Pipeline temperature heating assembly
By assembling a heating pipe group and a built-in copper heat dissipation layer on the outer surface of the pipeline, the shortcomings in heating efficiency and temperature uniformity of the existing pipeline heaters are solved, and efficient heating and uniform temperature transmission are achieved inside the pipeline.
Patent Information
- Application Number
- CN202421843003.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-01
AI Technical Summary
Existing pipeline heaters have shortcomings in heating efficiency and temperature uniformity, especially when heating components are arranged inside the pipeline, and the issues of line arrangement, sealing and safety performance need to be considered.
A pipeline temperature heating assembly is designed. By assembling a heating pipe group on the outer surface of the pipeline and installing a spiral engagement group on the lower end of the heating pipe group, the built-in inner ring of the pipeline is equipped with a heat dissipation layer made of copper material, and heat dissipation pores are provided on the inner surface of the heat dissipation layer to increase the heating resistance and heat transfer blocks to improve the temperature transmission efficiency.
It realizes uniform temperature transmission, improves the heating efficiency inside the pipeline, adapts to pipes of different lengths, and reduces the dispersion of resistive heat through the thermal insulation layer, improving the heat transfer effect.
Smart Images

Figure CN222864477U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of temperature heating devices, in particular to a pipeline temperature heating component. Background Art
[0002] A pipe heater is a device that converts electrical energy into thermal energy to heat the material to be heated. During operation, a low-temperature fluid medium enters its input port through a pipe under pressure, and follows a specific heat exchange flow value inside the electric heating element. It uses a path designed using the principles of fluid mechanics to take away the high-temperature energy generated in the electric heating element, thereby increasing the temperature of the heated medium. Existing pipe heaters include two types. One is to heat the outside of the pipe and introduce heat into the medium in the pipe through the pipe wall. The other is to directly set a heating component inside the pipe. The method of heating outside the pipe has low heating efficiency and high energy consumption, and cannot meet the needs. When arranging the heating component inside the pipe, issues such as line layout, sealing, and safety performance must be considered.
[0003] For example, a pipe heating component with announcement number CN212987623U includes a water pipe and an electric heating pipe. The lower part of the water pipe is provided with a water inlet, and the top thereof is provided with an open mouth. The aperture of the two terminal holes is smaller than the aperture of the water outlet hole; it is beneficial to distinguish the water outlet hole from the terminal hole, and is beneficial to the fixation of the electric heating pipe. The water outlet hole and the two terminal holes are arranged in a herringbone shape to avoid the two terminals of the electric heating pipe from affecting the water outlet hole. The soft cover is tightly sleeved on the outer wall of the top of the water pipe, and its installation is very easy and simple. The soft cover is a silicone sleeve, and the sleeve body made of silicone material does not affect drinking hygiene and is easy to be sleeved on the top of the water pipe. The soft cover extends upward with two small bosses and a large boss, and through holes are respectively opened on the two small bosses and the large boss.
[0004] The above-mentioned device is provided with a soft cover at the opening at the top of the water pipe. The soft cover is provided with two terminal holes and a water outlet hole. The electric heating tube can be fixed in the water pipe by the soft cover through the two independent terminal holes, and there is no need to add fixing parts at the bottom of the electric heating tube. Therefore, the fixing of the electric heating tube is very easy and the structure is simple, and the process difficulty is small. However, since the device is installed inside the pipeline, it may affect the material transmission inside the pipeline to some extent, and it may also cause uneven temperature transmission in terms of temperature heating, resulting in different temperatures at different positions and other effects. Utility Model Content
[0005] The purpose of the utility model is to provide a pipeline temperature heating component to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a pipeline temperature heating component, comprising an internal pipeline, a heating tube group is installed on the surface of the internal pipeline, and a spiral meshing group is installed at the lower end of the heating tube group, and the spiral meshing group is embedded in the middle layer position of the adjacent heating tube group, a heat dissipation layer is installed on the inner circle of the internal pipeline, and the heat dissipation layer is made of copper material, and a plurality of heat dissipation holes are provided on the inner surface of the heat dissipation layer, an empty layer is provided in the middle of the heating tube group, and a heating resistor is installed inside the empty layer, and a heat transfer block is installed on the outer layer of the heating resistor.
[0007] Preferably, the heat transfer block is made of brass material, and the heating resistor is inserted inside the heat transfer block, while high temperature resistant heat insulation cotton is installed on the surface of the heat transfer block.
[0008] Preferably, a conductive line is provided on the surface of the high temperature resistant heat insulating cotton, and a cooling pipe is installed on the outside of the conductive line.
[0009] Preferably, the heating tube assembly is composed of a plurality of heating half-tubes, and a mating plate is mounted on one contact end of the heating half-tube, while an insert plate is mounted on the other side of the heating half-tube.
[0010] Preferably, the surface of the mounting plate is equipped with an engaging component, and the mounting plate and the engaging plate are provided with inlay holes, and the connector blocks are assembled on the inlay holes.
[0011] Preferably, a connecting block is assembled at the bottom end of the heating tube assembly, and a thermometer is externally connected to the surface of the connecting block, and a plurality of connecting holes are provided on one side of the connecting block.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] 1. Compared with other pipeline temperature heating components, the outer surface temperature transmission component used in this device can effectively transmit the temperature to the inside of the pipeline, providing temperature heating conditions for the inside of the pipeline. Moreover, since the temperature transmission component is installed on the outer ring of the pipeline and surrounds the pipeline, the temperature transmission is uniform. Moreover, the device is composed of a combination of multiple heating components, which can also play a role in temperature heating when the processing object is pipelines of different lengths, and is relatively adaptable.
[0014] 2. In addition, the device is provided with a heat insulation layer on the outside of the resistance heat transfer to prevent the dissipation of resistance heat. In order to ensure the heat transfer effect inside the pipeline, a heat dissipation layer is installed inside the pipeline. The heat dissipation layer is made of copper material, in which silver material is mixed as the surface covering layer of the heat dissipation layer to improve the internal temperature heating efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a front overview of the utility model;
[0016] Figure 2 This is a small angle top view of the utility model;
[0017] Figure 3 This is a general view of the bordering port of the utility model;
[0018] Figure 4 It is a side overview diagram of the utility model.
[0019] In the figure: built-in pipeline 1, spiral meshing group 2, heating tube group 3, meshing plate 4, plug-in block 5, heat dissipation layer 6, cooling tube 7, conduction line 8, high temperature resistant insulation cotton 9, heating resistor 10, heat transfer block 11, meshing assembly 12, thermometer 13, connection block 14, and mounting plate 15. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0021] See also Figures 1 to 4 , the utility model provides a technical solution:
[0022] Figure 1 This is a front overview of the device. The main body is a built-in pipe 1. The surface of the built-in pipe 1 is equipped with a heating tube group 3. The heating tube group 3 is fitted with a recessed opening on the surface of the built-in pipe 1. The recessed opening is shallow so that the internal heat transfer block 11 is close to the surface of the heating tube group 3. The main function is to apply thermal conductive silicone to conduct a large amount of heat generated inside to the built-in pipe 1 through the thermal conductive silicone. The lower end of the heating tube group 3 is equipped with a spiral meshing group 2, and the spiral meshing group 2 is embedded in the middle layer position of the adjacent heating tube group 3. The combination of the two ensures the stability between the heating tube groups 3. The inner circle of the built-in pipe 1 is equipped with a heat dissipation layer 6, and the heat dissipation The layer 6 is made of copper material so as to conduct heat efficiently. At the same time, a number of heat dissipation holes are provided on the inner surface of the heat dissipation layer 6. The heat absorbed by the heat dissipation layer 6 is dissipated to the built-in pipe 1 as much as possible through the heat dissipation holes to increase the internal temperature. An empty layer is provided in the middle of the heating tube group 3 to provide installation space for the heating resistor 10 or other components, and the heating resistor 10 is installed inside the empty layer. At the same time, a heat transfer block 11 is assembled on the outer layer of the heating resistor 10. The heat transfer block 11 wraps the heating resistor 10 to prevent the heat from being lost too quickly. The heat is transferred to the heat dissipation layer 6 installed on the surface of the built-in pipe 1 as much as possible by applying the thermal conductive silica gel;
[0023] Figure 2This is a top view of the device at a small angle. The main body is a heat transfer block 11, which is made of brass material. A heating resistor 10 is inserted inside the heat transfer block 11. At the same time, high-temperature resistant heat insulation cotton 9 is installed on the surface of the heat transfer block 11. Since an electric energy transmission wire is provided on the other side, the high-temperature resistant heat insulation cotton 9 is installed to prevent the temperature of the transmission wire from being too high.
[0024] Figure 3 This is a general view of the junction of the device. The main body is a high temperature resistant heat insulation cotton 9. A conduction line 8 is arranged on the surface of the high temperature resistant heat insulation cotton 9, and a cooling pipe 7 is arranged on the outside of the conduction line 8. The function of the cooling pipe 7 is the same as that of the high temperature resistant heat insulation cotton 9, which is to reduce the heat dissipation of the heating resistor 10 as much as possible to prevent the temperature of the conduction line 8 from being too high, causing other effects.
[0025] Figure 4 This is a side overview of the device, the main body is a heating tube group 3, the heating tube group 3 is composed of several sections of heating half tubes, the design of multiple sections of heating half tubes makes this heating tube group 3 effective for pipes of different lengths, and the heating tube group 3 composed of multiple sections of heating half tubes can surround the required heating pipe as much as possible, so that the internal temperature can be heated evenly, and the contact end of one side of the heating half tube is equipped with a meshing plate 4, and the other side of the heating half tube is installed with a mounting plate 15, and the surface of the mounting plate 15 is equipped with a meshing component 12, and the installation of the meshing plate 4 and the mounting plate 15 makes the connection between the two easy and simple, and the outer sides of both are designed with insulating materials to avoid accidents during connection or disassembly, and the mounting plate 15 and the meshing plate 4 are provided with inlay holes, and the plug-in block 5 is installed on the inlay holes for connecting the two, and the bottom end of the heating tube group 3 is equipped with a connecting block 14, and a thermometer 13 is externally connected to the surface of the connecting block 14, and a plurality of connecting holes are provided on one side of the connecting block 14 to connect components such as power transmitters.
[0026] In actual use, firstly, the heating half-tube is assembled according to the length of the pipe to be heated until the length is close or coincident, and the spiral meshing group 2 is inserted between the heating tube groups 3. Then, the concave mouth left at the bottom of the heating tube group 3 is smeared with thermal conductive silicone, and it is sleeved on the surface of the pipe to be heated, and the heat dissipation layer 6 is inserted inside the pipe. The electrical energy is transmitted through the connection of the bottom connecting block 14 to the electrical appliance, so that the internal heating resistor 10 generates heat, and a large amount of heat energy is transferred to the internal heat dissipation layer 6 through the thermal conductive silicone, and is dissipated through the heat dissipation pores to increase the internal temperature. Moreover, since the heating tube groups 3 are distributed on the surface of various parts of the pipe, the increase in the internal temperature is evenly distributed, and high-temperature resistant heat-insulating cotton 9 is installed on the other side of the heat transfer block 11 to avoid overheating of the side conduction line 8 when the heating resistor 10 is heating.
[0027] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A pipe temperature heating assembly, comprising an internal pipe (1), a heating tube group (3) being mounted on the surface of the internal pipe (1), and a spiral meshing group (2) being mounted at the lower end of the heating tube group (3), and the spiral meshing group (2) being embedded in the middle layer of an adjacent heating tube group (3), characterized in that: The inner circle of the built-in pipe (1) is equipped with a heat dissipation layer (6), and the heat dissipation layer (6) is made of copper material. At the same time, a plurality of heat dissipation holes are provided on the inner surface of the heat dissipation layer (6). An empty layer is provided in the middle of the heating tube group (3), and a heating resistor (10) is installed inside the empty layer. At the same time, a heat transfer block (11) is installed on the outer layer of the heating resistor (10).
2. A pipeline temperature heating assembly according to claim 1, characterized in that: The heat transfer block (11) is made of brass material, and the heating resistor (10) is inserted inside the heat transfer block (11), while high temperature resistant heat insulation cotton (9) is installed on the surface of the heat transfer block (11).
3. A pipeline temperature heating assembly according to claim 2, characterized in that: A conducting wire (8) is provided on the surface of the high temperature resistant heat insulating cotton (9), and a cooling pipe (7) is installed on the outside of the conducting wire (8).
4. A pipeline temperature heating assembly according to claim 3, characterized in that: The heating tube assembly (3) is composed of a plurality of heating half-tubes, and a meshing plate (4) is mounted on one contact end of the heating half-tube, while a mounting plate (15) is installed on the other side of the heating half-tube.
5. A pipeline temperature heating assembly according to claim 4, characterized in that: The surface of the insert plate (15) is assembled with the engaging component (12), and the insert plate (15) and the engaging plate (4) are provided with inlay holes, and the plug-in blocks (5) are assembled on the inlay holes.
6. A pipeline temperature heating assembly according to claim 5, characterized in that: A connecting block (14) is assembled at the bottom end of the heating tube group (3), and a thermometer (13) is externally connected to the surface of the connecting block (14). A plurality of connecting holes are arranged on one side of the connecting block (14).
Citation Information
Patent Citations
Pipeline heating assembly
CN212987623U