Detachable welding-free heating radiator and assembling method thereof
Through welding-free connection and clamping structure design, the complex disassembly of traditional heating radiators is solved, rapid disassembly and repair is achieved, maintenance costs are reduced, and equipment reliability and economicality are improved.
Patent Information
- Application Number
- CN202510683798.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2025-07-18
AI Technical Summary
Traditional heating radiators are complex in disassembly, repair and cleaning, and have high maintenance costs, which affect user convenience and economy, especially in old buildings, and are difficult to maintain.
Weld-free connection method is adopted, nuts, bolts and rubber seals are used to connect heating pipes and heat dissipation components, and combined with the clamping structure and protective shell for assembly and protection, achieving rapid disassembly and protection.
It simplifies the manufacturing process, improves the removability and repairability of the equipment, reduces maintenance costs, enhances the protective performance and stability of the equipment, and extends the service life.
Smart Images

Figure CN120333191A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of heating equipment, and particularly to a detachable and weld-free heating radiator and an assembly method thereof. Background Art
[0002] In modern buildings, heating radiators, as important heat transfer devices, are widely used in residential, commercial, and industrial buildings. The radiator conducts heat to the surrounding environment through media such as water or steam to increase the indoor temperature and ensure people's comfort. However, traditional heating radiators have some undeniable drawbacks during installation, use, and maintenance, which directly affect the system efficiency and maintenance cost.
[0003] Traditional heating radiators usually adopt fixed installation methods such as welding or threaded connection. Although this structure can ensure the stable connection between the radiator and the heating pipe system, it also brings some inconveniences. Especially when the equipment fails and needs to be repaired or replaced, the traditional design makes disassembly very complicated. When the radiator fails, maintenance personnel need to use professional tools for disassembly and even damage the original structure to complete the disassembly. This disassembly method is not only time-consuming and laborious but also increases the maintenance cost.
[0004] During the maintenance process, the disassembly operation of traditional radiators is complex. Especially in old buildings, due to the complex and narrow layout of the pipe system, disassembly is even more difficult. In some cases, maintenance personnel may need to carry out large-scale modification of the pipe system in the house, and even need to demolish the wall or floor, which greatly increases the maintenance cost and brings a large economic burden to users.
[0005] In addition to the disassembly problem, traditional radiators are also inconvenient for daily maintenance. During long-term use, dust or debris will accumulate on the surface and inside of the radiator, resulting in a decrease in the heat dissipation effect. Due to the relatively fixed installation method of traditional radiators, disassembly is required for cleaning, which is not only time-consuming and laborious, especially in a small space environment, the cleaning work is more difficult. Users may therefore neglect the regular cleaning of the radiator, thus affecting the normal operation of the equipment.
[0006] Generally speaking, the existing design of heating radiators has high difficulty and cost in disassembly, maintenance, cleaning, etc., which affects the operation convenience and user experience of users. Therefore, how to design a heating radiator that can be quickly disassembled, has convenient installation and does not require welding has become an urgent technical problem to be solved in this field. If this problem can be solved, the maintenance and replacement costs will be greatly reduced, the versatility of the equipment will be improved, the operation convenience of users will be enhanced, especially in old buildings, the space modification caused by maintenance will be reduced, and the overall economy and efficiency of the system will be improved. Summary of the Invention
[0007] In view of the deficiencies in the prior art, the present invention provides a detachable welding-free heating radiator and an assembly method thereof, which solves the problems of complex operation and high maintenance cost during the disassembly and maintenance of the existing heating radiator.
[0008] To achieve the above objectives, the present invention is implemented through the following technical solutions: a detachable welding-free heating radiator, comprising: Heating pipes are used to connect with the house heating pipelines to achieve heat input and circulating water discharge; The heat dissipation component is connected to the heating pipe and cooperates with the heating pipeline to realize indoor heating; A connection component is used for rapid assembly and connection of a heating pipe and a heat dissipation component, the connection component comprises an upper connection piece and a lower connection piece respectively disposed on the upper and lower sides of the heating pipe, and the lower connection piece and the upper connection piece are connected by bolts and nuts, and a connection head connected to the heat dissipation component is installed at the bottom of the lower connection piece to realize the connection between the heating pipe and the heat dissipation component; The protective shell is installed on the outside of the heating pipe and the connecting components to protect the connecting components.
[0009] Preferably, the heating pipe includes a connecting pipe, a pipe fitting and a pipe hole, the pipe hole is opened on the outside of the connecting pipe, the pipe hole is aligned with the middle channel of the lower connecting piece, the pipe fitting is sleeved on the end of the connecting pipe and has a thread on the inner wall.
[0010] Preferably, the heating pipe also includes a rubber sealing ring 1, which is sleeved on the outside of the pipe fitting, and the pipe fitting is tightly fitted with the inner wall of the connecting pipe through the rubber sealing ring 1.
[0011] Preferably, the heat dissipation assembly includes a branch pipe and a heat sink, the heat sink is fixedly connected to the outer wall of the branch pipe, the branch pipe is sleeved on the outside of the connector, and is connected to the connecting pipe through the connector and the lower connecting piece.
[0012] Preferably, the heat sink includes a heat-conducting part that fits tightly with the branch pipe, a plurality of heat-dissipating parts distributed on the periphery of the heat-conducting part, and a protective part connected to the heat-conducting part and the heat-dissipating part. The heat-conducting part and the heat-dissipating part are used for introducing and dissipating heat, respectively, and the protective part is used to shield and protect the front end of the radiator.
[0013] Preferably, the connecting component also includes an installation groove and a gasket, the installation groove is opened inside the lower connecting piece, and a second rubber sealing ring is installed inside the installation groove. After the connecting pipe is embedded in the lower connecting piece, the second rubber sealing ring abuts against the outer bottom wall of the connecting pipe, and the gasket is sleeved on the outside of the connecting head.
[0014] Preferably, the protective shell includes an outer shell and a clamping strip. The clamping strip is arranged on the inner side of the outer shell, and the clamping strip and the outer shell are integrally formed.
[0015] Preferably, the connection assembly further includes a first step groove and a second step groove. The first step groove is formed on the outer side of the lower connecting member, and the second step groove is formed on the outer side of the upper connecting member. After the protective shell is sleeved on the outer side of the connection assembly, the second step groove and the first step groove are located between the two clamping strips.
[0016] Preferably, the heating radiator further includes a side guard plate. The side guard plate is arranged on the outer side of the heating pipe and is clamped with the end of the protective shell. A notch for the heating pipe to pass through is formed in the middle of the side guard plate.
[0017] An assembly method of a detachable and weld-free heating radiator includes the following steps: S1. Lock and connect the connection assembly with the branch pipe and the connecting pipe through a second rubber sealing ring, bolts, and nuts to achieve sealing and fixation. S2. Then, assemble the protective shell outside the connection assembly through a clamping structure and cooperate with a preset side guard plate to complete the protection of the assembly. S3. Finally, insert the pipe fittings at both ends into the connecting pipe and connect to the house heating system by using a first rubber sealing ring to achieve a weld-free and detachable overall assembly.
[0018] The present invention provides a detachable and weld-free heating radiator and its assembly method. It has the following beneficial effects: 1. Through the weld-free connection method, the present invention uses nuts, bolts, and rubber sealing rings to connect various components, which not only simplifies the manufacturing process but also significantly improves the detachability and maintainability of the equipment. This design greatly reduces the maintenance cost, makes the disassembly, maintenance, and replacement of the equipment more convenient and fast, thereby extending the service life of the radiator and improving the economy of the equipment.
[0019] 2. The present invention uses a clamping structure to connect the outer shell with the connection assembly and combines with a side guard plate for protection, effectively improving the protection performance of the radiator. This design can prevent external pollutants (such as dust and moisture) from entering the equipment interior, reducing the risk of equipment damage. In addition, the combination of the outer shell and the side guard plate can provide additional structural support, enhancing the seismic resistance and stability of the equipment, ensuring the reliability of the radiator during long-term use. Description of the Drawings
[0020] Figure 1 is a three-dimensional view of the present invention; Figure 2 is a three-dimensional schematic diagram of another perspective of the present invention; Figure 3Explosion schematic diagram of the position of the protective shell in the present invention; Figure 4 Explosion schematic diagram of the connection component in the present invention; Figure 5 Structural schematic diagram of the heating pipeline in the present invention; Figure 6 Position schematic diagram of the installation groove in the present invention; Figure 7 Structural schematic diagram of the heat sink in the present invention.
[0021] Among them, 1. Heating pipeline; 11. Connecting pipe; 12. Pipe fitting; 13. Pipe hole; 14. First rubber sealing ring; 2. Heat dissipation component; 21. Branch pipe; 22. Heat sink; 221. Heat conduction part; 222. Heat dissipation part; 223. Protection part; 3. Protective shell; 31. Outer shell; 32. Clamping strip; 4. Side guard plate; 5. Connection component; 51. Lower connecting piece; 52. Upper connecting piece; 53. Connection head; 54. Installation groove; 55. Second rubber sealing ring; 56. Gasket; 57. Bolt; 58. Nut; 59. First step groove; 510. Second step groove. Specific implementation mode
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the specification of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention. Embodiment
[0023] Please refer to the attached Figure 1 - attached Figure 7 , the embodiment of the present invention provides a detachable and weld-free heating radiator, including, Heating pipeline 1, which is used to connect with the house heating pipeline to realize the input of heat and the discharge of circulating water. The heating pipeline 1 includes at least two groups. One group is connected to the heating pipe of the house heating system, and the other group is connected to the drain pipe of the house heating system. And the two groups of heating pipelines 1 are connected to each other to realize the circulation of the heating system; Heat dissipation component 2, which is connected to the heating pipeline 1 and cooperates with the heating pipeline to realize indoor heating; after connecting the heat dissipation component 2 to the heating pipeline 1, the hot water in the heating system enters through the heating pipeline 1 and is injected into the interior of the heating pipeline 1. The heat in the heating system is dissipated into the room through the heat dissipation structure of the heat dissipation component 2, thereby completing the heating of the interior. This principle is the existing general technology and will not be elaborated here.
[0024] Please refer to the attached Figure 3 、attached Figure 4and attached Figure 6 , the connecting component 5 is used for quickly assembling and connecting the heating pipe 1 and the heat dissipation component 2. The connecting component 5 includes an upper connecting piece 52 and a lower connecting piece 51 respectively placed on the upper and lower sides of the heating pipe 1, and the lower connecting piece 51 and the upper connecting piece 52 are connected by bolts 57 and nuts 58. After the heating pipe 1 is placed between the lower connecting piece 51 and the upper connecting piece 52, the heating pipe 1 and the lower connecting piece 51 and the upper connecting piece 52 can be assembled by tightening the bolts 57 and the nuts 58. A connecting head 53 connected to the heat dissipation component 2 is installed at the bottom of the lower connecting piece 51 to realize the connection between the heating pipe 1 and the heat dissipation component 2. The connecting head 53 is inserted into the heat dissipation component 2 to realize the connection between the heating pipe 1 and the heat dissipation component 2, thereby ensuring the transportation of hot water. The heating pipe 1 includes a connecting pipe 11, a pipe fitting 12 and a pipe hole 13. The pipe hole 13 is opened on the outside of the connecting pipe 11. The pipe hole 13 is aligned with the middle channel of the lower connecting piece 51. After the heating pipe 1 and the heat dissipation component 2 are connected by the connector 53, the upper connecting piece 52 and the lower connecting piece 51, the hot water entering from the connecting pipe 11 enters the interior of the heat dissipation component 2 through the pipe hole 13. The pipe fitting 12 is sleeved on the end of the connecting pipe 11 and has a threaded inner wall, and the threaded structure facilitates the connection between the connecting pipe 11 and the heating pipeline inside the house; the heating pipe 1 also includes a rubber sealing ring 14, which is sleeved on the outside of the pipe fitting 12, and the pipe fitting 12 is tightly fitted with the inner wall of the connecting pipe 11 through the rubber sealing ring 14, and a groove matching the rubber sealing ring 14 is provided on the outside of the pipe fitting 12 to ensure the stable installation of the rubber sealing ring 14, and then after the pipe fitting 12 is inserted into the connecting pipe 11, the rubber sealing ring 14 is squeezed by the connecting pipe 11 and the pipe fitting 12 and deformed, thereby realizing a sealed connection between the pipe fitting 12 and the connecting pipe 11.
[0025] Please refer to the attached Figure 1 -Attached Figure 4 The heat dissipation component 2 includes a branch pipe 21 and a heat sink 22. The heat sink 22 is fixedly connected to the outer wall of the branch pipe 21. The branch pipe 21 is connected to the connecting pipe 11 to realize the transportation of hot water, and the heat sink 22 is tightly attached to the outer wall of the branch pipe 21. The branch pipe 21 is sleeved on the outside of the connector 53 and is connected to the connecting pipe 11 through the connector 53 and the lower connector 51. The heat carried by the hot water inside the branch pipe 21 is extracted through the heat sink 22 and conducted to the room, thereby realizing indoor heating.
[0026] Please refer to the attached Figure 7 The heat sink 22 includes a heat conducting portion 221 that fits tightly with the branch pipe 21, a plurality of heat dissipating portions 222 distributed on the periphery of the heat conducting portion 221, and a protective portion 223 connected to the heat conducting portion 221 and the heat dissipating portion 222. The heat conducting portion 221 and the heat dissipating portion 222 are respectively used for introducing and dissipating heat, and the protective portion 223 is used for shielding and protecting the front end of the radiator.
[0027] The connecting component 5 further includes an installation groove 54 and a gasket 56. The installation groove 54 is opened inside the lower connecting member 51. A second rubber sealing ring 55 is installed inside the installation groove 54. The position of the second rubber sealing ring 55 is restricted by the installation groove 54 to ensure the stability of the installation of the second rubber sealing ring 55. After the connecting pipe 11 is inserted into the lower connecting member 51, the second rubber sealing ring 55 abuts against the outer bottom wall of the connecting pipe 11. After the connecting pipe 11 is installed between the lower connecting member 51 and the upper connecting member 52, under the continuous tightening action of the bolt 57 and the nut 58, the connecting pipe 11 gradually presses the second rubber sealing ring 55 and deforms the second rubber sealing ring 55. At this time, the second rubber sealing ring 55 closely adheres to the outside of the lower connecting member 51 and the pipe hole 13, thereby realizing the tight connection between the connecting pipe 11 and the pipe fitting 12. The gasket 56 is sleeved outside the connecting head 53 to play a protective role through the gasket 56.
[0028] Please refer to the appendix Figure 4 and the appendix Figure 6 The protective shell 3 is installed outside the heating pipe 1 and the connecting component 5 for protecting the connecting component 5. The protective shell 3 includes an outer shell body 31 and a clamping strip 32. The clamping strip 32 is arranged inside the outer shell body 31 and is integrally formed with the outer shell body 31. The height of the front side of the outer shell body 31 is slightly higher than that of the rear side to ensure the effective protection of the structure of the connecting component 5 and further improve the aesthetics of the radiator itself. The connecting component 5 further includes a first step groove 59 and a second step groove 510. The first step groove 59 is opened outside the lower connecting member 51, and the second step groove 510 is opened outside the upper connecting member 52. After the protective shell 3 is sleeved outside the connecting component 5, the second step groove 510 and the first step groove 59 are placed between the two clamping strips 32. A clamping notch is formed through the second step groove 510 and the first step groove 59. After the protective shell 3 is inserted, the two clamping strips 32 are fitted between the two notches, thereby ensuring the stability of the installation of the protective shell 3.
[0029] Please refer to the appendix Figure 1 - the appendix Figure 3 The heating radiator further includes a side guard plate 4. The side guard plate 4 is placed outside the heating pipe 1 and is clamped with the end of the protective shell 3. A notch for the heating pipe 1 to pass through is opened in the middle of the side guard plate 4. After the installation is completed, the side guard plate 4 is clamped to the end of the protective shell 3, thereby blocking both sides of the protective shell 3 to provide the protection level.
[0030] An assembly method for a detachable and weld-free heating radiator includes the following steps: The connecting component 5 is tightly connected to the branch pipe 21 and the connecting pipe 11 through the second rubber sealing ring 55, bolts 57 and nuts 58 to achieve sealing and fixation; during assembly, first embed the nut 58 into the installation hole opened at the bottom of the lower connecting part 51, then sleeve the gasket 56 outside the connecting head 53, and insert the connecting head 53 into the inside of the branch pipe 21 to achieve the preliminary connection of the components. Then, after placing the second rubber sealing ring 55 inside the installation groove 54, align the pipe hole 13 at the bottom of the connecting pipe 11 with the channel inside the lower connecting part 51, press it on the upper surface of the lower connecting part 51, then place the upper connecting part 52 corresponding to the lower connecting part 51 on the upper part of the connecting pipe 11, and ensure that the through holes opened around the upper connecting part 52 are aligned with the through holes around the lower connecting part 51. Then insert the bolt 57 from the upper part of the upper connecting part 52, pass it through the through holes around the upper connecting part 52 and the lower connecting part 51 and then connect it to the nut 58. By screwing the bolt 57, the locking of the upper connecting part 52 and the lower connecting part 51 is completed, thus completing the connection of the connecting pipe 11 and the branch pipe 21.
[0031] Then, the protective shell 3 is assembled outside the connecting component 5 through the clamping structure and cooperates with the preset side guard plate 4 to complete the protection of the component; insert the outer shell 31 from the side of the connecting component 5, so that the two protruding clamping strips 32 inside the outer shell 31 are respectively placed at the bottom of the first step groove 59 and the top of the second step groove 510. Through the clamping relationship between the first step groove 59 and the second step groove 510 and the clamping strips 32, the connection between the outer shell 31 and the connecting component 5 is realized, thereby protecting the overall components of the connecting component 5.
[0032] Finally, insert the two end pipe fittings 12 into the connecting pipe 11 and use the first rubber sealing ring 14 to connect to the house heating system to achieve a non-welded and detachable overall assembly. After the assembly of the radiator main body is completed, insert the pipe fittings 12 into both ends of the connecting pipe 11, and complete the connection between the pipe fittings 12 and the connecting pipe 11 through the first rubber sealing ring 14 externally connected to the pipe fittings 12. In this way, the radiator can be connected to the house heating pipeline through the pipe fittings 12 to complete the installation of the entire device.
[0033] Working principle: During assembly, first embed the nut 58 into the mounting hole opened at the bottom of the lower connector 51. Then, slip the gasket 56 over the outside of the adapter 53 and insert the adapter 53 into the inside of the branch pipe 21 to achieve the preliminary connection of the components. After placing the second rubber sealing ring 55 inside the mounting groove 54, align the pipe hole 13 at the bottom of the connecting pipe 11 with the channel inside the lower connector 51, and press it onto the upper surface of the lower connector 51. Then, place the upper connector 52 corresponding to the lower connector 51 on the upper part of the connecting pipe 11, and ensure that the through holes opened around the upper connector 52 are aligned with the through holes around the lower connector 51. Then, insert the bolt 57 from the upper part of the upper connector 52, pass it through the through holes around the upper connector 52 and the lower connector 51, and connect it to the nut 58. By turning the bolt 57, the upper connector 52 and the lower connector 51 are locked, thus completing the connection of the connecting pipe 11 and the branch pipe 21. Then, connect other branch pipes 21 to the connecting pipe 11 in the above manner to complete the assembly of the main pipeline. After that, insert the pipe fittings 12 into both ends of the connecting pipe 11, and complete the connection between the pipe fittings 12 and the connecting pipe 11 through the first rubber sealing ring 14 externally connected to the pipe fittings 12. In this way, the radiator can be connected to the house heating pipeline through the pipe fittings 12 to complete the installation of the entire device. Before that, insert the outer casing 31 from the side of the connection assembly 5, so that the two protruding clamping strips 32 inside the outer casing 31 are respectively placed at the bottom of the first step groove 59 and the top of the second step groove 510. The connection between the outer casing 31 and the connection assembly 5 is realized through the clamping relationship between the first step groove 59 and the second step groove 510 and the clamping strips 32, thereby protecting the overall components of the connection assembly 5. After the outer casing 31 is installed, the side guard plate 4 pre-sleeved on the house heating pipeline is clamped with the outer casing 31 to protect the side of the outer casing 31, so as to further improve the protection level of the connection assembly 5. The above is the entire installation process of the device. When a component is damaged, it can be disassembled by a single person, which is convenient for repairing and maintaining the radiator and greatly reduces the maintenance cost.
[0034] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made in these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A detachable and weld-free heating radiator, characterized in that, including, a heating pipe (1) for connecting with a house heating pipeline to realize the input of heat and the discharge of circulating water; a heat dissipation component (2) which is connected with the heating pipe (1) and cooperates with the heating pipeline to realize indoor heating; a connection component (5) for quickly assembling and connecting the heating pipe (1) and the heat dissipation component (2). The connection component (5) includes an upper connector (52) and a lower connector (51) respectively arranged on the upper and lower sides of the heating pipe (1), and the lower connector (51) and the upper connector (52) are connected by bolts (57) and nuts (58). A connection head (53) connected with the heat dissipation component (2) is installed at the bottom of the lower connector (51) to realize the connection between the heating pipe (1) and the heat dissipation component (2); a protective shell (3) installed outside the heating pipe (1) and the connection component (5) for protecting the connection component (5).
2. The detachable and weld-free heating radiator according to claim 1, wherein The heating pipe (1) includes a connecting pipe (11), a pipe fitting (12) and a pipe hole (13). The pipe hole (13) is opened on the outer side of the connecting pipe (11). The pipe hole (13) is aligned with the middle channel of the lower connector (51). The pipe fitting (12) is sleeved at the end of the connecting pipe (11) and has internal threads.
3. The detachable and weld-free heating radiator according to claim 2, wherein The heating pipe (1) further includes a first rubber sealing ring (14). The first rubber sealing ring (14) is sleeved outside the pipe fitting (12), and the pipe fitting (12) is tightly fitted with the inner wall of the connecting pipe (11) through the first rubber sealing ring (14).
4. The detachable and weld-free heating radiator according to claim 1, wherein The heat dissipation component (2) includes a branch pipe (21) and heat dissipation fins (22). The heat dissipation fins (22) are fixedly connected to the outer wall of the branch pipe (21). The branch pipe (21) is sleeved outside the connection head (53) and is connected with the connecting pipe (11) through the connection head (53) and the lower connector (51).
5. The detachable and weld-free heating radiator according to claim 4, characterized in that, The heat dissipation fin (22) includes a heat conduction part (221) closely attached to the branch pipe (21), multiple groups of heat dissipation parts (222) distributed on the outer periphery of the heat conduction part (221), and a protection part (223) connecting the heat conduction part (221) and the heat dissipation parts (222). The heat conduction part (221) and the heat dissipation parts (222) are respectively used for heat conduction and heat dissipation, and the protection part (223) is used for shielding and protecting the front end of the radiator.
6. The detachable and weld-free heating radiator according to claim 2, wherein The connection component (5) further includes an installation groove (54) and a gasket (56). The installation groove (54) is opened inside the lower connector (51). A second rubber sealing ring (55) is installed inside the installation groove (54). After the connecting pipe (11) is embedded inside the lower connector (51), the second rubber sealing ring (55) abuts against the outer bottom wall of the connecting pipe (11). The gasket (56) is sleeved outside the connection head (53).
7. A detachable and weld-free heating radiator according to claim 1, characterized in that, The protective shell (3) includes a shell body (31) and a clamping strip (32). The clamping strip (32) is arranged inside the shell body (31), and the clamping strip (32) and the shell body (31) are integrally formed.
8. A detachable and weld-free heating radiator according to claim 7, characterized in that The connecting component (5) further includes a first stepped groove (59) and a second stepped groove (510). The first stepped groove (59) is formed on the outer side of the lower connecting member (51), and the second stepped groove (510) is formed on the outer side of the upper connecting member (52). After the protective shell (3) is sleeved on the outer side of the connecting component (5), the second stepped groove (510) and the first stepped groove (59) are located between the two clamping strips (32).
9. A detachable and weld-free heating radiator according to claim 1, characterized in that The heating radiator further includes a side guard plate (4). The side guard plate (4) is disposed on the outer side of the heating pipeline (1), is clamped with the end of the protective shell (3), and a notch for the heating pipeline (1) to pass through is formed in the middle of the side guard plate (4).
10. An assembly method for a detachable and solder-free heating radiator, characterized in that, Applying to the detachable and weld-free heating radiator according to any one of claims 1-9, comprising the following steps: S1. Lock and connect the connecting component (5) with the branch pipe (21) and the connecting pipe (11) through a second rubber sealing ring (55), bolts (57), and nuts (58) to achieve sealing and fixation; S2. Then, assemble the protective shell (3) outside the connecting component (5) through a clamping structure and cooperate with a preset side guard plate (4) to complete the protection of the component; S3. Finally, insert the two end pipe fittings (12) into the connecting pipe (11) and connect them to the house heating system by using a first rubber sealing ring (14) to achieve the overall assembly that is weld-free and detachable.