Convection type copper pipe radiator

By introducing adjustment components and protective components into the radiator, the existing radiator is solved for inconvenient position adjustment and insufficient protection of the radiator pipe during installation, achieving more efficient installation and longer service life.

CN222895183UActive Publication Date: 2025-05-23JIANGSU KELIPU INTELLIGENT MFG CO LTD
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Patent Information

Application Number
CN202421910951.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-05-23
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

The existing radiator cannot adjust the position of the mounting plate according to actual conditions when installing, and lacks protection from the heat sink, resulting in inconvenient installation and short service life.

Method used

A convection copper tube radiator is designed, using adjustment components and protective components. The adjustment components achieve free adjustment of the mounting plate position through sliding connections and the clamp guide groove. The protective components protect the heat sink through protective shells and clamps.

Benefits of technology

It improves the installation convenience and service life of the radiator, ensures effective protection of the radiator pipes without affecting the heat dissipation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a convection type copper pipe radiator, and relates to the technical field of copper pipe radiators. The inner walls of the two sides of the frame jointly penetrate through a heat dissipation pipe, two protection assemblies are movably arranged on the outer surface of the frame, connecting plates are fixedly connected to the two ends of the frame, two adjusting assemblies are arranged at one ends of the two connecting plates in a sliding mode, and mounting plates are fixedly connected to one ends of the four adjusting assemblies; the adjusting assembly comprises a shell, and one end of the shell is fixedly connected with one end of the mounting plate, through the arrangement of the adjusting assembly structure, the position of the mounting plate on the radiator structure can be freely adjusted, so that the radiator structure can be conveniently mounted, and the mounting convenience of the radiator structure is improved; the heat dissipation pipe can be effectively protected, the heat dissipation effect of the heat dissipation pipe is not affected while protection is conducted, and then the service life of the radiator structure is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of copper tube radiators, in particular to a convection type copper tube radiator. Background Art

[0002] Radiator is an important and basic component of hot water (or steam) heating system. Hot water is cooled in the radiator (or steam is condensed in the radiator) to provide heat to the room to achieve the purpose of heating. The metal consumption and cost of the radiator account for a considerable proportion in the heating system. Therefore, the correct selection of the radiator involves the economic indicators and operation effect of the system.

[0003] Firstly, the existing radiator cannot avoid installation obstacles according to the actual installation situation during installation, and the radiator structure does not have an adjustment component, which makes it inconvenient to freely adjust the position of the mounting plate on the radiator, reducing the convenience of installing the radiator structure; secondly, the existing radiator structure does not have a structure to protect the heat pipe, and the heat pipe is prone to damage during the use of the radiator structure, thereby affecting the use of the radiator structure, and there is no protective component, which makes it inconvenient to better protect the heat pipe in the radiator structure, reducing the service life of the radiator structure. Utility Model Content

[0004] In order to solve the problem that the existing radiator structure is not convenient for freely adjusting the position of the mounting plate on the radiator and is not convenient for better protecting the heat pipes in the radiator structure; the purpose of the utility model is to provide a convection copper tube radiator.

[0005] In order to solve the above technical problems, the utility model adopts the following technical solutions: a convection copper tube radiator, comprising a frame, the inner walls on both sides of the frame are penetrated by a heat dissipation pipe, the outer surface of the frame is movably provided with two protective components, both ends of the frame are fixedly connected with a connecting plate, one end of the two connecting plates is slidably provided with two adjustment components, one end of the four adjustment components is fixedly connected with a mounting plate, the adjustment component comprises a shell, one end of the shell is fixedly connected to one end of the mounting plate, and the bottom end of the shell is slidably connected to the top end of the connecting plate, and the shell The upper inner wall is fixedly connected with a telescopic rod, and the output end of the telescopic rod is fixedly connected with a first connecting seat, the inner walls on both sides of the first connecting seat are hinged with two connecting rods through two rotating shafts, and the two ends of the two connecting rods are hinged with a second connecting seat through the rotating shafts, and the bottom ends of the two second connecting seats are fixedly connected with clamping blocks, the lower inner wall of the shell is provided with a guide groove for matching with the two clamping blocks, and the bottom ends of the two clamping blocks pass through the guide groove, and the top of the connecting plate is provided with a plurality of clamping slots for matching with the two clamping blocks, and the outer surfaces of the two clamping blocks are respectively movably connected with the inner walls of the corresponding two clamping slots.

[0006] Preferably, the protective assembly includes a protective shell, one end of the protective shell is movably connected to one end of the frame, both ends of the protective shell are fixedly connected with a clamping plate, both sides of one end of the frame are provided with mounting grooves for cooperating with two clamping plates, the outer surfaces of the two clamping plates are respectively movably connected to the inner walls of the two mounting grooves, and one end of the two clamping plates is provided with a through first connecting hole, and both ends of the frame are provided with a second connecting hole for cooperating with the first connecting hole, and the corresponding inner walls of the first connecting hole and the second connecting hole are commonly threadedly connected with bolts.

[0007] Compared with the prior art, the beneficial effects of the utility model are:

[0008] 1. The present application can freely adjust the position of the mounting plate on the radiator structure by adjusting the setting of the assembly structure, so as to facilitate the installation of the radiator structure and improve the convenience of the installation of the radiator structure;

[0009] 2. The present application can effectively protect the heat pipe by setting up a protective component structure, and at the same time does not affect the heat dissipation effect of the heat pipe, thereby increasing the service life of the radiator structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0011] Figure 1 It is a schematic diagram of the structure of the utility model.

[0012] Figure 2 It is a schematic diagram of the cross-sectional structure of the adjustment component of the utility model.

[0013] Figure 3 For this utility model Figure 2 A schematic diagram of the enlarged structure in the middle.

[0014] Figure 4 This is a schematic diagram of the explosive structure of the protective component of the utility model.

[0015] In the figure: 1. frame; 2. adjustment component; 21. shell; 24. connecting rod; 25. second connecting seat; 26. limit block; 27. long groove; 28. guide groove; 29. ​​card slot; 201. card block; 202. first connecting seat; 203. telescopic rod; 3. protection component; 31. protection shell; 32. card plate; 33. bolt; 34. second connecting hole; 35. mounting slot; 36. first connecting hole; 4. mounting hole; 5. heat pipe; 6. connecting plate; 7. mounting plate. DETAILED DESCRIPTION

[0016] 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.

[0017] Example: Figure 1-4As shown, the utility model provides a convection copper tube radiator, comprising a frame 1, the inner walls on both sides of the frame 1 are jointly penetrated by a heat dissipation pipe 5, the outer surface of the frame 1 is movably provided with two protective components 3, both ends of the frame 1 are fixedly connected with a connecting plate 6, one end of the two connecting plates 6 are slidably provided with two adjustment components 2, one end of the four adjustment components 2 are fixedly connected with a mounting plate 7, the adjustment component 2 comprises a shell 21, one end of the shell 21 is fixedly connected to one end of the mounting plate 7, and the bottom end of the shell 21 is slidably connected to the top of the connecting plate 6, the upper inner wall of the shell 21 is fixedly connected with a telescopic rod 203, and the output end of the telescopic rod 203 is fixedly connected with a first connecting seat 202, the inner walls on both sides of the first connecting seat 202 are hinged with two connecting rods 24 through two rotating shafts, and the two ends of the two connecting rods 24 are hinged with a second connecting seat 25 through the rotating shaft, the bottom ends of the two second connecting seats 25 are fixedly connected with a card block 201, and the lower inner wall of the shell 21 is provided with a configuration The guide groove 28 used by the two card blocks 201 is provided, and the bottom ends of the two card blocks 201 pass through the guide groove 28. The top of the connecting plate 6 is provided with a plurality of card grooves 29 used for matching the two card blocks 201. The outer surfaces of the two card blocks 201 are respectively movably connected with the inner walls of the corresponding two card grooves 29. The two protection components 3 are used in cooperation to protect the heat pipe 5 in the radiator structure to prevent the heat pipe 5 from being damaged. Through the use of the four adjustment components 2, the telescopic rod 203 is started, and the telescopic rod 203 drives the first connecting seat 202 to move. The first connecting seat 202 moves and cooperates with the two connecting rods 24 and the two second connecting seats 25 to make the two card blocks 201 move synchronously. At the same time, the guide groove 28 plays a role in guiding and limiting the movement of the two card blocks 201. When the card block 201 is stuck in the card groove 29, the shell 21 is positioned. When the card block 201 is not stuck in the card groove 29, the shell 21 can be slid so that the mounting plate 7 is adjusted to a suitable mounting position, thereby facilitating the installation of the radiator structure.

[0018] The protection component 3 includes a protection shell 31, one end of the protection shell 31 is movably connected to one end of the frame 1, and both ends of the protection shell 31 are fixedly connected with a clamping plate 32. Both sides of one end of the frame 1 are provided with mounting grooves 35 for matching with the two clamping plates 32. The outer surfaces of the two clamping plates 32 are respectively movably connected with the inner walls of the two mounting grooves 35, and one end of the two clamping plates 32 is provided with a through first connecting hole 36. Both ends of the frame 1 are provided with a second connecting hole 34 for matching with the first connecting hole 36. The corresponding inner walls of the first connecting hole 36 and the second connecting hole 34 are commonly threadedly connected with bolts 33. The two clamping plates 32 are respectively clamped in the corresponding mounting grooves 35, so that the protection shell 31 is clamped on the frame 1, and then the protection shell 31 is firmly connected to the frame 1 by the bolts 33 in combination with the first connecting hole 36 and the second connecting hole 34, so that the protection shell 31 protects the heat pipe 5 in the frame 1, thereby improving the service life of the radiator structure.

[0019] The heat dissipation pipe 5 is in a spiral shape, and the spiral arrangement makes the heat dissipation effect of the heat dissipation pipe 5 better and the heat dissipation more uniform.

[0020] One end of the four mounting plates 7 is slidably connected to the outer surface of the frame 1 , and one end of the four mounting plates 7 is provided with a mounting hole 4 . The setting of the mounting hole 4 facilitates the installation of the mounting plates 7 .

[0021] The internal structures of the four adjusting components 2 are the same, and the internal structures of the two protecting components 3 are the same, so that the operating steps of the four adjusting components 2 are the same. The two protecting components 3 can be used together to better protect the heat pipe 5.

[0022] The two sides of the bottom end of the shell 21 are fixedly connected to the limiting blocks 26. The outer surface of the connecting plate 6 is provided with two long grooves 27 used to cooperate with the limiting blocks 26, and the outer surfaces of the two limiting blocks 26 are respectively slidably connected to the inner walls of the two long grooves 27. The long grooves 27 are used in conjunction with the limiting blocks 26 to facilitate the guiding and limiting of the shell 21 when it moves on the connecting plate 6.

[0023] The outer surfaces of the two limit blocks 26 and the inner walls of the two long grooves 27 are both in an “L” shape, which makes it easier for the long grooves 27 to better cooperate with the limit blocks 26 for use.

[0024] The two protective shells 31 are both hollow, and the two protective components 3 are distributed in a mirror image. The hollow protective shells 31 prevent the protective shells 31 from affecting the heat dissipation of the heat pipe 5, and the mirror image distribution facilitates the protective shells 31 to protect both sides of the heat pipe 5 at the same time.

[0025] Working principle: First, through the two protection components 3, the card plate 32 is clamped in the corresponding installation groove 35, so that the protection shell 31 is clamped on the frame 1;

[0026] Then, the protective shell 31 is firmly connected to the frame 1 by using the bolts 33 in conjunction with the first connecting holes 36 and the second connecting holes 34, so that the protective shell 31 protects the heat dissipation pipes 5 in the frame 1;

[0027] At the same time, the hollow protective shell 31 does not affect the heat dissipation effect of the heat pipe 5 during protection;

[0028] Next, the telescopic rod 203 is started by using the four adjustment components 2 in cooperation, and the telescopic rod 203 drives the first connecting seat 202 to move. The first connecting seat 202 moves in cooperation with the two connecting rods 24 and the two second connecting seats 25 so that the two clamping blocks 201 move synchronously, and the guide groove 28 plays a role in guiding and limiting the movement of the two clamping blocks 201.

[0029] When the block 201 is not stuck in the slot 29, the housing 21 can be slid so that the mounting plate 7 is adjusted to a suitable mounting position. Then, when the block 201 is stuck in the slot 29, the housing 21 is positioned.

[0030] At the same time, the long groove 27 cooperates with the limiting block 26 to facilitate the guiding and limiting of the housing 21 when it moves on the connecting plate 6. The connecting plate 6 here is transparent, so that the four mounting plates 7 are adjusted to the appropriate mounting position;

[0031] Then, the expansion wire is passed through the mounting hole 4 to nail the mounting plate 7 to a suitable position, and the radiator structure is then installed.

[0032] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include these modifications and variations.

Claims

1. A convection copper tube radiator, comprising a frame (1), characterized in that: The inner walls of both sides of the frame (1) are provided with a heat dissipation pipe (5) penetrating therethrough; the outer surface of the frame (1) is provided with two protective components (3) movably; both ends of the frame (1) are fixedly connected with a connecting plate (6); one end of each of the two connecting plates (6) is provided with two adjusting components (2) in a slidable manner; and one end of each of the four adjusting components (2) is fixedly connected with a mounting plate (7); The adjusting assembly (2) comprises a shell (21), one end of the shell (21) is fixedly connected to one end of the mounting plate (7), and the bottom end of the shell (21) is slidably connected to the top end of the connecting plate (6), the upper inner wall of the shell (21) is fixedly connected to a telescopic rod (203), and the output end of the telescopic rod (203) is fixedly connected to a first connecting seat (202), the inner walls on both sides of the first connecting seat (202) are hinged with two connecting rods (24) via two rotating shafts, and both ends of the two connecting rods (24) are hinged via the rotating shafts. A second connecting seat (25) is connected, and the bottom ends of the two second connecting seats (25) are fixedly connected to a clamping block (201). The lower inner wall of the shell (21) is provided with a guide groove (28) used in conjunction with the two clamping blocks (201), and the bottom ends of the two clamping blocks (201) pass through the guide groove (28). The top end of the connecting plate (6) is provided with a plurality of clamping grooves (29) used in conjunction with the two clamping blocks (201), and the outer surfaces of the two clamping blocks (201) are respectively movably clamped with the inner walls of the two corresponding clamping grooves (29).

2. A convection copper tube radiator as claimed in claim 1, characterized in that: The protection assembly (3) comprises a protection shell (31), one end of the protection shell (31) is movably connected to one end of the frame (1), both ends of the protection shell (31) are fixedly connected with a clamping plate (32), both sides of one end of the frame (1) are provided with mounting grooves (35) for matching with the two clamping plates (32), the outer surfaces of the two clamping plates (32) are respectively movably connected with the inner walls of the two mounting grooves (35), and one end of the two clamping plates (32) is provided with a through first connecting hole (36), and both ends of the frame (1) are provided with a second connecting hole (34) for matching with the first connecting hole (36), and the inner walls of the corresponding first connecting hole (36) and the second connecting hole (34) are commonly threadedly connected with a bolt (33).

3. A convection copper tube radiator as claimed in claim 1, characterized in that: The heat dissipation pipe (5) is in a spiral shape.

4. A convection copper tube radiator as claimed in claim 1, characterized in that: One end of each of the four mounting plates (7) is slidably connected to the outer surface of the frame (1), and one end of each of the four mounting plates (7) is provided with a mounting hole (4).

5. A convection copper tube radiator as claimed in claim 1, characterized in that: The internal structures of the four adjustment components (2) are the same, and the internal structures of the two protection components (3) are the same.

6. A convection copper tube radiator as claimed in claim 1, characterized in that: The bottom ends of the shell (21) are fixedly connected to limit blocks (26), the outer surface of the connecting plate (6) is provided with two long grooves (27) for use with the limit blocks (26), and the outer surfaces of the two limit blocks (26) are slidably connected to the inner walls of the two long grooves (27) respectively.

7. A convection copper tube radiator as claimed in claim 6, characterized in that: The outer surfaces of the two limit blocks (26) and the inner walls of the two long grooves (27) are both in an "L" shape.

8. A convection copper tube radiator as claimed in claim 2, characterized in that: The two protective shells (31) are both hollow-out, and the two protective components (3) are distributed in a mirror-image manner.