Radiation plate

By using a combination of connecting blocks and connecting rods on the radiant plate, the problem of loose screws is solved, resulting in a more stable and secure connection.

CN224065610UActive Publication Date: 2026-03-31ZHEJIANG GREEN GUIDE ENVIRONMENTAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The screws on the existing radiant panel are prone to loosening, resulting in unstable connections and affecting the safety and stability of the connection.

Method used

The combination of connecting blocks and connecting rods increases the contact area. The connecting blocks are embedded in the slots of adjacent radiating plates, and the connecting rods and locking devices are used for connection, which enhances the stability and safety of the connection.

Benefits of technology

This improves the stability and safety of the connection between the radiant panels, avoids the problem of loose screws, increases the connection area, and enhances the overall structural strength.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a radiant panel which comprises a radiant panel body and a pipeline, the top of the radiant panel body is provided with a panel, a connecting piece comprises a connecting block and a connecting rod, the radiant panel body and the panel form a first notch, the radiant panel body is provided with first through holes distributed in the horizontal direction, the first through holes are communicated with the first notch, and meanwhile the first through holes are connected with the outside. The connecting block is provided with two second through holes distributed in the horizontal direction, and the second through holes penetrate through the connecting block front and back. When the two adjacent radiant panel bodies in the X-axis direction are spliced, the single connecting block is embedded into the first notches of the two adjacent radiant panel bodies, and the connecting rod penetrates through the first through hole and the second through hole, so that the two adjacent radiant panel bodies are connected. According to the utility model, the contact area between the connecting block and the connecting rod can be increased, the contact area between the connecting rod and the radiant panel body is increased, the influence of the thickness of the radiant panel body is avoided, and the stability and safety of the connection of the radiant panel body are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of radiation heat exchange, and particularly relates to a radiation plate. BACKGROUND

[0002] With the continuous progress of science and technology and the increasing improvement of people's living standards, air conditioners are increasingly widely used, and in the air conditioning industry, heat is supplied in winter and cooling is supplied in summer in the form of radiation, and the air conditioning system is widely used due to the advantages of energy saving, comfort, noiselessness, small floor space and the like.

[0003] The radiation plate of the prior art is connected to form a whole through a connecting piece, such as the invention patent disclosed in the name of a dew-proof heat exchange radiation plate based on fractal theory and a radiation unit (application publication number: CN117190748A). When a connecting block is embedded in the groove of the radiation plate body, and a screw is screwed into the threaded hole of the connecting block and the threaded hole of the radiation plate body, the adjacent two radiation plate bodies can be connected. However, the thickness of the radiation plate is limited, resulting in a small depth of the threaded hole of the radiation plate body. When the radiation plate is installed as a whole, the screw on the radiation plate body is prone to loosening, affecting the connection between the radiation plate bodies. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the above technical problems existing in the prior art, and provides a radiation plate, which increases the contact area of the connecting block and the connecting rod, and simultaneously increases the contact area of the connecting rod and the radiation plate body, is not affected by the thickness of the radiation plate body, and improves the stability and safety of the connection of the radiation plate body.

[0005] In order to solve the above technical problems, the utility model adopts the following technical scheme:

[0006] A radiation plate comprises a radiation plate body and a pipeline, the width direction of the radiation plate body is defined as the X-axis direction, the length direction of the radiation plate body is defined as the Y-axis direction, the top of the radiation plate body is provided with a panel, the radiation plate body is provided with a groove, the pipeline is arranged in the groove, and the panel covers the pipeline. The utility model is characterized in that the utility model further comprises a connecting piece, the connecting piece comprises a connecting block and a connecting rod, the radiation plate body and the panel are formed with a slot one, the radiation plate body is provided with horizontally distributed through holes one, the through holes one are connected with the slot one, and the through holes one are connected with the outside world, the connecting block is provided with two horizontally distributed through holes two, and the through holes two are through the connecting block from front to back. When the adjacent two radiation plate bodies in the X-axis direction are spliced, a single connecting block is embedded in the slot one of the adjacent two radiation plate bodies, the connecting rod passes through the through holes one and the through holes two, and the adjacent two radiation plate bodies are connected.

[0007] Furthermore, the radiant plate body is provided with horizontally distributed through holes three, and the radiant plate body and the panel form a groove two. The through holes three connect groove two and groove one. The connecting rod passes through the through holes three and extends into groove two. The connecting rod is threadedly connected to a locking member. The locking member is located in groove two and locked to the inner wall of groove two.

[0008] Furthermore, a cover plate is fixed in slot two, and the cover plate covers the locking component.

[0009] Furthermore, the radiant plate body is provided with a threaded hole one, the cover plate is provided with a threaded hole two, and a fixing screw is threadedly connected between the threaded hole one and the threaded hole two.

[0010] Furthermore, the radiant plate has a positioning groove, and the cover plate has a positioning protrusion, which is embedded in the positioning groove.

[0011] Furthermore, the cover plate is provided with a shielding part, and the cover plate and the shielding part are integrally formed structures, with the shielding part located above the locking element.

[0012] Furthermore, the top of the connecting block is provided with a groove three, and two grooves three form a connecting part, which is used to apply force.

[0013] Furthermore, the radiating plate is provided with a limiting groove and a limiting protrusion. When two adjacent radiating plates are spliced ​​together in the Y-axis direction, the limiting protrusion on one radiating plate is embedded in the limiting groove on the other radiating plate.

[0014] Furthermore, the connecting block is provided with an enlarged hole, which is connected to the second through hole, and the diameter of the enlarged hole is larger than the diameter of the second through hole.

[0015] This utility model, by adopting the above-mentioned technical solution, has the following beneficial effects:

[0016] This invention splices two adjacent radiating plates in the X-axis direction, then embeds a connecting block into the groove one of the two adjacent radiating plates and the panel, and then inserts a connecting rod horizontally into the through hole one of the radiating plate and the through hole two of the connecting block. The connecting rods of the two adjacent radiating plates are all connected to the same connecting block, so that the two adjacent radiating plates are connected into an integral structure.

[0017] The contact area between the connecting rod and the connecting block is larger than that between the existing vertically arranged screws and connecting blocks. At the same time, the contact area between the connecting rod and the radiating plate is also larger than that between the existing vertically arranged screws and the radiating plate. This increases the contact area between the connecting block and the connecting rod, as well as the contact area between the connecting rod and the radiating plate. This is not affected by the thickness of the radiating plate and improves the stability and safety of the connection between the radiating plates. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings:

[0019] Figure 1 This is a schematic diagram of the structure of a radiating plate according to the present invention;

[0020] Figure 2 This is a schematic diagram of the structure connecting the radiating plates in this utility model;

[0021] Figure 3 This is a schematic diagram of the structure of the radiating plate in this utility model;

[0022] Figure 4 This is a structural schematic diagram of through hole one, slot one, through hole three, and slot two in this utility model;

[0023] Figure 5 This is a schematic diagram of the connecting component in this utility model;

[0024] Figure 6 This is a schematic diagram of the connecting block in this utility model;

[0025] Figure 7 This is a schematic diagram of the connecting rod in this utility model;

[0026] Figure 8 This is a schematic diagram of the cover plate in this utility model;

[0027] Figure 9 This is a schematic diagram of the structure of this utility model after the cover plate is removed;

[0028] Figure 10 for Figure 9 A magnified schematic diagram of the structure at point A in the middle.

[0029] In the diagram, 1-Radiation plate body; 2-Pipe; 3-Connecting block; 4-Connecting rod; 5-Slot 1; 6-Through hole 1; 7-Through hole 2; 8-Enlarged hole; 9-Slot 3; 10-Connecting part; 11-Locking part; 12-Slot 2; 13-Through hole 3; 14-Threaded hole 1; 15-Positioning groove; 16-Cover plate; 17-Fixing screw; 18-Threaded hole 2; 19-Positioning protrusion; 20-Shielding part; 21-Limiting protrusion; 22-Limiting groove; 23-Panel. Detailed Implementation

[0030] like Figures 1 to 10 As shown, this utility model discloses a radiant plate, which includes a radiant plate body 1 and a pipe 2. The top of the radiant plate body 1 is provided with a panel 23. The radiant plate body 1 has a groove, the pipe 2 is disposed in the groove, and the panel 23 covers the pipe 2.

[0031] To better illustrate the connection between the radiating plates 1, this utility model defines the width direction of the radiating plate 1 as the X-axis direction and the length direction of the radiating plate 1 as the Y-axis direction. The X-axis direction and the Y-axis direction are not technical features of this utility model.

[0032] This invention eliminates screws, replacing them with a connecting block 3 and a connecting rod 4 as the connecting components. The radiating plate body 1 and the panel 23 form a slot 5. The radiating plate body 1 has horizontally distributed through holes 6, which connect to the slot 5 and also connect to the outside. The connecting block 3 has two horizontally distributed through holes 7, which extend through the connecting block 3 from front to back.

[0033] When two adjacent radiating plates 1 in the X-axis direction are spliced, a single connecting block 3 is embedded in the slot 5 of the two adjacent radiating plates 1 and the panel 23. The connecting rod 4 passes through the through hole 6 and the through hole 7, so that the connecting rod 4 of the two adjacent radiating plates 1 is set on the same connecting block 3, connecting the two adjacent radiating plates 1 in the X-axis direction into a whole structure. The contact area between the connecting rod 4 and the connecting block 3 is larger than the contact area between the existing vertically set screw and the connecting block 3. At the same time, the contact area between the connecting rod 4 and the radiating plate 1 is also larger than the contact area between the existing vertically set screw and the radiating plate 1, thereby increasing the contact area between the connecting block 3 and the connecting rod 4, and increasing the contact area between the connecting rod 4 and the radiating plate 1. This is not affected by the thickness of the radiating plate 1, and improves the stability and safety of the connection between the radiating plates 1.

[0034] The connecting block 3 of this utility model has two slots 9 on its top, which form a connecting part 10. Applying force to the connecting part 10 facilitates the installation or removal of the connecting block 3. The connecting block 3 has an enlarged hole 8, which communicates with a through hole 7. The diameter of the enlarged hole 8 is larger than the diameter of the through hole 7. By increasing the diameter of the enlarged hole 8, the connecting rod 4 can quickly pass through the through hole 7.

[0035] The radiant plate body 1 has horizontally distributed through holes 13. The radiant plate body 1 and the panel 23 form a slot 12. The through holes 13 connect the slot 12 and the slot 5. The connecting rod 4 passes through the through holes 13 and extends into the slot 12. The connecting rod 4 is threadedly connected to a locking member 11. The locking member 11 is located in the slot 12 and locked to the inner wall of the slot 12, thus limiting the connecting rod 4 to the radiant plate body 1 and preventing it from falling off. A cover plate 16 is fixed in the slot 12. The cover plate 16 has a shielding part 20. The cover plate 16 and the shielding part 20 are integrally formed. The shielding part 20 is located above the locking member 11 and covers the locking member 11, thus concealing the locking member 11 and protecting it, ensuring its locking function.

[0036] The radiant plate body 1 has a threaded hole 14, and the cover plate 16 has a threaded hole 18. A fixing screw 17 is threaded between the threaded holes 14 and 18, allowing the cover plate 16 to be detachably connected to the radiant plate body 1. By removing the cover plate 16, force is applied to the locking member 11 to ensure that the locking member 11 is in a locked state. The radiant plate body 1 has a positioning groove 15, and the cover plate 16 has a positioning protrusion 19. The positioning protrusion 19 is embedded in the positioning groove 15, which can position the cover plate 16 in the radiant plate body 1, making it easy to quickly screw in the fixing screw 17, and at the same time increasing the firmness of the connection between the cover plate 16 and the radiant plate body 1.

[0037] The radiant plate 1 is provided with a limiting groove 22 and a limiting protrusion 21. When two adjacent radiant plates 1 in the Y-axis direction are spliced ​​together, the limiting protrusion 21 on one radiant plate 1 is embedded in the limiting groove 22 on the other radiant plate 1.

[0038] The above are merely specific embodiments of this utility model, but the technical features of this utility model are not limited thereto. Any simple changes, equivalent substitutions, or modifications made based on this utility model to solve essentially the same technical problems and achieve essentially the same technical effects are all covered within the protection scope of this utility model.

Claims

1. A radiation plate, comprising: a radiation plate body, a width direction of the radiation plate body is defined as an X-axis direction, a length direction of the radiation plate body is defined as a Y-axis direction, and a top of the radiation plate body is provided with a panel; a pipe, the radiation plate body is provided with a groove, the pipe is arranged in the groove, and the panel covers the pipe; characterized in that further comprising: a connecting piece, the connecting piece comprises a connecting block and a connecting rod, the radiation plate body and the panel are formed with a slot one, the radiation plate body is provided with horizontally distributed through holes one, the through holes one are connected with the slot one, and the through holes one are connected with the outside, the connecting block is provided with two horizontally distributed through holes two, and the through holes two are through the connecting block from front to back; when two adjacent radiation plate bodies in the X-axis direction are spliced, a single connecting block is embedded in the slot one of the two adjacent radiation plate bodies, the connecting rod is passed through the through holes one and the through holes two, so that the two adjacent radiation plate bodies are connected.

2. A radiant panel according to claim 1, characterized in that: the radiation plate body is provided with horizontally distributed through holes three, the radiation plate body and the panel are formed with a slot two, the through holes three are connected with the slot two and the slot one, the connecting rod is passed through the through holes three and extends into the slot two, the connecting rod is threadedly connected with a locking piece, the locking piece is arranged in the slot two and locked at an inner wall of the slot two.

3. A radiant panel according to claim 2, characterized in that: a cover plate is fixed in the slot two, and the cover plate covers the locking piece.

4. A radiant panel according to claim 3, characterized in that: the radiation plate body is provided with a threaded hole one, the cover plate is provided with a threaded hole two, and a fixing screw is threadedly connected between the threaded hole one and the threaded hole two.

5. A radiant panel according to claim 4, characterized in that: the radiation plate body is provided with a positioning groove, and the cover plate is provided with a positioning protrusion, the positioning protrusion is embedded in the positioning groove.

6. A radiant panel according to claim 3, characterized in that: the cover plate is provided with a shielding part, the cover plate and the shielding part are in an integral molding structure, and the shielding part is arranged above the locking piece.

7. A radiant panel according to claim 1, characterized in that: the top of the connecting block is provided with a slot three, two slot threes form a connecting part, and the connecting part is used for applying a force.

8. A radiant panel according to claim 1, characterized in that: the radiation plate body is provided with a limiting groove and a limiting protrusion, when two adjacent radiation plate bodies in the Y-axis direction are spliced, the limiting protrusion on one of the radiation plate bodies is embedded in the limiting groove on the other radiation plate body.

9. A radiant panel according to claim 1, characterized in that: the connecting block is provided with an enlarged hole, the enlarged hole is connected with the through hole two, and a diameter of the enlarged hole is greater than that of the through hole two.

Citation Information

Patent Citations

  • Anti-condensation heat exchange radiation plate based on fractal theory and radiation unit

    CN117190748A