Connection protection device for mechanical electrical pipeline
By designing tube shell A and tube shell B, and combining structures such as silicone sleeves, raised strips, rubber pads, bolts, magnetic blocks, and sponge rings, the problem of inconvenient disassembly and maintenance of existing mechanical and electrical pipeline connection protection devices is solved, achieving stable protection and heat dissipation effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-04-14
AI Technical Summary
Existing mechanical and electrical pipeline connection protection devices are inconvenient to disassemble and maintain, and are difficult to effectively prevent moisture infiltration and heat accumulation.
The design employs a shell A and a shell B, combined with a silicone sleeve, raised strips, rubber pads, bolts, magnetic blocks, and sponge rings. Through heat fusion, magnetic attraction, and bolt fixation, the connection tightness and protection effect are improved. The arc-shaped heat-conducting plate and porous shell are used for heat conduction and dissipation.
It achieves stable protection for mechanical and electrical pipeline connections, reduces moisture infiltration and heat accumulation, facilitates disassembly and assembly, and improves the tightness and heat dissipation effect of the protection device.
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Figure CN224123809U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of pipeline connection protection equipment, specifically to a connection protection device for mechanical and electrical pipelines. Background Technology
[0002] During the construction of electrical engineering pipelines, a connection joint is formed when two adjacent pipelines are connected. This joint is a relatively vulnerable part of the entire pipeline system, and protection is necessary to prevent damage. Patent number CN202322501222.9 discloses a connection protection device for mechanical and electrical engineering pipelines, which can prevent pipeline connection joints from being impacted or crushed, and also reduce the possibility of water erosion. However, in the use of connection protection equipment for mechanical and electrical pipelines, the connection is protected by two sets of protective cylinders screwed together, and the gaps are then filled and sealed with adhesive. This can easily lead to considerable inconvenience during subsequent disassembly, replacement, or maintenance. Therefore, we propose a connection protection device for mechanical and electrical pipelines. Utility Model Content
[0003] In view of the problems in the prior art, this utility model provides a connection protection device for mechanical and electrical pipelines.
[0004] The technical solution adopted by this utility model to solve its technical problem is a connection protection device for mechanical and electrical pipelines, including a pipeline body. A protective shell A and a shell B are snapped together at the connection of the pipeline body. Silicone sleeves located on both sides of the connection are heat-fused to the outer periphery of the pipeline body. A ring body for limiting is integrally constructed on the outer periphery of the silicone sleeve, and there are multiple sets of ring bodies. Half-rubber rings that fit with the silicone sleeves are glued to the inner periphery of both sides of the shell A and the shell B. A half-circle groove that fits with the ring body is opened on the inner periphery of the half-rubber ring, and there are multiple sets of half-circle grooves.
[0005] Both the outer surfaces of the tube shell A and the tube shell B are integrally constructed with mutually fitting protruding strips, and there are two sets of protruding strips. The outer periphery of the protruding strips is bonded with a rubber gasket for leak prevention. Both the outer periphery of the tube shell A and the tube shell B are integrally constructed with corresponding lugs, and there are multiple sets of lugs. Bolts for fixing are assembled between the two sets of lugs.
[0006] By adopting the above technical solution, when using the mechanical and electrical pipeline connection protection equipment, firstly, the silicone sleeve is installed on the two sets of pipeline bodies by heat fusion, near the pipeline body connection head. Then, pipe shell A and pipe shell B can be removed. The semi-rubber rings on both sides of the inner circumference of pipe shell A and pipe shell B can fit together and also fit together with the silicone sleeve on the outer circumference of the pipeline body. At the same time, the ring body and the semi-circular groove between the two can fit together, which can improve the tightness of the connection between pipe shell A and pipe shell B and reduce the situation of water seeping into pipe shell A and pipe shell B, so that pipe shell A and pipe shell B can stably protect the joint of the pipeline body.
[0007] When shell A and shell B are joined together and cover the joint of the pipeline body, the protrusion between shell A and shell B can fit into the pre-set groove. At the same time, the rubber gasket on the outer periphery of the protrusion can improve the tightness of the fit, thereby improving the tightness of the connection between shell A and shell B and improving the protection effect on the pipeline body. In addition, the bolts can be used to cooperate with the lugs on the outer periphery of shell A and shell B to fix the position between shell A and shell B. This allows shell A and shell B to stably protect the pipeline structure and facilitate disassembly and assembly.
[0008] Specifically, both shell A and shell B have an integrally constructed porous shell for support on their outer peripheral surfaces, and heat dissipation blocks for heat conduction are bonded to the porous shells. Both shell A and shell B have arc-shaped heat-conducting sheets that fit the heat dissipation blocks on their inner peripheral surfaces.
[0009] By adopting the above technical solution, when using shell A and shell B to protect the structural parts of the pipeline, the arc-shaped heat-conducting plates on the inner circumference of shell A and shell B can facilitate the flow of heat generated during the operation of the pipeline joint, so that the heat can be conducted to the heat-conducting block on the inner circumference of the porous shell, thereby allowing the heat to evaporate, which can improve the heat evaporation effect and reduce the impact caused by the heat concentration between shell A and shell B.
[0010] Specifically, the outer wall surface of the porous shell and the outer wall surface of the heat-conducting block are both provided with interconnected transverse holes, and there are multiple sets of transverse holes.
[0011] By adopting the above technical solution, the multiple sets of horizontal holes in the porous shell and the heat-conducting block facilitate the flow of external air, thereby enabling the heat conducted by the heat-conducting block to evaporate more quickly and improving the heat dissipation effect.
[0012] Specifically, both the shell A and the shell B are equipped with magnetically connected blocks on opposite sides, and there are multiple sets of magnetically connected blocks.
[0013] By adopting the above technical solution, the magnetic blocks between tube shell A and tube shell B can be magnetically connected to each other, which facilitates auxiliary positioning when installing tube shell A and tube shell B, and makes it convenient to tighten tube shell A and tube shell B with subsequent installation bolts.
[0014] Specifically, a sponge ring for auxiliary support is sleeved and connected at a point between the pipe shell A and the pipe shell B, and there are multiple sets of sponge rings. Sponge seats for supporting the pipeline are also bonded to the inner circumference end surfaces of the pipe shell A and the pipe shell B.
[0015] By adopting the above technical solution, the sponge ring at the outer periphery of the pipeline body can provide support and protection for the connection between the casing A and casing B and the pipeline body, thereby improving the protection effect of the connection between the casing A and casing B and the pipeline body. At the same time, the sponge seat inside the casing A and casing B can provide auxiliary support for the pipeline body, so that the pipeline body can be more stably connected to the casing A and casing B, which is convenient for protecting it.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The technical solution of this application, through the design of pipe shell A, pipe shell B, silicone sleeve, ring body, semi-rubber ring, and semi-circular groove, allows for the use of mechanical and electrical pipeline connection protection equipment. First, the silicone sleeve is installed on two sets of pipeline bodies near the pipeline body connection joint using a heat fusion method. Then, pipe shell A and pipe shell B can be removed. The semi-rubber rings on both sides of the inner circumference of pipe shell A and pipe shell B can fit together and also fit together with the silicone sleeve on the outer circumference of the pipeline body. At the same time, the ring body and semi-circular groove between the two can fit together, which facilitates the improvement of the tightness of the connection between pipe shell A and pipe shell B and reduces the possibility of moisture seeping into the connection between pipe shell A and pipe shell B. This allows pipe shell A and pipe shell B to stably protect the joint of the pipeline body.
[0018] 2. The technical solution of this application, through the design of protruding strips, rubber pads, lugs, and bolts, allows the protruding strips between pipe shells A and B to fit into the pre-set grooves when they are joined together and covering the joint of the pipeline body. Simultaneously, the rubber pads on the outer periphery of the protruding strips improve the tightness of the fit, thereby enhancing the tightness of the connection between pipe shells A and B and improving the protection of the pipeline body. Furthermore, the bolts, in conjunction with the lugs on the outer periphery of pipe shells A and B, facilitate the fixing of the positions of pipe shells A and B, ensuring stable protection of the pipeline structure and facilitating easy assembly and disassembly. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is an isometric view of the present invention;
[0021] Figure 2 This is a schematic plan view of the connection structure between the tube shell A and the tube shell B of this utility model;
[0022] Figure 3 This is a schematic diagram of the structure at point A between the shell A and the shell B of this utility model.
[0023] Figure 4 This is a diagram showing the distribution of the connection structure between the tube shell A, tube shell B, and the semi-rubber ring of this utility model.
[0024] Figure 5 This is a schematic diagram of the connection structure between the porous shell, shell A, and shell B of this utility model.
[0025] In the diagram: 1. Pipeline body; 2. Pipe shell A; 3. Pipe shell B; 4. Silicone sleeve; 5. Ring body; 6. Semi-rubber ring; 7. Semi-circular groove; 8. Arc-shaped heat-conducting plate; 9. Porous shell; 10. Heat sink; 11. Horizontal hole; 12. Raised strip; 13. Rubber pad; 14. Magnetic block; 15. Sponge ring; 16. Sponge seat; 17. Ear block; 18. Bolt. Detailed Implementation
[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0027] Please see Figure 1-5 This utility model provides a technical solution: a connection protection device for mechanical and electrical pipelines, including a pipeline body 1, with a protective casing A2 and casing B3 snapped onto the outer periphery of the pipeline body 1, and silicone sleeves 4 located on both sides of the connection point being heat-fused to the outer periphery of the pipeline body 1. Multiple sets of rings 5 are integrally constructed around the outer periphery of the silicone sleeves 4 for limiting their position. Half-circles that fit the silicone sleeves 4 are adhered to the inner periphery of both sides of the casings A2 and B3. The rubber ring 6 has a semi-circular groove 7 on its inner circumference that fits into the ring body 5, and there are multiple sets of semi-circular grooves 7; the opposite sides of the tube shell A2 and the tube shell B3 are integrally constructed with mutually fitting protrusions 12, and there are two sets of protrusions 12. The outer circumference of the protrusions 12 is bonded with a rubber gasket 13 for leak prevention. The outer circumference of the tube shell A2 and the tube shell B3 are integrally constructed with corresponding lugs 17, and there are multiple sets of lugs 17. Bolts 18 for fixing are assembled between two sets of lugs 17.
[0028] When using the mechanical and electrical pipeline connection protection device, firstly, use heat fusion to install the silicone sleeve 4 on the two sets of pipeline bodies 1, near the connection of the pipeline body 1. Then, pipe shell A2 and pipe shell B3 can be removed. The semi-rubber rings 6 on both sides of the inner circumference of pipe shell A2 and pipe shell B3 can fit together and also fit together with the silicone sleeve 4 on the outer circumference of the pipeline body 1. At the same time, the ring body 5 and the semi-circular groove 7 between the two can fit together, which can improve the tightness of the connection between pipe shell A2 and pipe shell B3 and reduce the situation of water seeping into the pipe shell A2 and pipe shell B3, so that pipe shell A2 and pipe shell B3 can stably protect the joint of the pipeline body 1.
[0029] When the casing A2 and casing B3 are joined together and cover the joint of the pipeline body 1, the protrusion 12 between casing A2 and casing B3 can fit into the preset groove. At the same time, the rubber gasket 13 on the outer periphery of the protrusion 12 can improve the tightness of the fit, thereby improving the tightness of the connection between casing A2 and casing B3 and improving the protection effect of the pipeline body 1. Meanwhile, the bolt 18 can be used to cooperate with the lug 17 on the outer periphery of casing A2 and casing B3 to fix the position between casing A2 and casing B3, so that casing A2 and casing B3 can stably protect the structural parts of the pipeline body 1 and facilitate disassembly and assembly.
[0030] like Figure 1 , Figure 2 and Figure 5 As shown, both shell A2 and shell B3 have an integrally constructed porous shell 9 for support on their outer peripheral surfaces, and the porous shell 9 is bonded with a heat sink 10 for heat conduction. Both shell A2 and shell B3 have an arc-shaped heat-conducting plate 8 that fits the heat sink 10 on their inner peripheral surfaces.
[0031] When in use, when using shells A2 and B3 to protect the structural parts of pipeline 1, the arc-shaped heat-conducting plates 8 on the inner circumference of shells A2 and B3 facilitate the conduction of heat generated at the joint of pipeline 1 during operation, so that the heat can be conducted to the heat-conducting block on the inner circumference of the porous shell 9, thereby allowing the heat to evaporate, improving the heat evaporation effect, and reducing the impact caused by heat concentration between shells A2 and B3.
[0032] like Figure 1 and Figure 2 As shown, the outer wall surface of the porous shell 9 and the outer wall surface of the heat-conducting block are both provided with interconnected transverse holes 11, and there are multiple sets of transverse holes 11.
[0033] During use, the porous shell 9 and the multiple sets of horizontal holes 11 in the heat-conducting block facilitate the flow of external air, thereby enabling the heat conducted by the heat-conducting block to evaporate more quickly and improve the heat dissipation effect.
[0034] like Figure 4 and Figure 5 As shown, both the shell A2 and the shell B3 are equipped with magnetic blocks 14 that are magnetically connected to each other on opposite sides, and there are multiple sets of magnetic blocks 14.
[0035] During use, the magnetic blocks 14 between the tube shell A2 and the tube shell B3 can be magnetically connected to each other, which facilitates auxiliary positioning when installing the tube shell A2 and the tube shell B3, and makes it convenient to tighten the tube shell A2 and the tube shell B3 with the bolts 18 later.
[0036] like Figure 2 and Figure 5 As shown, a sponge ring 15 for auxiliary support is sleeved and connected at a point between the pipe shell A2 and the pipe shell B3 of the pipeline body 1, and there are multiple sets of sponge rings 15. Sponge seats 16 for supporting the pipeline body 1 are bonded to both sides of the inner circumference of the pipe shell A2 and the pipe shell B3.
[0037] During use, the sponge ring 15 at the outer periphery of the pipeline body 1 provides support and protection for the connection between the pipe shell A2, the pipe shell B3, and the pipeline body 1. This enhances the protective effect of the pipe shell A2 and the pipe shell B3 at the connection point of the pipeline body 1. At the same time, the sponge seat 16 inside the pipe shell A2 and the pipe shell B3 provides auxiliary support for the pipeline body 1, enabling the pipeline body 1 to connect more stably with the pipe shell A2 and the pipe shell B3, thus facilitating its protection.
[0038] The working principle and usage process of this utility model are as follows: In use, first install the corresponding structural components in suitable positions. When using the mechanical and electrical pipeline connection protection device, first install the silicone sleeve 4 on the two sets of pipeline bodies 1 using a heat-melting method, near the connection joint of the pipeline body 1. Then, pipe shell A2 and pipe shell B3 can be removed. The semi-rubber rings 6 on both sides of the inner circumference of pipe shell A2 and pipe shell B3 can fit together and also fit together with the silicone sleeve 4 on the outer circumference of the pipeline body 1. At the same time, the ring body 5 and the semi-circular groove 7 between the two can fit together, which facilitates the tightness of the connection between pipe shell A2 and pipe shell B3 and reduces the seepage of water between pipe shell A2 and pipe shell B3. This allows pipe shell A2 and pipe shell B3 to stably protect the joint of the pipeline body 1. Simultaneously, when pipe shell A2 and pipe shell B3 are joined together and cover the joint of the pipeline body 1, the protrusion 1 between pipe shell A2 and pipe shell B3... 2. It can fit into the preset groove, and the rubber pad 13 on the outer periphery of the protrusion 12 can improve the tightness of the fit, thereby improving the tightness of the connection between the shell A2 and the shell B3 and improving the protection effect of the pipeline body 1. At the same time, the bolt 18 can cooperate with the lug 17 on the outer periphery of the shell A2 and the shell B3 to fix the position between the shell A2 and the shell B3, so that the shell A2 and the shell B3 can stably protect the structural parts of the pipeline body 1 and facilitate disassembly and assembly. When the shell A2 and the shell B3 are used to protect the structural parts of the pipeline body 1, the arc-shaped heat-conducting plate 8 on the inner periphery of the shell A2 and the shell B3 can facilitate the heat generated during the operation of the joint of the pipeline body 1, so that the heat can be conducted to the heat-conducting block on the inner periphery of the porous shell 9, thereby evaporating the heat, improving the heat evaporation effect, and reducing the impact of heat concentration between the shell A2 and the shell B3.
[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A connection protection device for mechanical and electrical pipelines, characterized in that, The pipeline includes a pipeline body (1), and a protective shell A (2) and a shell B (3) are snapped together at the outer periphery of the pipeline body (1). The outer periphery of the pipeline body (1) is hot-melted with silicone sleeves (4) located on both sides of the connection. The outer periphery of the silicone sleeve (4) is integrally constructed with a ring body (5) for limiting, and there are multiple sets of ring bodies (5). The inner periphery of the shell A (2) and the shell B (3) are both bonded with a semi-rubber ring (6) that fits with the silicone sleeve (4). The inner periphery of the semi-rubber ring (6) is provided with a semi-circular groove (7) that fits with the ring body (5), and there are multiple sets of semi-circular grooves (7). The shell A (2) and the shell B (3) are integrally constructed with mutually fitting protruding strips (12) on opposite sides, and there are two sets of protruding strips (12). The outer periphery of the protruding strips (12) is bonded with a rubber gasket (13) for leak prevention. The outer periphery of the shell A (2) and the shell B (3) are integrally constructed with corresponding ear blocks (17), and there are multiple sets of ear blocks (17). The two sets of ear blocks (17) are fitted with bolts (18) for fixing.
2. The connection protection device for mechanical and electrical pipelines according to claim 1, characterized in that, Both the outer surfaces of the shell A (2) and the shell B (3) are integrally constructed with a porous shell (9) for support, and the porous shell (9) is bonded with a heat dissipation block (10) for heat conduction. Both the inner circumferences of the shell A (2) and the shell B (3) are equipped with an arc-shaped heat-conducting sheet (8) that fits the heat dissipation block (10).
3. The connection protection device for mechanical and electrical pipelines according to claim 2, characterized in that, The outer wall surface of the porous shell (9) and the outer wall surface of the heat-conducting block are both provided with interconnected transverse holes (11), and there are multiple sets of transverse holes (11).
4. The connection protection device for mechanical and electrical pipelines according to claim 1, characterized in that, The shell A (2) and the shell B (3) are each equipped with a magnetic block (14) that is magnetically connected to each other, and there are multiple sets of magnetic blocks (14).
5. A connection protection device for mechanical and electrical pipelines according to claim 1, characterized in that, The pipeline body (1) is fitted with a sponge ring (15) for auxiliary support at a point between the pipe shell A (2) and the pipe shell B (3), and there are multiple sets of sponge rings (15). The inner circumference of the pipe shell A (2) and the pipe shell B (3) are both bonded with sponge seats (16) for supporting the pipeline body (1).
Citation Information
Patent Citations
Pipeline connection protection device for mechanical and electrical engineering
CN220822531U