Leakage-proof mucilage condenser

By designing the inner tube to extend out of the tank at both ends and configuring inlet and outlet glue tanks, combined with baffles and multiple condenser assemblies, the problem of inner tube leakage was solved, enabling reliable cooling and rapid repair of the silicone sealant, and improving cooling efficiency and quality.

CN224121769UActive Publication Date: 2026-04-14GUANGDONG CHUANGSHI SILICONE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG CHUANGSHI SILICONE CO LTD
Filing Date
2025-05-22
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing silicone sealant condenser structures, leaks are prone to occur at the weld between the inner tube and the connecting plate, causing cooling water to enter the inner tube and mix with the silicone sealant, affecting the quality of the silicone sealant and making it difficult to detect and repair quickly.

Method used

The design extends both ends of the inner tube out of the tank body and is equipped with glue inlet and glue outlet tanks, so that both ends of the inner tube are exposed outside the tank body, which facilitates reliable welding. The water baffle slows down the flow rate of cooling water, enhances the heat exchange effect, and the cooling efficiency is improved by connecting multiple sets of condenser components in series.

Benefits of technology

It effectively prevents leakage at the end of the inner tube, improves welding reliability, allows users to quickly detect and repair leaks, and enhances the cooling effect and efficiency of the silicone sealant.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224121769U_ABST
    Figure CN224121769U_ABST
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Abstract

The utility model relates to a leakproof mucilage condenser which comprises a tank body, a mucilage inlet tank and a mucilage outlet tank, a plurality of inner pipes are arranged in the tank body side by side, a water inlet and a water outlet are arranged on the tank body, the mucilage inlet tank and the mucilage outlet tank are respectively arranged beside two ends of the tank body, and a first end and a second end of each inner pipe respectively extend out of two ends of the tank body. The first ends of the inner pipes are connected and communicated with the glue inlet tank, the second ends of the inner pipes are connected and communicated with the glue outlet tank, and a glue inlet and a glue outlet are formed in the glue inlet tank and the glue outlet tank respectively. The two ends of the inner pipe are designed to extend out of the tank body, the glue inlet tank and the glue outlet tank are arranged, and the two ends of the inner pipe are connected and communicated with the glue inlet tank and the glue outlet tank respectively, so that the two ends of the inner pipe are exposed out of the tank body, welding is more convenient and more reliable, and leakage is not prone to occurring; therefore, the possibility that water leaks from the outer pipe to the end of the inner pipe is eliminated.
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Description

Technical Field

[0001] This utility model relates to the technical field of condensers, and in particular to a leak-proof adhesive condenser. Background Technology

[0002] Glass sealant is a material used to bond and seal various types of glass to other substrates. The production process of glass sealant involves high temperatures, making continuous production impossible. Therefore, it is necessary to cool the high-temperature material to room temperature. Existing glass sealant condenser structures, such as the novel multi-section assembled tube condenser disclosed in Chinese Patent Publication No. CN214065802U on August 27, 2021, include several end-to-end spliced ​​outer tubes. Each outer tube contains several inner tubes evenly distributed within it. Both ends of the outer tubes have first flanges, and first fasteners are used to fix adjacent outer tubes between their first flanges. The inner tubes within adjacent outer tubes are positioned correspondingly and connected. A water inlet pipe is located on the side wall of the outer tube, and a water outlet pipe is located on the side wall of the outer tube at a horizontal position higher than the water inlet pipe. Connecting plates are located at both ends of the inner side of each outer tube. The inner tubes within the same outer tube are located between the connecting plates, forming a sealed space between the connecting plates and the inner tubes. Each connecting plate has a discharge port connected to an inner tube. The connecting plate supports the inner tube and also creates a sealed space within the outer tube to contain the cooling water, reducing leakage. The silicone sealant flows within the inner tube of the condenser, while the cooling water flows within the outer tube. Heat exchange between the sealant and cooling water through the inner tube wall enhances the cooling effect of the sealant. However, this silicone sealant condenser structure has the following problems: both the connecting plate and the inner tube are located inside the outer tube, and the end of the inner tube is welded to the connecting plate. If a leak occurs at the weld between the inner tube and the connecting plate, cooling water enters the inner tube and mixes with the silicone sealant, severely affecting its quality. Furthermore, because the leak occurs inside the outer tube, it is difficult to detect quickly. Over time, severe mixing of cooling water and silicone sealant leads to a significant deterioration in the quality of the sealant. Utility Model Content

[0003] The purpose of this invention is to provide a leak-proof adhesive condenser.

[0004] The purpose of this utility model is achieved as follows:

[0005] A leak-proof adhesive condenser includes a tank, an inlet tank, and an outlet tank. Multiple inner tubes are arranged side-by-side inside the tank. The tank body has an inlet and an outlet. The inlet and outlet tanks are located beside the two ends of the tank body. The first and second ends of the inner tubes extend out of the two ends of the tank body, respectively. The first ends of the multiple inner tubes are connected to and communicate with the inlet tank, and the second ends of the multiple inner tubes are connected to and communicate with the outlet tank. The inlet and outlet tanks each have an inlet and an outlet. This invention, by designing the two ends of the inner tubes to extend out of the tank body and configuring the inlet and outlet tanks, exposes the two ends of the inner tubes outside the tank body, making welding easier, more reliable, and less prone to leakage, thus eliminating the possibility of water leakage from the outer tube to the inner tube ends. Even if a leak occurs at the two ends of the inner tubes, the user can quickly detect it by observing the appearance and perform rapid repairs.

[0006] The present invention can be further improved in the following ways.

[0007] The first end of multiple inner tubes is welded to and connected to the glue inlet tank, and the second end of multiple inner tubes is welded to and connected to the glue outlet tank.

[0008] The tank is equipped with at least two baffles, which are arranged at intervals along the length of the tank. The baffles effectively slow down the flow rate of the cooling water, allowing the cooling water to fully exchange heat with the high-temperature silicone sealant inside the inner tube, thus cooling the silicone sealant.

[0009] The outer walls of multiple inner pipes are perpendicularly connected to the baffle plate.

[0010] The two adjacent baffles are staggered. This staggered arrangement effectively slows down the flow rate of the cooling water, allowing it to fully exchange heat with the high-temperature silicone sealant inside the inner pipe, thus cooling the sealant.

[0011] The baffle plate is welded to the inner wall of the tank and the outer wall of multiple inner pipes.

[0012] This utility model also includes a support frame, with the tank standing upright on the support frame, and the glue inlet tank and glue outlet tank located above and below the tank, respectively.

[0013] The structure of the glue inlet tank is the same as that of the glue outlet tank. The glue inlet tank includes a first flange and a shell with a second flange. An opening is provided on one side of the shell. The second flange is located at the opening. The first flange and the second flange are fitted together and connected. The first end of multiple inner tubes is connected to the first flange.

[0014] A locating convex ring and a locating annular groove are provided between the first and second flanges for a convex-concave positioning fit. A sealing gasket is placed inside the locating annular groove, and the locating convex ring extends into the locating annular groove and abuts against the sealing gasket. The locating convex ring and the locating annular groove enable rapid positioning of the first and second flanges.

[0015] The tank body, the glue inlet tank, and the glue outlet tank constitute a condenser assembly. The leak-proof glue condenser includes at least two condenser assemblies, which are connected sequentially from top to bottom. The glue inlet tank of the upper condenser assembly and the glue outlet tank of the lower condenser assembly are connected and communicate with each other. The glue outlet of the glue outlet tank is connected with the glue inlet of the glue inlet tank. The present invention can add condenser assemblies according to the design purpose and user needs. The present invention shortens the cooling time of the glass glue and improves the cooling effect of the glass glue by adding condenser assemblies.

[0016] The beneficial effects of this utility model are as follows:

[0017] This invention designs the inner tube so that both ends extend out of the tank body, and includes an inlet and outlet glue tank. The two ends of the inner tube are connected and communicate with these tanks, respectively. This exposes the inner ends outside the tank body, making welding easier and more reliable, and reducing the likelihood of leakage. This eliminates the possibility of water leakage from the outer tube to the inner tube ends. Even if leakage occurs at either end of the inner tube, the user can quickly detect it by visual inspection and perform rapid repairs. Attached Figure Description

[0018] Figure 1 This is a cross-sectional view of the leak-proof adhesive condenser of Embodiment 1 of this utility model. Figure 1 The solid arrows indicate the flow direction of the silicone sealant, while the dashed arrows indicate the flow direction of the cooling water.

[0019] Figure 2 This is a leak-proof adhesive condenser according to Embodiment 1 of the present invention, which omits the adhesive inlet tank but retains the top view behind the first flange.

[0020] Figure 3 yes Figure 2 Enlarged view of point A in the middle.

[0021] Figure 4 This is a schematic diagram of the structure of the leak-proof adhesive condenser of Embodiment 2 of this utility model. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Example 1, as Figures 1 to 3As shown, a leak-proof adhesive condenser includes a support frame 5, a tank 1, an inlet tank 2, an outlet tank 3, and multiple inner tubes 4. The tank 1 stands upright on the support frame 5 and has an inlet 11 and an outlet 12. Multiple inner tubes 4 are arranged side by side inside the tank 1. The inlet tank 2 and outlet tank 3 are located next to each other at both ends of the tank 1, above and below the tank 1, respectively. The two ends of the inner tubes 4 extend from both ends of the tank 1. The first end of each inner tube 4 is connected to and communicates with the inlet tank 2, and the second end of each inner tube 4 is connected to and communicates with the outlet tank 3. The tank 1, the inlet tank 2, and the outlet tank 3 constitute a condenser assembly 7.

[0024] This is a more specific technical solution of the present invention.

[0025] The glue inlet 2 and the glue outlet 3 are respectively provided with glue inlet 21 and glue outlet 31.

[0026] The first end of the multiple inner tubes 4 is welded to and connected to the glue inlet tank 2, and the second end of the multiple inner tubes 4 is welded to and connected to the glue outlet tank 3.

[0027] The tank body 1 is provided with at least two baffles 13, which are arranged sequentially along the length of the tank body 1.

[0028] The outer walls of the multiple inner pipes 4 are perpendicularly connected to the baffle plate 13.

[0029] The two adjacent water-blocking plates 13 are staggered.

[0030] The baffle plate 13 is welded to the inner wall of the tank body 1 and the outer wall of the multiple inner pipes 4.

[0031] The structure of the glue inlet tank 2 is the same as that of the glue outlet tank 3. The glue inlet tank 2 includes a first flange 23 and a shell 20 with a second flange 22. An opening 29 is provided on one side of the shell 20. The second flange 22 is located at the opening. The first flange 23 is fitted and connected to the second flange 22. The first ends of multiple inner tubes 4 are connected to the first flange 23 of the glue inlet tank 2.

[0032] A positioning convex ring 24 and a positioning annular groove 25 are provided between the first flange 23 and the second flange 22 for positioning and positioning fit. A sealing gasket 26 is provided in the positioning annular groove 25. The positioning convex ring 24 extends into the positioning annular groove 25 and abuts against the sealing gasket 26.

[0033] When the condenser of this invention is working, high-temperature silicone sealant enters the sealant inlet tank through the sealant inlet, and then flows down through multiple inner tubes 4 into the tank body 1. Cooling water enters the tank body through the water inlet and flows within the tank body 1. The silicone sealant and cooling water exchange heat through the tube walls of the inner tubes 4. After heat exchange, the cooling water exits the tank body through the water outlet, while the silicone sealant in the multiple inner tubes 4 flows down into the sealant outlet tank and then exits from the sealant outlet, thus improving the cooling effect of the silicone sealant. This invention, by designing both ends of the inner tubes to extend out of the tank body and configuring the sealant inlet and outlet tanks, exposes both ends of the inner tubes to the outside of the tank body, making welding easier, more reliable, and less prone to leakage, thereby eliminating the possibility of water leakage from the outer tube to the inner tube end. Even if a leak occurs, the user can quickly detect it by observing the appearance and perform rapid repairs.

[0034] Example 2, as Figure 4 As shown, the implementation method of Embodiment 2 is similar to that of Embodiment 1, with the only difference being that: the leak-proof adhesive condenser includes two condenser assemblies 7, and at least two condenser assemblies 7 are connected sequentially from top to bottom. The glue inlet tank 2 of the upper condenser assembly 7 and the glue outlet tank 3 of the lower condenser assembly 7 are connected and communicate with each other. The glue outlet 31 of the glue outlet tank 3 of the upper condenser assembly 7 and the glue inlet 21 of the glue inlet tank 2 of the lower condenser assembly 7 are communicated with each other. When the leak-proof sealant condenser of this embodiment is working, the high-temperature silicone sealant first enters the inlet tank of the upper condenser assembly 7, and then enters the multiple inner tubes 4 of the upper condenser assembly 7. The silicone sealant and cooling water exchange heat through the tube wall of the inner tube 4. After the silicone sealant exchanges heat in the upper tank 1, it flows from the outlet tank of the upper condenser assembly 7 to the inlet tank of the lower tank 1, and then enters the multiple inner tubes 4 of the lower tank 1. After the silicone sealant continues to exchange heat in the lower tank 1, it flows out from the outlet tank. At this point, the silicone sealant has been completely cooled.

Claims

1. A leak-proof adhesive condenser, comprising a tank (1), wherein multiple inner tubes (4) are arranged in parallel inside the tank (1), and the tank (1) is provided with an inlet (11) and an outlet (12), characterized in that, It also includes an inlet tank (2) and an outlet tank (3). The inlet tank (2) and the outlet tank (3) are respectively located next to the two ends of the tank body (1). The first end and the second end of the inner tube (4) extend out of the two ends of the tank body (1). The first end of multiple inner tubes (4) is connected to and communicates with the inlet tank (2). The second end of multiple inner tubes (4) is connected to and communicates with the outlet tank (3). The inlet tank (2) and the outlet tank (3) are respectively provided with an inlet (21) and an outlet (31).

2. The leak-proof mortar condenser according to claim 1, characterized in that, The tank (1) is provided with at least two baffles (13), which are arranged sequentially in the tank (1) along the length of the tank (1).

3. The leak-proof mortar condenser according to claim 2, characterized in that, The outer walls of the multiple inner tubes (4) are perpendicularly connected to the baffle plate (13).

4. The leak-proof mortar condenser according to claim 2, characterized in that, The two adjacent water baffles (13) are staggered.

5. The leak-proof mortar condenser according to claim 3, characterized in that, The baffle plate (13) is welded to the inner wall of the tank body (1) and the outer wall of the multiple inner pipes (4).

6. The leak-proof mortar condenser according to claim 1, characterized in that, It also includes a support frame (5), the tank body (1) stands upright on the support frame (5), and the glue inlet tank (2) and glue outlet tank (3) are located above and below the tank body (1), respectively.

7. The leak-proof mortar condenser according to claim 1, characterized in that, The structure of the glue inlet tank (2) is the same as that of the glue outlet tank (3). The glue inlet tank (2) includes a first flange (23) and a shell (20) with a second flange (22). An opening (29) is provided on one side of the shell (20). The second flange (22) is located at the opening (29). The first flange (23) is fitted and connected to the second flange (22). The first end of multiple inner tubes (4) is connected to the first flange (23).

8. The leak-proof mortar condenser according to claim 7, characterized in that, A positioning convex ring (24) and a positioning annular groove (25) are provided between the first flange (23) and the second flange (22) for a convex-concave positioning fit. A sealing gasket (26) is provided in the positioning annular groove (25). The positioning convex ring (24) extends into the positioning annular groove (25) and abuts against the sealing gasket (26).

9. The leak-proof mortar condenser according to claim 1, characterized in that, The tank body (1), the glue inlet tank (2), and the glue outlet tank (3) constitute a condenser assembly (7). The leak-proof glue condenser includes at least two condenser assemblies (7). The at least two condenser assemblies (7) are connected sequentially from top to bottom. The glue inlet tank (2) of the upper condenser assembly (7) and the glue outlet tank (3) of the lower condenser assembly (7) are connected and communicate with each other. The glue outlet (31) of the glue outlet tank (3) and the glue inlet (21) of the glue inlet tank (2) are communicated with each other.

Citation Information

Patent Citations

  • Novel multi-section assembled shell and tube condenser

    CN214065802U