Pipeline warm-keeping structure capable of being quickly combined and butted
The mortise and tenon structure of the inserts and slots, along with the design of vertical and barbed spikes, solves the problems of inconvenient construction and unstable fixing of water pipe insulation, enabling rapid assembly and stable connection, preventing insulation material from falling off, and simplifying the construction and dismantling process.
Patent Information
- Application Number
- CN202520334314.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing water pipe insulation measures suffer from problems such as inconvenient construction, unstable fixing leading to easy displacement, and difficulty in subsequent removal.
The pipe insulation structure can be quickly assembled and connected. It is connected by mortise and tenon joints of plugs and slots, combined with the design of vertical barbs and barbs to achieve stable fixation of the shell. Glass wool is used as insulation material to ensure the insulation effect.
It enables rapid assembly and disassembly of water pipes, ensures stable connection of insulation components, prevents insulation material from falling off, and simplifies the construction and dismantling process.
Smart Images

Figure CN223648896U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pipe insulation structure technology, and more specifically, to a pipe insulation structure that can be quickly assembled and connected. Background Technology
[0002] Water pipes play a crucial role in many fields, such as supplying domestic water and discharging sewage in building water supply and drainage systems; and transporting various process waters and coolants in industrial production. In cold environments, if water pipes are not insulated, the water inside can easily freeze. The expansion of frozen water creates immense pressure on the pipes, leading to ruptures and leaks. This not only wastes water resources but can also cause serious consequences in industrial production, such as production interruptions and equipment damage. In buildings, it can disrupt normal water demand and potentially damage building structures.
[0003] However, current water pipe insulation measures have significant shortcomings. Many traditional water pipe insulation methods involve simply wrapping the pipe with insulation materials such as fiberglass or rock wool and securing it with tape. This method is not secure, and the insulation material easily slips and shifts, greatly reducing its insulation effect. Some methods use glue to attach the insulation material, which is extremely difficult to remove later and may damage the pipe surface. Therefore, we propose a pipe insulation structure that can be quickly assembled and connected. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a pipe insulation structure that can be quickly assembled and connected to solve the technical problems of inconvenient construction, unstable fixing and easy displacement of current water pipe insulation, and difficulty in subsequent dismantling.
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a pipe insulation structure that can be quickly assembled and connected, including insulation component A and insulation component B. The insulation component A includes a shell A, a plug and insulation cotton A. The plug is arranged on the upper sides of the shell A, and the insulation cotton A is arranged in the middle of the shell A. The insulation component B includes a shell B, a slot and insulation cotton B. The slot is arranged on the upper sides of the shell B, and the insulation cotton B is arranged in the middle of the shell B. Fixing components are provided inside both the shell A and the shell B.
[0006] The fixing component includes a vertical barb and a barb. The vertical barb is a slender conical shape, and the barb is a triangular structure at a 45° angle to the vertical barb and is obliquely mounted on the vertical barb.
[0007] Preferably, the insert has a cavity at one end, and a limit block, a spring and a locking block are arranged in the cavity. The lower surface of the limit block is connected to the cavity through the spring, and a locking block is arranged on the upper surface of the limit block, with one end of the locking block protruding from the insert.
[0008] Preferably, a plug is inserted into the slot, the slot and the plug are in a mortise and tenon structure, a latch is provided at one end of the slot, a latch is inserted into the latch, and the other end of the slot is in an inclined structure.
[0009] Preferably, both the thermal insulation cotton B and the thermal insulation cotton A are made of glass wool.
[0010] Preferably, the length of the vertical spike is smaller than the opening size at both ends of housing A and housing B.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] 1. This utility model uses the cooperation of the insert and the slot to connect housing A and housing B together, thereby indirectly fixing the heat insulation components A and B onto the water pipe. The cooperation of the latch and the latch block allows the insert to be inserted into the slot and locked to prevent separation, thus achieving the connection effect of locking and fixing housing A and housing B. The inclined structure at one end of the slot is designed to allow the latch block to slide smoothly into the slot along the inclined structure. When the insert reaches the predetermined position, the latch block is locked into the latch by the action of the spring and other related components, thereby achieving a stable connection and locking between the insert and the slot.
[0013] 2. The vertical and barbed design of this utility model allows the insulation cotton A and insulation cotton B to be inserted and hooked into the housing A and housing B when pressed in. The hook-shaped part can effectively hook the insulation cotton A and insulation cotton B to prevent them from falling off. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the main appearance structure of this utility model;
[0015] Figure 2 This is a front view exploded view of the present invention;
[0016] Figure 3 This is a schematic diagram of the bottom appearance structure of the thermal insulation component A of this utility model;
[0017] Figure 4 This is a bottom view of the internal structure of the heat-insulating component A of this utility model;
[0018] Figure 5 This is a top view of the thermal insulation component B of this utility model.
[0019] Figure 6 This is a top view of the internal structure of the thermal insulation component B of this utility model;
[0020] Figure 7 This is a schematic diagram of the bottom appearance structure of the heat preservation component B of this utility model;
[0021] Figure 8 This is a schematic diagram of the fixing component structure of this utility model;
[0022] Figure 9 For the present utility model Figure 3 Enlarged view of point A inside;
[0023] Figure 10 For the present utility model Figure 5 Enlarged view of section B.
[0024] Explanation of the labels in the diagram:
[0025] 1. Insulation component A; 101. Shell A; 102. Insert block; 103. Insulation cotton A; 104. Cavity; 105. Limiting block; 106. Spring; 107. Locking block; 2. Insulation component B; 201. Shell B; 202. Slot; 203. Insulation cotton B; 204. Bayonet; 3. Fixing component; 301. Vertical barb; 302. Barb; 4. Water pipe. Detailed Implementation
[0026] like Figures 1 to 10 As shown, this utility model relates to a pipe insulation structure that can be quickly assembled and connected, including insulation component A1 and insulation component B2. Insulation component A1 includes a shell A101, insert 102 and insulation cotton A103. Insert 102 is arranged on the upper sides of the shell A101, and insulation cotton A103 is arranged in the middle of the shell A101. Insulation component B2 includes a shell B201, slot 202 and insulation cotton B203. Slot 202 is arranged on the upper sides of the shell B201, and insulation cotton B203 is arranged in the middle of the shell B201. Fixing components 3 are provided inside both shell A101 and shell B201.
[0027] The fixing component 3 includes a vertical barb 301 and a barb 302. The vertical barb 301 is a slender conical shape, and the barb 302 forms a triangular structure at a 45° angle to the vertical barb 301 and is obliquely installed on the vertical barb 301. Both the shell A101 and shell B201 of this invention are made of aerogel composite material, which has an extremely low thermal conductivity, effectively preventing heat conduction. It is also lighter than traditional metals and plastics. The vertical barb 301 and barb 302 allow the insulation cotton A103 and insulation cotton B203 to be inserted and hooked into the shell A101 and shell B201 for fixation. The hook-like parts effectively hook the insulation cotton A103 and insulation cotton B203, preventing them from falling off.
[0028] In an embodiment of this utility model, a cavity 104 is provided at one end of the insert 102. A limiting block 105, a spring 106, and a locking block 107 are arranged inside the cavity 104. The lower surface of the limiting block 105 is connected to the cavity 104 via the spring 106, and the locking block 107 is arranged on the upper surface of the limiting block 105, with one end of the locking block 107 protruding from the insert 102. The installation of the limiting block 105 in this utility model prevents the spring 106 from pushing the locking block 107 out of the cavity 104, thus achieving a limiting and anti-disengagement effect. The function of the spring 106 is to make the locking block 107 elastic. When the insert 102 enters the slot 202, it can elastically allow the locking block 107 to temporarily retract into the cavity 104, preventing the insert 102 from being unable to be inserted into the slot 202 due to the restriction of the locking block 107.
[0029] In an embodiment of this utility model, a plug 102 is inserted into the slot 202, the slot 202 and the plug 102 are in a mortise and tenon structure, a slot 204 is provided at one end of the slot 202, a plug 107 is inserted into the slot 204, and the other end of the slot 202 is in an inclined structure. This invention, through the cooperation of the insert 102 and the slot 202, allows the housing A101 and housing B201 to be connected together, indirectly achieving the effect of fixing the heat insulation components A1 and B2 onto the water pipe 4. Through the cooperation of the bayonet 204 and the locking block 107, the insert 102 can be locked in place after being inserted into the slot 202, achieving the effect of locking and fixing the housing A101 and housing B201. The inclined structure at one end of the slot 202 is designed to allow the locking block 107 to slide smoothly into the slot 202 along the inclined structure. When the insert 102 reaches the predetermined position, the locking block 107 is locked into the bayonet 204 under the action of the spring 106 and other related components, thereby achieving a stable connection and locking between the insert 102 and the slot 202.
[0030] In the embodiments of this utility model, both the insulation cotton B203 and the insulation cotton A103 are made of glass wool. Through the cooperation of insulation cotton A103 and insulation cotton B203, this utility model cushions and insulates the shell A101 and shell B201 when wrapping the water pipe 4, achieving an insulation effect. The glass wool used has advantages such as fine, long fibers, soft texture, good insulation performance, and ease of insertion and fixation by vertical barbs 301 and barbs 302.
[0031] In this embodiment of the invention, the length of the vertical spike 301 is smaller than the opening dimensions at both ends of the housing A101 and housing B201. The length of the vertical spike 301 is designed such that after the insulation cotton A103 and insulation cotton B203 are installed inside the housing A101 and housing B201, the vertical spike 301 will not penetrate the insulation cotton A103 and insulation cotton B203 and cause puncture damage to the wrapped water pipe 4.
[0032] Working Principle: This embodiment provides a pipe insulation structure that can be quickly assembled and connected. During use, the operator must first install the insulation cotton A103 and insulation cotton B203 inside the housings A101 and B201. Specifically, the operator takes insulation cotton A103 and insulation cotton B203 and attaches them inside the housings A101 and B201, then applies force to press them into the housings. The vertical barbs 301 and barbs 302 inside the housings A101 and B201 hook and secure the insulation cotton A103 and insulation cotton B203. After the insulation cotton A103 and insulation cotton B203 are fixedly installed inside the housings A101 and B201, the operator carries the insulation component A1 and insulation component B2 of this invention to the side of the water pipe 4, covers the water pipe 4 with insulation component A1, and then... Place the heating component B2 under the water pipe 4, aligning the insert 102 on the heating component A1 with the slot 202 on the heating component B2. After alignment, push the heating component B2 so that the insert 102 inserts into the slot 202. When the insert 102 is fully inserted into the slot 202, the locking block 107 installed at one end will be pushed by the elasticity of the spring 106 and locked into the bayonet 204. After locking, the heating components A1 and B2 will be fixedly connected and not easily separated, completing the quick assembly operation. When it is necessary to remove the heating components A1 and B2 from the water pipe 4, the worker uses a tool such as a screwdriver or other sharp object to insert into the bayonet 204, pushes the locking block 107 locked in the bayonet 204, and moves the heating component B2. In this way, the insert 102 will come out of the slot 202, thereby separating the heating components A1 and B2 and removing them from the water pipe 4.
[0033] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.
Claims
1. A pipe insulation structure that can be quickly assembled and connected, comprising insulation component A (1) and insulation component B (2), characterized in that: The thermal insulation component A (1) includes a shell A (101), a plug (102) and thermal insulation cotton A (103). The plug (102) is arranged on the upper sides of the shell A (101), and the thermal insulation cotton A (103) is arranged in the middle of the shell A (101). The thermal insulation component B (2) includes a shell B (201), a slot (202) and thermal insulation cotton B (203). The slot (202) is arranged on the upper sides of the shell B (201), and the thermal insulation cotton B (203) is arranged in the middle of the shell B (201). Fixing components (3) are provided inside both the shell A (101) and the shell B (201). The fixing component (3) includes a vertical barb (301) and a barb (302). The vertical barb (301) is a slender cone shape, and the barb (302) is a triangular structure with the vertical barb (301) at a 45° angle and is obliquely installed on the vertical barb (301).
2. The pipe insulation structure that can be quickly assembled and connected according to claim 1, characterized in that: The insert (102) has a cavity (104) at one end. A limit block (105), a spring (106) and a locking block (107) are arranged in the cavity (104). The lower surface of the limit block (105) is connected to the cavity (104) through the spring (106). The upper surface of the limit block (105) is provided with a locking block (107), and one end of the locking block (107) protrudes from the insert (102).
3. The pipe insulation structure that can be quickly assembled and connected according to claim 1, characterized in that: A plug (102) is inserted into the slot (202). The slot (202) and the plug (102) are in a mortise and tenon structure. A slot (204) is provided at one end of the slot (202). A locking block (107) is inserted into the slot (204). The other end of the slot (202) is in an inclined structure.
4. The pipe insulation structure that can be quickly assembled and connected according to claim 1, characterized in that: Both the thermal insulation cotton B (203) and thermal insulation cotton A (103) are made of glass wool.
5. A pipe insulation structure that can be quickly assembled and connected according to claim 1, characterized in that: The length of the vertical spike (301) is smaller than the opening dimensions at both ends of the shell A (101) and the shell B (201).