High-reliability conductive copper pipe easy to install
Through the movable protective sleeve and magnetic dustproof mesh design, the problem of blockage of the heat dissipation hole of the conductive copper tube is solved, convenient maintenance and heat dissipation effect is achieved, and the stability and reliability of the conductive copper tube is improved.
Patent Information
- Application Number
- CN202422028002.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-20
AI Technical Summary
After long-term use, the heat dissipation holes of existing conductive copper tubes are easily blocked by dust, resulting in heat accumulation. The protective case needs to be disassembled and cleaned regularly, which affects the convenience and reliability of use.
The first and second protective sleeves for movable connections are designed, with silicone pads and heat dissipation holes inside. The dustproof net connected by magnetic suction is convenient for regular maintenance. Combined with the tight connection between the fixed components and the copper nose, the heat dissipation holes are ensured unobstructed.
It realizes convenient maintenance of dustproof nets, keeps the heat dissipation holes unobstructed, reduces the temperature of conductive copper tubes, improves working stability and reliability, and reduces installation time and labor costs.
Smart Images

Figure CN223231471U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of conductive copper tubes, and in particular relates to a highly reliable conductive copper tube that is easy to install. Background Art
[0002] Conductive copper tubing is a type of copper tubing with excellent electrical conductivity, widely used in various fields. Made from pure copper or copper alloys through a series of processing techniques, it exhibits excellent electrical conductivity and corrosion resistance. Depending on the shape, conductive copper tubing can be categorized into various sizes, including round and rectangular.
[0003] Announcement No. "CN218587523U" is a conductive copper tube that is easy to install and fix, including a conductive copper tube body, wherein the outer sides of the conductive copper tube body are respectively provided with a first protective shell and a second protective shell, and the left and right ends of the conductive copper tube body are provided with a screw sleeve portion, and the left and right ends of the conductive copper tube body are threadedly connected to a copper nose through the screw sleeve portion, and the backs of the first protective shell and the second protective shell are hingedly connected by a hinge assembly, and the fronts of the first protective shell and the second protective shell are fixedly installed with a mounting plate, and the lower end of the mounting plate on the front of the first protective shell is fixedly connected to a fixing block. The utility model adopts the above structure, and on the basis of the installation of the first protective shell and the second protective shell, an aluminum layer is provided on the inner side, and a silicone layer is provided at the lower end of the aluminum layer to contact the conductive copper tube body, and aluminum teeth are provided at the upper end of the aluminum layer at the heat dissipation hole position of the first protective shell and the second protective shell, which can facilitate heat dissipation.
[0004] Although the above-mentioned utility model adopts the above-mentioned structure, on the basis of the installation of the first protective shell and the second protective shell, an aluminum layer is arranged on the inner side and a silicone layer is arranged at the lower end of the aluminum layer to contact the conductive copper tube body, and aluminum teeth are arranged at the upper end of the aluminum layer at the heat dissipation hole position of the first protective shell and the second protective shell, which can facilitate heat dissipation. However, after long-term use, the heat dissipation holes will be blocked by dust, resulting in the heat generated inside the conductive copper tube cannot be discharged normally, and the heat accumulates inside the copper tube. As the heat continues to accumulate, the temperature of the conductive copper tube will gradually increase, affecting the performance of the copper tube itself. The protective shell needs to be cleaned regularly to keep the heat dissipation holes unobstructed, which requires the protective shell to be disassembled and reinstalled, which is very troublesome. Utility Model Content
[0005] In response to the problems mentioned in the background technology, the purpose of the present invention is to provide a highly reliable conductive copper tube that is easy to install, so as to solve the problem that the heat dissipation holes will be blocked by dust after long-term use, resulting in the heat generated inside the conductive copper tube cannot be discharged normally. The heat accumulates inside the copper tube, and the protective shell needs to be cleaned regularly to keep the heat dissipation holes unobstructed. This requires the protective shell to be disassembled and reinstalled, which is a very troublesome problem.
[0006] The above technical objectives of the present invention are achieved through the following technical solutions:
[0007] A highly reliable conductive copper tube that is easy to install comprises a conductive copper tube body, a first protective sleeve and a second protective sleeve are installed on the outside of the conductive copper tube body, the first protective sleeve and the second protective sleeve are movably connected, the inner walls of the first protective sleeve and the second protective sleeve are fixedly connected with a silicone pad, the bottom end of the first protective sleeve is symmetrically fixedly connected with a connecting block, a fixing component is installed inside the connecting block, the outer walls of the first protective sleeve and the second protective sleeve are both provided with an installation groove, the outer walls of the first protective sleeve and the second protective sleeve are both symmetrically provided with a buckle groove, the buckle groove is connected to the installation groove, one end of the interior of the installation groove is symmetrically provided with a heat dissipation hole, and the heat dissipation hole is provided inside the heat dissipation hole. The inside of the mounting slot is symmetrically connected with a mounting frame, and a dustproof net is fixedly connected inside the mounting frame. Copper noses are symmetrically connected at both ends of the conductive copper tube body. Magnetic slots are symmetrically opened at one end of the mounting slot, and a magnetic block is symmetrically fixedly connected to the end of the mounting slot close to the mounting slot. The mounting frame and the mounting slot are plugged in, and the magnetic block and the magnetic slot are magnetically connected, which facilitates regular maintenance of the dustproof net for users, thereby keeping the heat dissipation holes unobstructed and allowing air to circulate freely, thereby effectively taking away the heat generated by the conductive copper tube during work, helping to reduce the temperature of the conductive copper tube and improve the working stability and reliability of the conductive copper tube.
[0008] As an optimal technical solution, the two ends of the conductive copper tube body are symmetrically fixed with fixing bolts, and a threaded hole is opened on the copper nose close to the end of the conductive copper tube. The threaded hole and the fixing bolt are threadedly connected, so that a tight connection is formed between the conductive copper tube and the copper nose, effectively preventing loosening caused by vibration or temperature changes.
[0009] As an optimal technical solution, the copper nose is arranged in a flat shape at one end away from the conductive copper tube body, and a mounting hole is opened on the outer wall of the copper nose. The mounting hole is arranged in the flat part of the copper nose, which can withstand greater tension and shear force to ensure the reliability of the connection.
[0010] As an optimal technical solution, the fixing assembly includes a cavity, a reset spring, a movable plate and a locking block. A cavity is opened inside the connecting block, one end of the cavity is symmetrically fixedly connected to the reset spring, and the other end of the reset spring is fixedly connected to the movable plate. The movable plate and the cavity are slidingly connected, and the end of the movable plate away from the reset spring is fixedly connected to the locking block. The end of the locking block away from the movable plate extends out of the side end of the connecting block, and the bottom end of the locking block is set as an inclined surface. The upper end of the second protective cover is symmetrically opened with a connecting groove, and the connecting groove and the connecting block are plug-in. There is a locking groove, which runs through the second protective cover. The locking groove and the locking block are snap-connected. An unlocking block is slidably connected inside the locking groove. The unlocking block extends out of the outer wall of the second protective cover at one end away from the locking block. The two ends of the locking block are symmetrically fixedly connected to the limiting blocks. Limited grooves are symmetrically opened at both ends of the locking groove. The limiting grooves and the limiting blocks are slidably connected, which makes it convenient for users to assemble the protective cover and the conductive copper tube and reduces the time and labor costs required for installation. In addition, the protective cover can also play a role in corrosion resistance and moisture resistance, thereby extending the service life of the conductive copper tube.
[0011] As an optimal technical solution, the bottom end of the first protective cover is symmetrically fixed with a positioning column, and the upper end of the second protective cover is symmetrically provided with a positioning groove, which is plugged into the positioning column. The design of the positioning column and the positioning groove can ensure that the first protective cover and the second protective cover can be accurately aligned when connected, avoiding the problem of loose or loose connection caused by position deviation.
[0012] In summary, the present invention has the following beneficial effects:
[0013] First, in the present invention, by pinching the two ends of the installation frame through the buckle slot, and then pulling the installation frame outward, the installation frame and the dustproof net are taken out from the inside of the installation slot, and at the same time, the magnetic attraction block and the magnetic attraction slot end the magnetic attraction connection, and then the dustproof net inside the installation frame is cleaned and maintained. After cleaning and maintenance, the installation frame is inserted into the installation slot, so that the installation frame and the installation slot are plugged in, and at the same time, the magnetic attraction block is inserted into the magnetic attraction slot, and the installation frame and the dustproof net are installed into the installation slot to complete the maintenance of the dustproof net, which is convenient for users to perform regular maintenance on the dustproof net, thereby keeping the heat dissipation holes unobstructed and allowing air to circulate freely, thereby effectively taking away the heat generated by the conductive copper tube during operation, helping to reduce the temperature of the conductive copper tube and improve the working stability and reliability of the conductive copper tube;
[0014] Second, in the present invention, the conductive copper tube body is placed inside the second protective cover, and then the first protective cover and the second protective cover are merged, so that the connecting block is inserted into the connecting groove. During the insertion process, the extrusion force exerts pressure on the inclined surface of the locking block, so that the locking block drives the movable plate to press against the reset spring, the reset spring is compressed, and the locking block retracts into the cavity. When the locking block moves to the locking groove, the reset spring is reset, and the movable plate rebounds to drive the locking block to pop out, and the locking block is clamped with the locking groove to complete the assembly of the first protective cover and the second protective cover, which is convenient for users to assemble the protective cover and the conductive copper tube, reducing the time and labor costs required for installation. In addition, the protective cover can also play a role in corrosion prevention and moisture prevention, thereby extending the service life of the conductive copper tube. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0016] Figure 2 This is a schematic diagram of the three-dimensional structure of the first protective cover of the utility model;
[0017] Figure 3 This is a schematic diagram of the three-dimensional structure of the conductive copper tube body of the utility model;
[0018] Figure 4 It is a schematic diagram of the cross-sectional three-dimensional structure of the fixing component of the present utility model.
[0019] Figure numerals: 1. Conductive copper tube body; 2. First protective cover; 3. Second protective cover; 4. Silicone pad; 5. Mounting slot; 6. Copper nose; 7. Threaded hole; 8. Mounting hole; 9. Fixing bolt; 10. Heat dissipation hole; 11. Mounting frame; 12. Dustproof net; 13. Buckle slot; 14. Magnetic block; 15. Magnetic slot; 16. Connecting block; 17. Connecting slot; 18. Fixing assembly; 181. Cavity; 182. Reset spring; 183. Moving plate; 184. Locking block; 19. Locking slot; 20. Unlocking block; 21. Limit block; 22. Limit slot; 23. Positioning column; 24. Positioning slot. DETAILED DESCRIPTION
[0020] Example
[0021] refer to Figures 1 to 4, the embodiment of the present invention describes a highly reliable conductive copper tube that is easy to install, comprising a conductive copper tube body 1, a first protective cover 2 and a second protective cover 3 are installed on the outside of the conductive copper tube body 1, the first protective cover 2 and the second protective cover 3 are movably connected, the inner walls of the first protective cover 2 and the second protective cover 3 are fixedly connected with a silicone pad 4, the bottom end of the first protective cover 2 is symmetrically fixedly connected with a connecting block 16, a fixing component 18 is installed inside the connecting block 16, the outer walls of the first protective cover 2 and the second protective cover 3 are both provided with an installation groove 5, the outer walls of the first protective cover 2 and the second protective cover 3 are both symmetrically provided with a buckle groove 13, the buckle groove 13 is communicated with the installation groove 5, a heat dissipation hole 10 is symmetrically provided at one end of the interior of the installation groove 5, a mounting frame 11 is movably connected to the interior of the heat dissipation hole 10, a dustproof net 12 is fixedly connected to the interior of the mounting frame 11, and the conductive copper tube body 1 is symmetrically connected at both ends. The movable connection is provided with a copper nose 6, and a magnetic groove 15 is symmetrically opened at one end of the installation slot 5. The installation frame 11 is symmetrically fixed with a magnetic block 14 at one end close to the installation slot 5. The installation frame 11 is plugged into the installation slot 5, and the magnetic block 14 is magnetically connected to the magnetic groove 15. Through the buckle groove 13, pinch the two ends of the installation frame 11, and then pull the installation frame 11 outward to remove the installation frame 11 together with the dustproof net 12 from the inside of the installation slot 5. At the same time, the magnetic block 14 and the magnetic groove 15 end the magnetic connection, and then clean and maintain the dustproof net 12 inside the installation frame 11. After cleaning and maintenance, insert the installation frame 11 into the installation slot 5 so that the installation frame 11 is plugged into the installation slot 5. At the same time, the magnetic block 14 is inserted into the magnetic groove 15, and the installation frame 11 together with the dustproof net 12 is installed to the inside of the installation slot 5 to complete the maintenance of the dustproof net 12.
[0022] refer to Figure 1 The two ends of the conductive copper tube body 1 are symmetrically fixed with fixing bolts 9. A threaded hole 7 is opened on the copper nose 6 near one end of the conductive copper tube. The threaded hole 7 is threadedly connected to the fixing bolt 9. Fit the copper nose 6 to the two ends of the conductive copper tube, and then rotate the copper nose 6 so that the fixing bolt 9 is threadedly connected to the threaded hole 7 to complete the assembly of the conductive copper tube and the copper nose 6.
[0023] refer to Figure 1 The copper nose 6 is arranged in a flat shape at one end away from the conductive copper tube body 1. A mounting hole 8 is opened on the outer wall of the copper nose 6. The mounting hole 8 is arranged in the flat part of the copper nose 6. The conductive copper tube can be installed through the mounting hole 8 on the copper nose 6.
[0024] refer to Figure 4The fixing assembly 18 includes a cavity 181, a return spring 182, a movable plate 183 and a locking block 184. A cavity 181 is opened inside the connecting block 16, and a return spring 182 is symmetrically fixedly connected to one end of the cavity 181. The other end of the return spring 182 is fixedly connected to the movable plate 183. The movable plate 183 is slidingly connected to the cavity 181. The end of the movable plate 183 away from the return spring 182 is fixedly connected to the locking block 184. The end of the locking block 184 away from the movable plate 183 extends out of the side end of the connecting block 16. The bottom end of the locking block 184 is set as an inclined surface. The upper end of the second protective cover 3 is symmetrically opened with a connecting groove 17. The connecting groove 17 is plugged into the connecting block 16. A locking groove 19 is opened inside the connecting groove 17. The locking groove 19 The second protective cover 3 is penetrated, and the locking groove 19 and the locking block 184 are snap-connected. The conductive copper tube body 1 is placed inside the second protective cover 3, and then the first protective cover 2 and the second protective cover 3 are merged, so that the connecting block 16 is inserted into the connecting groove 17. During the insertion process, the extrusion force exerts pressure on the inclined surface of the locking block 184, so that the locking block 184 drives the movable plate 183 to press against the reset spring 182, and the reset spring 182 is compressed. At the same time, the locking block 184 retracts into the cavity 181. When the locking block 184 moves to the locking groove 19, the reset spring 182 is reset, and the movable plate 183 rebounds to drive the locking block 184 to pop out. The locking block 184 is snap-connected with the locking groove 19 to complete the assembly of the first protective cover 2 and the second protective cover 3.
[0025] refer to Figure 4 , an unlocking block 20 is slidably connected to the locking groove 19, and the end of the unlocking block 20 away from the locking block 184 extends out of the outer wall of the second protective cover 3. The two ends of the locking block 184 are symmetrically fixedly connected to the limiting blocks 21, and the limiting grooves 22 are symmetrically provided at both ends of the locking groove 19. The limiting grooves 22 and the limiting blocks 21 are slidably connected, pushing the unlocking block 20 so that the unlocking block 20 slides inside the locking groove 19. At the same time, the limiting block 21 slides inside the limiting groove 22, and the unlocking block 20 pushes the locking block 184, so that the locking block 184 drives the moving plate 183 to press against the reset spring 182. The reset spring 182 is compressed, and the locking block 184 retracts into the cavity 181. The locking block 184 ends the engagement with the locking groove 19, and then the first protective cover 2 is lifted up to complete the disassembly of the first protective cover 2 and the second protective cover 3.
[0026] refer to Figures 2 to 3 The bottom end of the first protective cover 2 is symmetrically fixed with a positioning column 23, and the upper end of the second protective cover 3 is symmetrically provided with a positioning groove 24. The positioning groove 24 and the positioning column 23 are plugged into each other. Place the conductive copper tube body 1 inside the second protective cover 3, then merge the first protective cover 2 and the second protective cover 3, and insert the positioning column 23 into the positioning groove 24.
[0027] Principle and advantages of use: First, place the conductive copper tube body 1 into the second protective cover 3, then merge the first protective cover 2 with the second protective cover 3, and insert the connecting block 16 into the connecting groove 17. During the insertion process, the extrusion force exerts pressure on the inclined surface of the locking block 184, so that the locking block 184 drives the movable plate 183 to press against the reset spring 182, and the reset spring 182 is compressed. At the same time, the locking block 184 retracts into the cavity 181. When the locking block 184 moves to the locking groove 19, the reset spring 182 is reset, and the movable plate 183 rebounds to drive the locking block 184 to pop out, and the locking block 184 and the locking 19 is snapped in place to complete the assembly of the first protective cover 2 and the second protective cover 3, and then the copper nose 6 is fitted with both ends of the conductive copper tube, and then the copper nose 6 is rotated to thread the fixing bolt 9 into the threaded hole 7 to complete the assembly of the conductive copper tube and the copper nose 6. The conductive copper tube can be installed through the mounting hole 8 on the copper nose 6. The mounting frame 11 can be pinched at both ends through the buckle groove 13, and then the mounting frame 11 is pulled outward to remove the mounting frame 11 together with the dustproof net 12 from the inside of the mounting groove 5. At the same time, the magnetic block 14 ends the magnetic connection with the magnetic groove 15, and then the dustproof net 12 inside the mounting frame 11 is cleaned and maintained;
[0028] The utility model facilitates regular maintenance of the dustproof net for users, thereby keeping the heat dissipation holes unobstructed and allowing air to circulate freely, thereby effectively taking away the heat generated by the conductive copper tube during operation, helping to reduce the temperature of the conductive copper tube and improving the working stability and reliability of the conductive copper tube.
Claims
1. A highly reliable conductive copper tube that is easy to install, comprising a conductive copper tube body (1), characterized in that: A first protective sleeve (2) and a second protective sleeve (3) are installed on the outer side of the conductive copper tube body (1), the first protective sleeve (2) and the second protective sleeve (3) are movably connected, the inner walls of the first protective sleeve (2) and the second protective sleeve (3) are fixedly connected with a silicone pad (4), the bottom end of the first protective sleeve (2) is symmetrically fixedly connected with a connecting block (16), a fixing assembly (18) is installed inside the connecting block (16), the outer walls of the first protective sleeve (2) and the second protective sleeve (3) are both provided with a mounting groove (5), the outer walls of the first protective sleeve (2) and the second protective sleeve (3) are both symmetrically provided with a buckle groove (13), the buckle groove (13) is communicated with the mounting groove (5), one end of the mounting groove (5) is symmetrically provided with a heat dissipation hole (10), the heat dissipation hole (10) is movably connected with a mounting frame (11) inside, the mounting frame (11) is fixedly connected with a dustproof net (12), and the two ends of the conductive copper tube body (1) are symmetrically and movably connected with copper noses (6).
2. The highly reliable conductive copper tube that is easy to install according to claim 1, characterized in that: A magnetic attraction groove (15) is symmetrically provided at one end of the interior of the installation groove (5); a magnetic attraction block (14) is symmetrically fixedly connected to one end of the installation frame (11) close to the installation groove (5); the installation frame (11) and the installation groove (5) are plug-connected, and the magnetic attraction block (14) and the magnetic attraction groove (15) are magnetically connected.
3. The easy-to-install, high-reliability conductive copper tube according to claim 1, characterized in that: The two ends of the conductive copper tube body (1) are symmetrically fixedly connected with fixing bolts (9); the copper nose (6) is provided with a threaded hole (7) at one end close to the conductive copper tube, and the threaded hole (7) is threadedly connected to the fixing bolt (9).
4. The easy-to-install, high-reliability conductive copper tube according to claim 1, characterized in that: The copper nose (6) is arranged in a flat shape at one end away from the conductive copper tube body (1), and a mounting hole (8) is provided on the outer wall of the copper nose (6). The mounting hole (8) is arranged in the flat part of the copper nose (6).
5. The easy-to-install, high-reliability conductive copper tube according to claim 1, characterized in that: The fixing assembly (18) includes a cavity (181), a return spring (182), a movable plate (183) and a locking block (184); a cavity (181) is provided inside the connecting block (16); one end of the cavity (181) is symmetrically fixedly connected to the return spring (182); the other end of the return spring (182) is fixedly connected to the movable plate (183); the movable plate (183) and the cavity (181) are slidably connected; one end of the movable plate (183) away from the return spring (182) is fixedly connected to the locking block (184); the end of the locking block (184) away from the movable plate (183) extends out of the side end of the connecting block (16); and the bottom end of the locking block (184) is set as an inclined surface.
6. The easy-to-install, high-reliability conductive copper tube according to claim 1, characterized in that: A connecting groove (17) is symmetrically provided at the upper end of the second protective sleeve (3), the connecting groove (17) and the connecting block (16) are plug-connected, a locking groove (19) is provided inside the connecting groove (17), the locking groove (19) passes through the second protective sleeve (3), and the locking groove (19) and the locking block (184) are snap-connected.
7. The easy-to-install, high-reliability conductive copper tube according to claim 6, characterized in that: An unlocking block (20) is slidably connected inside the locking groove (19), and one end of the unlocking block (20) away from the locking block (184) extends out of the outer wall of the second protective sleeve (3). The two ends of the locking block (184) are symmetrically fixedly connected to the limiting blocks (21). The two ends of the locking groove (19) are symmetrically provided with limiting grooves (22), and the limiting grooves (22) are slidably connected to the limiting blocks (21).
8. The easy-to-install, high-reliability conductive copper tube according to claim 1, characterized in that: The bottom end of the first protective cover (2) is symmetrically fixedly connected with a positioning column (23), and the upper end of the second protective cover (3) is symmetrically provided with a positioning groove (24), and the positioning groove (24) and the positioning column (23) are plugged.
Citation Information
Patent Citations
Conductive copper pipe convenient to install and fix
CN218587523U