooves are provided on the side of the third mounting component facing the rotating component, and a second groove is provided on the end face of the rotating component facing the third mounting component. The rotating assembly further includes a first elastic member and a rolling member. One end of the first elastic member is located in the second groove, and the other end of the first elastic member faces one of the first grooves; the rolling member is connected to the other end of the first elastic member and is capable of moving within the plurality of first grooves.
[0010] In some embodiments of the present invention, the wiring component includes a housing, a connector, and a first mounting plate. The housing has a second cavity; one end of the connector is connected to the housing and communicates with the second cavity, and the other end of the connector communicates with the first mounting component; the first mounting plate is disposed on the other side of the housing and is connected to the connector.
[0011] In some embodiments of the present invention, the first mounting assembly includes a second mounting plate, a first clamping portion, and a second clamping portion. One side of the second mounting plate is connected to a rotating assembly; the first clamping portion is disposed on the side of the second mounting plate opposite to the rotating assembly; the second clamping portion is disposed on the side of the second mounting plate opposite to the rotating assembly and is disposed opposite to the first clamping portion, and the second clamping portion and the second clamping portion are capable of clamping the terminal device.
[0012] In some embodiments of the present invention, the first mounting plate has a third cavity, and the first mounting assembly further includes a second elastic member and a guide portion. The second elastic member is disposed in the third cavity, and one end of the second elastic member is connected to the first mounting plate; the guide portion is disposed in the third cavity, one end of the guide portion is connected to the other end of the second elastic member, and the other end of the guide portion is connected to the first clamping portion, and the guide portion is movable relative to the first mounting plate between a first position and a second position.
[0013] In some embodiments of the present invention, the connector assembly further includes a second mounting component, which is sleeved on the first connecting component, and one end of the first pipeline is located between the second mounting component and the first connecting component.
[0014] The beneficial effects of this invention are as follows:
[0015] As can be seen from the above scheme, the embodiments of the present invention provide a connector assembly for connecting a terminal device, a first conduit, a second conduit, and a cable, enabling the connector assembly to achieve connection between the terminal device, the first conduit, the second conduit, and the cable. The cable is disposed in the first conduit to facilitate cable installation and enable the cable to transmit electrical signals. The first connector assembly has a first cavity; one end of the first connector assembly can be connected to the first conduit, and the other end can be connected to the second conduit. The first connector assembly is disposed between the first and second conduits to achieve connection between the first and second conduits, allowing liquid media to flow within the first cavity, the first conduit, and the second conduit, thereby achieving the delivery of the liquid media. A second connector assembly is sleeved on the first connector assembly to achieve the installation and fixation of the second connector assembly. The cable can pass through the second connector assembly, the first connector assembly, and electrically connect to the terminal device. The second connector assembly provides installation space for the electrical connection between the cable and the terminal device, allowing the terminal device to connect to the cable disposed in the first conduit, thereby achieving the transmission of electrical signals. By configuring a first connecting component and a second connecting component, the connector assembly can simultaneously perform liquid medium transportation and electrical signal transmission functions. A rotating component is disposed on the first connecting component, located on the side of the second connecting component closer to the first pipeline, and can rotate relative to the first connecting component to facilitate its installation and rotation around the first connecting component. A first mounting component is disposed on the rotating component to install and fix the first mounting component; when the rotating component rotates, the first mounting component rotates relative to it. The first mounting component can clamp the terminal device, fixing it in place for easy operation. Since the first mounting component is mounted on the rotating component, after mounting the terminal device on the first mounting component, rotating the rotating component allows the terminal device to rotate relative to the first connecting component, enabling the operator to adjust the orientation of the terminal device's operating surface according to the actual usage perspective, thereby improving operator convenience and work efficiency. Attached Figure Description
[0016] Figure 1 One of the structural schematic diagrams of the connector assembly according to an embodiment of the present invention;
[0017] Figure 2 This is a schematic diagram showing the structure of the first connecting component according to an embodiment of the present invention;
[0018] Figure 3 One of the structural schematic diagrams of the second connecting component according to an embodiment of the present invention;
[0019] Figure 4A second schematic diagram illustrating the structure of the second connecting component according to an embodiment of the present invention;
[0020] Figure 5 A second schematic diagram illustrating the structure of the connector assembly according to an embodiment of the present invention;
[0021] Figure 6 This is a schematic diagram showing the structure of the rotating assembly according to an embodiment of the present invention;
[0022] Figure 7 One of the structural schematic diagrams of the first mounting component according to an embodiment of the present invention;
[0023] Figure 8 A second schematic diagram illustrating the structure of the second mounting component according to an embodiment of the present invention;
[0024] Figure 9 One of the schematic diagrams showing the structure of the second pipeline according to an embodiment of the present invention;
[0025] Figure 10 This is the second schematic diagram illustrating the structure of the second pipeline in an embodiment of the present invention.
[0026] in, Figures 1 to 10 The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0027] 100 Connector assembly, 102 First connection assembly, 104 First connector, 106 First conduit, 108 First mounting component, 110 First seal, 112 Retaining lug, 114 Connecting pin, 116 Second connection assembly, 118 Second mounting component, 120 Wiring component, 122 Housing, 124 Second cavity, 126 Connector, 128 First mounting plate, 130 Second bolt, 132 Third bolt, 134 Connector, 136 Third mounting component, 138 First groove, 140 First bolt, 142 Second seal, 144 Positioning groove, 146 Rotating assembly, 148 Rotating component, 150 First mounting plate 152 Support component, 154 First limiting component, 156 Second groove, 158 First elastic element, 160 Rolling element, 162 First mounting assembly, 164 Second mounting plate, 166 First clamping part, 168 Second clamping part, 170 Third cavity, 172 Second elastic element, 174 Guide part, 176 Fourth bolt, 178 Locking bolt, 180 Second limiting component, 182 Protective pad, 184 Second mounting assembly, 186 First cavity, 200 Terminal equipment, 300 First conduit, 400 Cable, 410 Internal core wire, 420 Pipe wall core wire, 500 Second conduit, 600 Male quick connector. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.
[0029] The following reference Figures 1 to 10 A connector assembly 100 according to some embodiments of the present invention is described.
[0030] like Figure 1 , 9 and Figure 10 As shown, an embodiment of the present invention provides a connector assembly 100 for connecting a terminal device 200, a first conduit 300, a second conduit 500, and a cable 400. The cable 400 is disposed in the first conduit 300. The connector assembly 100 includes a first connecting component 102, a second connecting component 116, a rotating component 146, and a first mounting component 162. The first connecting component 102 has a first cavity 186. One end of the first connecting component 102 can be connected to the first pipeline 300, and the other end of the first connecting component 102 can be connected to the second pipeline 500. The liquid medium can flow in the first cavity 186, the first pipeline 300, and the second pipeline 500. The second connecting component 116 is sleeved on the first connecting component 102. The cable 400 can pass through the second connecting component 116. The first connecting component 102 is electrically connected to the terminal device 200. The rotating component 146 is disposed on the first connecting component 102, located on the side of the second connecting component 116 near the first pipeline 300, and can rotate relative to the first connecting component 102. The first mounting component 162 is disposed on the rotating component 146 and can clamp the terminal device 200.
[0031] In this embodiment, the connector assembly 100 is used to connect the terminal device 200, the first conduit 300, the second conduit 500, and the cable 400, enabling the connector assembly 100 to connect the terminal device 200, the first conduit 300, the second conduit 500, and the cable 400. The cable 400 is disposed in the first conduit 300 to enable the installation of the cable 400 and to transmit electrical signals. The first connecting assembly 102 has a first cavity 186. One end of the first connecting assembly 102 can be connected to the first conduit 300, and the other end of the first connecting assembly 102 can be connected to the second conduit 500. That is, the first connecting assembly 102 is disposed between the first conduit 300 and the second conduit 500 to achieve the connection between the first conduit 300 and the second conduit 500, so that the liquid medium can flow within the first cavity 186, the first conduit 300, and the second conduit 500 to achieve the delivery of the liquid medium. The second connecting component 116 is sleeved on the first connecting component 102 to realize the installation and fixation of the second connecting component 116. The cable 400 can pass through the second connecting component 116 and the first connecting component 102 to electrically connect with the terminal device 200. This allows the second connecting component 116 to provide installation space for the electrical connection between the cable 400 and the terminal device 200, so that the terminal device 200 can connect with the cable 400 installed on the first pipeline 300, thereby realizing the transmission of electrical signals. By setting the first connecting component 102 and the second connecting component 116, the connector assembly 100 can simultaneously realize the functions of liquid medium transportation and electrical signal transmission. The rotating component 146 is disposed on the first connecting component 102, located on the side of the second connecting component 116 near the first pipeline 300, and can rotate relative to the first connecting component 102 to realize the installation of the rotating component 146, so that the rotating component 146 can realize the function of rotating around the first connecting component 102. The first mounting component 162 is disposed on the rotating component 146 to achieve the installation and fixation of the first mounting component 162. When the rotating component 146 rotates, the first mounting component 162 can rotate relative to the rotating component 146. The first mounting component 162 can clamp the terminal device 200. After clamping the terminal device 200, the first mounting component 162 can fix the terminal device 200, so as to facilitate the operator's operation of the terminal device 200. Since the first mounting component 162 is mounted on the rotating component 146, after the terminal device 200 is mounted on the first mounting component 162, by rotating the rotating component 146, the terminal device 200 can rotate relative to the first connecting component 102, so that the operator can adjust the orientation of the operating surface of the terminal device 200 according to the actual use perspective, thereby improving the convenience of use and work efficiency.
[0032] Specifically, this application sets up a rotating component 146 rotatably connected to the first connecting component 102, and a first mounting component 162 mounted on the rotating component 146. After the terminal device 200 is mounted on the rotating component 146, the rotating component 146 enables the terminal device 200 to rotate relative to the first connecting component 102, thereby achieving a 360° rotation function of the terminal device 200 around the first connecting component 102. This solves the technical problem that after the terminal device 200 is fixed, the orientation of the operating surface of the terminal device 200 cannot be adjusted according to the actual viewing angle of the operator, which is very inconvenient to use.
[0033] Specifically, by setting the first mounting component 162 to clamp or release the terminal device 200, the terminal device 200 can be quickly picked up and put down.
[0034] Specifically, the first pipeline 300 is a flexible hose, and a liquid medium flows inside the flexible hose.
[0035] Specifically, the connector assembly 100 is a hydraulic-electric dual-channel connector used to connect the terminal equipment 200, the first pipeline 300, the second pipeline 500 and the cable 400. It can be used in terminal control applications for remote fluid transportation, providing an electrical signal transmission channel for the control terminal while realizing fluid transportation.
[0036] In addition, the connector assembly 100 in the above embodiments provided by the present invention may also have the following additional technical features:
[0037] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0038] like Figure 2 As shown, the first connecting assembly 102 includes a first connector 104, a first conduit 106, and a first mounting component 108. One end of the first conduit 106 is connected to one end of the first connector 104; the first mounting component 108 is disposed on the side of the first conduit 106 near the first connector 104 and is connected to the second connecting assembly 116, and the cable 400 can pass through the first mounting component 108 and the second connecting assembly 116.
[0039] In this embodiment, the first connecting assembly 102 includes a first connector 104, a first pipe 106, and a first mounting component 108. One end of the first pipe 106 is connected to one end of the first connector 104 to enable installation between the first pipe 106 and the first connector 104. The other end of the first connector 104 is connected to the second pipe 500, and the other end of the first pipe 106 is connected to the first pipe 300 to facilitate the flow of liquid media. The first mounting component 108 is disposed on the side of the first pipe 106 near the first connector 104 and is connected to the second connecting assembly 116 to enable installation and fixation of the first mounting component 108. By providing the first mounting component 108, a cable 400 can pass through the first mounting component 108 and the second connecting assembly 116 to make an electrical connection with the terminal device 200, so that the cable 400 on the first pipe 300 can be connected to the terminal device 200.
[0040] Specifically, the first joint 104 is welded to the first pipe 106 to achieve the connection between the first joint 104 and the first pipe 106.
[0041] Specifically, the first connector 104 and the first pipe 106 are an integral structure to achieve the connection between the first connector 104 and the first pipe 106.
[0042] Specifically, the first mounting component 108 is connected to the first conduit 106 so that the cable 400 of the first conduit 300 can pass through the first mounting component 108 and the second connecting component 116.
[0043] Specifically, the first mounting component 108 and the first pipe 106 are an integral structure. The first mounting component 108 and the first pipe 106 are integrated by machining, which can improve the stability of the structure.
[0044] Specifically, such as Figure 2 and Figure 10 As shown, the first connector 104 is a female quick connector, the second pipeline 500 is an external pipeline, and one end of the second pipeline 500 is provided with a male quick connector 600, thereby enabling the first connector 104 to achieve quick connection with the male quick connector 600 in the external pipeline.
[0045] Specifically, the diameter of the first pipe 106 is smaller than the diameter of the first connector 104. The first connector 104 is provided with a groove. The first connecting assembly 102 also includes a first sealing element 110, which is located in the first groove and close to the first pipe 106. It is used to achieve end face sealing with the male quick connector 600 of the second pipe 500 to prevent leakage of liquid medium.
[0046] Specifically, a fixing earring 112 is provided on the outer wall of the first connector 104. The fixing earring 112 is rotatably connected to the first connector 104 through a connecting pin 114, and is used to lock with the male quick connector 600.
[0047] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0048] like Figure 3 , Figure 4 and Figure 5 As shown, the second connection assembly 116 includes a second mounting component 118, a wiring component 120, a connector 134, and a third mounting component 136. The second mounting component 118 is sleeved on the first pipe 106 and connected to one end of the first connector 104; the wiring component 120 is disposed on the second mounting component 118 and connected to the first mounting component 108; one end of the connector 134 is disposed on the wiring component 120, and the other end of the connector 134 can be electrically connected to the terminal device 200; the third mounting component 136 is disposed on the end of the second mounting component 118 away from the first connector 104 and can be connected to the rotating assembly 146.
[0049] In this embodiment, the second connection assembly 116 includes a second mounting component 118, a wiring component 120, a connector 134, and a third mounting component 136. The second mounting component 118 is sleeved on the first conduit 106 and connected to one end of the first connector 104 to achieve installation and fixation of the second mounting component 118. The wiring component 120 is disposed on the second mounting component 118 and connected to the first mounting component 108 to achieve installation and fixation of the wiring component 120, so that one end of the cable 400 can enter the wiring component 120 through the first mounting component 108. One end of the connector 134 is disposed on the wiring component 120, and the other end of the connector 134 can be electrically connected to the terminal device 200, so that one end of the connector 134 can be electrically connected to the cable 400 in the wiring component 120. This allows the wiring component 120 to provide installation space for the connection between the connector 134 and the cable 400, thereby realizing the electrical connection between the cable 400 of the first conduit 300 and the terminal device 200 to achieve the transmission of electrical signals. The third mounting component 136 is disposed at the end of the second mounting component 118 away from the first connector 104, and can be connected to the rotating assembly 146 to realize the installation and fixation of the third mounting component 136, so as to facilitate the rotation of the rotating assembly 146.
[0050] Specifically, the second mounting component 118 is connected to the first connector 104 by a first bolt 140.
[0051] Specifically, the second connecting assembly 116 further includes a second seal 142, which is disposed on the side of the second mounting component 118 facing the first connector 104 and located between the first connector 104 and the second mounting component 118, thereby achieving a seal between the second connecting assembly 116 and the first connecting assembly 102.
[0052] Specifically, the connector 134 is an electrical connector. The cable 400 includes a tube wall core wire 420 and an internal core wire 410. The internal core wire 410 is located on the inner wall of the first conduit 300, and the tube wall core wire 420 is disposed on the inner wall of the first conduit 300, thereby realizing the transmission of electrical signals. One end of the tube wall core wire 420 can pass through the first mounting component 108 and the wiring component 120, and is connected to one end of the connector 134 inside the wiring component 120. One end of the internal core wire 410 can pass through the wiring component 120, and is connected to one end of the connector 134 inside the wiring component 120. The other end of the connector 134 can be electrically connected to the terminal device 200. This achieves both electrical connection of the tube wall core wire 420 and electrical connection when the cable is routed inside the conduit. This solves the technical problem that the hydraulic-electric dual-channel connector can only achieve electrical connection of the tube wall core wire 420, but cannot achieve electrical connection when the cable is routed inside the conduit.
[0053] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0054] like Figure 6 As shown, the rotating assembly 146 includes a rotating component 148 and a supporting component 152. The rotating component 148 is sleeved on the first pipe 106, located on the side of the second connecting assembly 116 away from the first connector 104, and is rotatable relative to the first pipe 106; one end of the supporting component 152 is connected to the rotating component 148, and the other end of the supporting component 152 is connected to the first mounting assembly 162.
[0055] In this embodiment, the rotating assembly 146 includes a rotating component 148 and a supporting component 152. The rotating component 148 is sleeved on the first pipe 106, located on the side of the second connecting assembly 116 away from the first connector 104, and is rotatable relative to the first pipe 106 to achieve the installation of the rotating component 148, allowing the rotating component 148 to rotate relative to the first pipe 106. One end of the supporting component 152 is connected to the rotating component 148, and the other end of the supporting component 152 is connected to the first mounting assembly 162 to achieve the installation and fixation of the supporting component 152, so that the supporting component 152 can support the first mounting assembly 162, thereby ensuring the stability of the terminal device 200 after installation. By rotating the rotating component 148, the position of the terminal device 200 can be rotated, thereby changing the orientation of the operating surface of the terminal device 200 and improving the convenience of use.
[0056] Specifically, the rotating component 148 and the supporting component 152 are an integral structure, which can improve the stability of the structure.
[0057] Specifically, the rotating component 148 is capable of rotating 360° around the center of the first pipe 106.
[0058] Specifically, the electrical connection between the connector 134 and the terminal device 200 is through a spring-loaded flexible cable with plugs at both ends. When the terminal device 200 rotates 360° around the central axis of the first connection component 102, the spring-loaded flexible cable has a certain amount of extension and retraction, which can meet the needs of the 360° rotation of the terminal device 200.
[0059] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0060] like Figure 6 As shown, the rotating component 148 is provided with a first mounting hole 150, and the rotating assembly 146 also includes a first limiting component 154, which passes through the first mounting hole 150 and can abut against the third mounting component 136.
[0061] In this embodiment, the rotating component 148 is provided with a first mounting hole 150, and a first limiting component 154 passes through the first mounting hole 150 and abuts against the third mounting component 136, thereby limiting the rotation of the rotating component 148. During use, rotating the rotating component 148 drives the terminal device 200 to move. After adjusting the operating surface of the terminal device 200 to a predetermined position, the first limiting component 154 passes through the first mounting hole 150 and abuts against the third mounting component 136, thereby restricting the movement of the rotating component 148 and preventing the orientation of the operating surface of the terminal device 200 from changing due to the rotation of the rotating component 148 during use. When it is necessary to change the orientation of the operating surface of the terminal device 200, the first limiting component 154 can be moved away from the third mounting component 136, thereby unlocking the rotating component 148. Rotating the rotating component 148 changes the orientation of the operating surface of the terminal device 200.
[0062] Specifically, the first limiting component 154 is a locking pin, the first mounting hole 150 is a threaded hole, the locking pin passes through the first mounting hole 150 and is threadedly connected to the first mounting hole 150, and by rotating the locking pin, one end of the locking pin can be made to abut against or move away from the third mounting component 136.
[0063] Specifically, a positioning groove 144 is provided on the third mounting component 136. There are multiple positioning grooves 144, which are spaced apart. When positioning and locking the rotating component 148, a ball head is provided at one end of the locking pin. The ball head is inserted into the positioning groove 144 to realize the positioning and locking of the rotating component 148.
[0064] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0065] like Figure 3 and Figure 6 As shown, the third mounting component 136 has a plurality of first grooves 138 on the side facing the rotating component 148, and the rotating component 148 has a second groove 156 on the end face of the end facing the third mounting component 136. The rotating component 146 also includes a first elastic member 158 and a rolling member 160. One end of the first elastic member 158 is located in the second groove 156, and the other end of the first elastic member 158 faces one of the first grooves 138; the rolling member 160 is connected to the other end of the first elastic member 158 and can move within the plurality of first grooves 138.
[0066] In this embodiment, the third mounting component 136 has a plurality of first grooves 138 on the side facing the rotating component 148 to achieve the arrangement of the plurality of first grooves 138. A second groove 156 is provided on the end face of the rotating component 148 facing the third mounting component 136 to achieve the arrangement of the second groove 156. The rotating component 146 also includes a first elastic member 158 and a rolling member 160. One end of the first elastic member 158 is located within the second groove 156, and the other end of the first elastic member 158 faces one of the plurality of first grooves 138 to achieve the installation and fixation of the first elastic member 158. The rolling member 160 is connected to the other end of the first elastic member 158 and can move within the plurality of first grooves 138 to achieve the installation and fixation of the rolling member 160. By setting the first elastic element 158 and the rolling element 160, when the rotating component 148 rotates, the rolling element 160 can compress the first elastic element 158, so that the rolling element 160 can move within the multiple first grooves 138. That is, when the rotating component 148 rotates, when the rolling element 160 needs to compress the first elastic element 158, it needs to overcome a certain resistance, thereby realizing the damped movement of the rotating component 148. Therefore, when the rotating component 148 is not rotated, the position of the terminal device 200 can be avoided from changing due to the rotation of the rotating component 148.
[0067] Specifically, the first elastic element 158 is a spring, and the rolling element 160 is a ball. When the rotating component 148 rotates, the ball compresses the spring, causing the ball to move in the first groove 138, ultimately achieving the damped movement of the rotating component 148. By setting the rotating component 148 as a damping mechanism, it can be ensured that the rotating assembly 146 does not rotate during normal use. Furthermore, the rotating assembly 146 is also equipped with a first limiting element 154 to further ensure that the rotating assembly 146 does not rotate during normal use, thus guaranteeing safe operation.
[0068] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0069] like Figure 3 , Figure 4 and Figure 5 As shown, the wiring component 120 includes a housing 122, a connector 126, and a first mounting plate 128. The housing 122 has a second cavity 124; one end of the connector 126 is connected to the housing 122 and communicates with the second cavity 124, and the other end of the connector 126 communicates with the first mounting component 108; the first mounting plate 128 is disposed on the other side of the housing 122 and is connected to the connector 134.
[0070] In this embodiment, the wiring component 120 includes a housing 122, a connector 126, and a first mounting plate 128. The housing 122 has a second cavity 124. One end of the connector 126 is connected to the housing 122 and communicates with the second cavity 124. The other end of the connector 126 communicates with the first mounting component 108, so as to realize the installation and fixation of the housing 122 and the connector 126, so that the cable 400 at one end of the first conduit 300 can enter the second cavity 124 through the first mounting component 108 and the connector 126 to connect with the connector 134. The second cavity 124 can provide installation space for the installation between the cable 400 and the connector 134. The first mounting plate 128 is disposed on the other side of the housing 122 and connected to the connector 134 to realize the installation and fixation of the first mounting plate 128, so as to facilitate the installation of the connector 134, so that the cable 400 can be installed in the second cavity 124 with one end of the connector 134, thereby enabling the transmission of electrical signals between the cable 400 and the terminal device 200.
[0071] Specifically, a boundary terminal block is provided in the second cavity 124, thereby realizing the electrical connection between the connector 134 and the 400 cable through the boundary terminal block.
[0072] Specifically, the wiring component 120 also includes a second bolt 130, which passes through the first mounting plate 128 and connects to the housing 122 to achieve the installation and fixation of the first mounting plate 128.
[0073] Specifically, one end of the connector 134 is threadedly connected to the first mounting plate 128 to enable the installation of the connector 134 and facilitate the replacement of the connector 134.
[0074] Specifically, the wiring component 120 also includes a third bolt 132, which passes through the housing 122 and connects to the second mounting component 118 to achieve the installation of the housing 122.
[0075] Specifically, one end of the internal core wire 410 of the first conduit passes through the first mounting component 108, the connector 126 and the housing 122, and is electrically connected to one end of the connector 134 in the second cavity 124. One end of the connector 126 is threadedly connected to the first mounting component 108, so that the connector 126 can fix and seal the internal core wire 410 in the first conduit 300.
[0076] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0077] like Figure 7 and Figure 8As shown, the first mounting assembly 162 includes a second mounting plate 164, a first clamping part 166, and a second clamping part 168. One side of the second mounting plate 164 is connected to the rotating assembly 146; the first clamping part 166 is disposed on the side of the second mounting plate 164 opposite to the rotating assembly 146; the second clamping part 168 is disposed on the side of the second mounting plate 164 opposite to the rotating assembly 146 and is disposed opposite to the first clamping part 166. The second clamping part 168 and the second clamping part 168 are capable of clamping the terminal device 200.
[0078] In this embodiment, the first mounting assembly 162 includes a second mounting plate 164, a first clamping part 166, and a second clamping part 168. One side of the second mounting plate 164 is connected to the rotating assembly 146 to install and fix the second mounting plate 164, allowing the second mounting plate 164 to move with the rotating assembly 146. The first clamping part 166 is disposed on the side of the second mounting plate 164 opposite to the rotating assembly 146 to facilitate the installation of the first clamping part 166. The second clamping part 168 is disposed on the side of the second mounting plate 164 away from the rotating assembly 146 and is disposed opposite to the first clamping part 166, thereby forming a clamping space between the first clamping part 166 and the second clamping part 168. The first clamping part 166 and the second clamping part 168 can clamp the terminal device 200, thereby fixing the terminal device 200 and preventing the terminal device 200 from falling off after installation, thus improving the stability of the terminal device 200 after installation.
[0079] Specifically, the second mounting plate 164 is a fixed frame, and the second mounting plate 164 is connected to the support component 152 by a fourth bolt 176. The fourth bolt 176 passes through the second mounting plate 164 and is connected to the support component 152, thereby improving the stability of the second mounting plate 164 after installation.
[0080] Specifically, the first clamping part 166 is a movable claw, and the second clamping part 168 is a fixed claw. By setting the first clamping part 166 and the second clamping part 168 in the form of claws, it is convenient to clamp the terminal device 200. The first clamping part 166 is fixedly connected to the guide part 174, and the second clamping part 168 is fixedly connected to the second mounting plate 164 to improve the stability of the first clamping part 166 and the second clamping part 168 after installation.
[0081] Specifically, when the terminal device 200 is installed and removed, the second elastic element 172 automatically returns to the spring, the first clamping part 166 is pulled out, and during the pulling out process, the first clamping part 166 motion guide part 174 plays a guiding role. When pulled out, the automatic return spring is stretched. After the person releases the hand, the automatic return spring returns to its original position, driving the first clamping part 166 to automatically return to its original position.
[0082] Specifically, the first mounting assembly 162 also includes a locking bolt 178. After the automatic spring returns to its original position, the locking bolt 178 passes through the first clamping part 166 and connects to the second mounting plate 164, thereby limiting the first clamping part 166 and preventing it from moving again, thus ensuring that the terminal device 200 is securely fixed.
[0083] Specifically, the first mounting assembly 162 also includes a second limiting component 180, one end of which is connected to the second mounting plate 164 and located on at least one side of the terminal device 200.
[0084] Specifically, the second limiting component 180 is snap-fitted or threadedly connected to the second mounting plate 164.
[0085] Specifically, there are multiple second limiting components 180. Some of the multiple second limiting components 180 are disposed on one side of the terminal device 200, and another part of the multiple second limiting components 180 are disposed on the other side of the terminal device 200, thereby restricting the forward and backward movement of the terminal device 200.
[0086] Specifically, the first mounting component 162 also includes a protective pad 182, which is disposed on the side of the second mounting plate 164 away from the support component. After the terminal device 200 is installed, the protective pad 182 is positioned between the second mounting plate 164 and the terminal device 200, thereby protecting the terminal device 200 and preventing the bottom of the terminal device 200 from being worn.
[0087] Specifically, the protective pad 182 is a polytetrafluoroethylene (PTFE) gasket. The use of PTFE gasket can prevent corrosion and wear of the terminal equipment 200, thus extending the service life of the terminal equipment 200.
[0088] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0089] like Figure 7 and Figure 8 As shown, the second mounting plate 164 has a third cavity 170, and the first mounting assembly 162 further includes a second elastic member 172 and a guide portion 174. The second elastic member 172 is disposed within the third cavity 170, and one end of the second elastic member 172 is connected to the first mounting plate 128; the guide portion 174 is disposed within the third cavity 170, one end of the guide portion 174 is connected to the other end of the second elastic member 172, and the other end of the guide portion 174 is connected to the first clamping portion 166. The guide portion 174 is movable relative to the first mounting plate 128 between a first position and a second position.
[0090] In this embodiment, the second mounting plate 164 has a third cavity 170, and the first mounting assembly 162 further includes a second elastic member 172 and a guide portion 174. The second elastic member 172 is disposed within the third cavity 170, and one end of the second elastic member 172 is connected to the first mounting plate 128 to realize the installation and fixation of the second elastic member. By disposing of the second elastic member 172 within the first mounting plate 128, the space occupied by the second elastic member 172 can be reduced. The guide portion 174 is disposed within the third cavity 170, one end of the guide portion 174 is connected to the other end of the second elastic member 172, and the other end of the guide portion 174 is connected to the first clamping portion 166 to realize the installation of the guide portion 174. The guide portion 174 can move relative to the first mounting plate 128 between a first position and a second position, thereby allowing the guide portion 174 to drive the first clamping portion 166 to move, so that the first clamping portion 166 and the second clamping portion 168 can clamp or release the terminal device 200. When it is necessary to clamp the terminal device 200, the guide portion 174 can be pulled outward to the first position, causing the first clamping portion 166 to move away from the second clamping portion 168, so as to place the terminal device 200 onto the first mounting plate 128. After the terminal device 200 is placed on the first mounting plate 128, the guide portion 174 is released, and the guide portion 174 moves to the first position under the pulling force of the second elastic member 172, so that the first clamping portion 166 and the second clamping portion 168 can clamp the terminal device 200 simultaneously, thereby improving the stability of the terminal device 200 after it is fixed. In addition, by providing the guide portion 174, the movement of the first clamping portion 166 can be guided.
[0091] This embodiment provides a connector assembly 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0092] like Figure 1 As shown, the connector assembly 100 also includes a second mounting assembly 184, which is sleeved on the first connecting assembly 102, and one end of the first pipeline 300 is located between the second mounting assembly 184 and the first connecting assembly 102.
[0093] In this embodiment, the connector assembly 100 further includes a second mounting assembly 184. The second mounting assembly 184 is sleeved on the first connecting assembly 102, and one end of the first pipeline 300 is located between the second mounting assembly 184 and the first connecting assembly 102. By providing the second mounting assembly 184, the second mounting assembly 184 can fix one end of the first pipeline 300, thereby realizing the connection between the first pipeline 300 and the first connecting assembly 102, thus ensuring the stability of liquid medium and electrical signal transmission.
[0094] Specifically, the second mounting component 184 is a clamp, which can fix the first pipe 300 when one end of the first pipe 300 is installed on the first mounting component 162.
[0095] In this application, the term "multiple" refers to two or more unless otherwise expressly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0096] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0097] The above are preferred embodiments of the present invention. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A connector assembly (100), characterized in that, For connecting a terminal device (200), a first conduit (300), a second conduit (500), and a cable (400), wherein the cable (400) is disposed in the first conduit (300), the connector assembly (100) includes: A first connecting component (102) has a first cavity (186), one end of the first connecting component (102) can be connected to the first pipeline (300), and the other end of the first connecting component (102) can be connected to the second pipeline (500). A liquid medium can flow in the first cavity (186), the first pipeline (300), and the second pipeline (500). The second connecting component (116) is sleeved on the first connecting component (102), and the cable (400) can pass through the second connecting component (116), the first connecting component (102) and be electrically connected to the terminal device (200); A rotating assembly (146) is disposed on the first connecting assembly (102), located on the side of the second connecting assembly (116) near the first pipeline (300), and is rotatable relative to the first connecting assembly (102); A first mounting component (162) is disposed on the rotating component (146) and is capable of clamping the terminal device (200). The first connection component (102) includes: First connector (104); A first pipe (106) is connected at one end to one end of the first connector (104); The first mounting component (108) is disposed on the side of the first pipe (106) near the first connector (104) and connected to the second connecting component (116). The cable (400) can pass through the first mounting component (108) and the second connecting component (116). The second connection component (116) includes: The second mounting component (118) is sleeved on the first pipe (106) and connected to one end of the first connector (104); A wiring component (120) is disposed on the second mounting component (118) and connected to the first mounting component (108); A connector (134), one end of which is disposed on the wiring component (120), and the other end of which can be electrically connected to the terminal device (200); The third mounting component (136) is disposed at the end of the second mounting component (118) away from the first connector (104) and can be connected to the rotating assembly (146); The rotating assembly (146) includes: A rotating component (148) is sleeved on the first pipe (106), located on the side of the second connecting assembly (116) away from the first connector (104), and is rotatable relative to the first pipe (106). A support component (152), one end of which is connected to the rotating component (148), and the other end of which is connected to the first mounting assembly (162); The rotating component (148) is provided with a first mounting hole (150), and the rotating assembly (146) further includes: The first limiting component (154) passes through the first mounting hole (150) and can abut against the third mounting component (136); The third mounting component (136) has a plurality of first grooves (138) on the side facing the rotating component (148), and the rotating component (148) has a second groove (156) on the end face of the end facing the third mounting component (136). The rotating assembly (146) further includes: A first elastic element (158) has one end located in the second groove (156) and the other end of the first elastic element (158) facing one of the plurality of first grooves (138). A rolling element (160) is connected to the other end of the first elastic element (158) and is capable of moving within a plurality of the first grooves (138); The wiring component (120) includes: The housing (122) has a second cavity (124). A connector (126) is provided, one end of which is connected to the housing (122) and communicates with the second cavity (124), and the other end of which is communicated with the first mounting component (108). A first mounting plate (128) is disposed on the other side of the housing (122) and connected to the connector (134).
2. The connector assembly (100) according to claim 1, characterized in that, The first installation component (162) includes: A second mounting plate (164) is connected on one side to the rotating assembly (146); A first clamping part (166) is disposed on the side of the second mounting plate (164) opposite to the rotating assembly (146); The second clamping part (168) is disposed on the side of the second mounting plate (164) away from the rotating assembly (146) and is disposed opposite to the first clamping part (166). The first clamping part (166) and the second clamping part (168) are capable of clamping the terminal device (200).
3. The connector assembly (100) according to any one of claims 1 to 2, characterized in that, Also includes: The second mounting component (184) is sleeved on the first connecting component (102), and one end of the first pipeline (300) is located between the second mounting component (184) and the first connecting component (102).