Thermal insulation system watertightness test mold

By designing a water-permeability test mold for insulation system containing multiple components, the problem of difficult sample removal in the prior art is solved, and rapid and accurate sample forming and dimensional control is achieved, and the accuracy and reliability of the test are improved.

CN223037542UActive Publication Date: 2025-06-27ANHUI & HUAI RIVER WATER RESOURCES RES INST
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Patent Information

Application Number
CN202421551387.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-06-27
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

When conducting water-impermeability tests for insulation systems, it is difficult for the prior art to quickly and without damage to remove the insulation layer slurry at the center of the sample, and the size of the removal part is difficult to meet the specification.

Method used

A test mold including the main base plate, limiting assembly, insertion plate assembly, angle insertion assembly, handle assembly, placement assembly and sampling assembly is designed. Through the synergy of these components, the sample forming and central sample removal can be achieved quickly and accurately.

Benefits of technology

The test mold can quickly remove the insulation layer slurry at the center of the sample without damaging the protective layer, and the size of the removed part can reach specifications, improving the accuracy of sample forming and reducing errors during subsequent tests.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of testing dies, in particular to a watertightness testing die for a heat preservation system. The technical problems are as follows: in the prior art, compared with a traditional test mold, the test mold has great difficulties in specific operation: firstly, after slurry is cured to expire, a test sample has certain strength, and the center part of the test sample is not easy to remove; secondly, the removed part is difficult to reach the size of the specification; thirdly, the protective layer is easy to damage in the removal process; according to the technical scheme, the thermal insulation system watertightness testing mold comprises a main body bottom plate, a limiting assembly, an insertion plate assembly, an angle insertion assembly, a handle assembly, a placement assembly and a sampling assembly; according to the utility model, by arranging the size structure, the center part of the sample can be quickly and conveniently removed after testing, the specification size can be reached, a protective layer cannot be damaged in the removal process, the size of the heat preservation system sample is more accurate, and the reduction of errors in subsequent testing is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of impermeability test molds for thermal insulation systems, and particularly to impermeability test molds for thermal insulation systems. Background Art

[0002] Before the rubber powder polystyrene particle thermal insulation system and the inorganic thermal insulation mortar system are put into use, an impermeability test needs to be carried out. However, in the prior art, when testing the impermeability of the thermal insulation system, it is necessary to form a thermal insulation system specimen with fixed dimensions. After the curing period expires, the thermal insulation layer slurry in the central part of the specimen is removed, and the removed part also has fixed dimensions, and the thermal insulation protection layer cannot be damaged, which poses great difficulties in specific operations: First, after the slurry curing period expires, the specimen has a certain strength, and it is not easy to remove the central part of the specimen; Second, it is very difficult for the removed part to reach the specified dimensions; Third, the protection layer is easily damaged during the removal process. Summary of the Utility Model

[0003] In order to overcome the problems in the prior art that when testing the impermeability of the thermal insulation system, it is necessary to form a thermal insulation system specimen with fixed dimensions. After the curing period expires, the thermal insulation layer slurry in the central part of the specimen is removed, and the removed part also has fixed dimensions, and the thermal insulation protection layer cannot be damaged, which poses great difficulties in specific operations: First, after the slurry curing period expires, the specimen has a certain strength, and it is not easy to remove the central part of the specimen; Second, it is very difficult for the removed part to reach the specified dimensions; Third, the protection layer is easily damaged during the removal process.

[0004] The technical solution of the utility model is: an impermeability test mold for a thermal insulation system, which includes a main body bottom plate, a limiting component, an inserting plate component, a corner inserting component, a handle component, a placing component and a sampling component. A limiting component is arranged on the top surface of the main body bottom plate, several groups of inserting plate components are arranged on the outer side of the limiting component, corner inserting components are arranged at the four corners of the outer side of the inserting plate component, a handle component is arranged at one corner of the corner inserting component, a placing component is arranged in the middle of the main body bottom plate, and a sampling component is arranged in the middle of the placing component.

[0005] Preferably, through the main body bottom plate, the inserting plate component is installed and limited by the limiting component, the pattern is limited by the inserting plate component, the inserting plate component is installed and fixed by the corner inserting component, the corner inserting component is disassembled and assembled by the handle component, the sampling component is installed and placed by the placing component to help the specimen to be formed, and the central specimen is taken out by the sampling component and can reach the specified dimensions.

[0006] As a preference, the limiting component includes a limiting frame and limiting angle plates. A limiting frame is arranged on the top surface of the main body bottom plate, and limiting angle plates are arranged at the four corners of the limiting frame. When in use, the inserting plate structure is limited by the limiting frame, and the four corners of the inserting plate structure are fixed by the limiting angle plates.

[0007] Preferably, the plugboard assembly includes a clamping plate and a clamping part. Clamping plates are arranged on the outer sides of the limiting frames, and clamping parts are arranged at equal intervals on the surfaces of the clamping plates. During use, the overall structure is sealed by the clamping plates, and the outer sides of the overall device are sealed by installing the corner plug structure through the clamping parts.

[0008] Preferably, the corner plug assembly includes an angle iron and a card slot. Angle irons are arranged at the four corners on the outer sides of the clamping plates, and card slots are arranged on the surfaces of the angle irons. During use, the clamping plates are integrally limited by the angle irons for the specimen to take shape, and the corner plug is fixed by inserting the clamping parts into the card slots.

[0009] Preferably, the handle assembly includes a handle block and a handle slot. A handle block is arranged at one corner of the angle iron, and a handle slot is opened inside the handle block. During use, the handle slot is installed on one corner of the angle iron through the handle block, and the overall corner plug structure is disassembled and assembled through the handle slot for taking and viewing the test results.

[0010] Preferably, the placement assembly includes a placement frame and a placement slot. A placement frame is arranged in the middle of the surface of the main body bottom plate, and a placement slot is opened at the position opposite to the placement frame in the middle of the main body bottom plate. During use, the sampling structure is limited and fixed by the placement frame for the specimen to be cast and take shape, and the central specimen is taken out through the placement slot for observation.

[0011] Preferably, the sampling assembly includes a sampling block, a mounting slot, and a handle. A sampling block is arranged inside the placement slot, a mounting slot is opened at the bottom surface of the sampling block, and a handle is arranged inside the mounting slot. During use, the sampling block helps the specimen to take shape, the handle is installed and placed through the mounting slot, and the central specimen is taken out through the handle.

[0012] The beneficial effects of the present utility model:

[0013] 1. Compared with traditional test molds, there are great difficulties in specific operations: First, after the slurry is cured, the specimen has a certain strength, and it is not easy to remove the central part of the specimen; Second, it is very difficult to make the removed part reach the specified size; Third, the protective layer is easily damaged during the removal process. This test mold can quickly remove the central part of the specimen after the test through the set size structure, which is convenient and can reach the specified size, and the protective layer will not be damaged during the removal process. The size of the specimen in the thermal insulation system is more accurate, which is beneficial to reducing the error in subsequent tests;

[0014] 2. The plugboard structure is limited by the limiting frame, the four corners of the plugboard structure are fixed by the limiting angle plate, the overall structure is sealed by the clamping plate, the outer sides of the overall device are sealed by installing the corner plug structure through the clamping part, the clamping plates are integrally limited by the angle iron for the specimen to take shape, and the corner plug is fixed by inserting the clamping part into the card slot;

[0015] 3. Install the handle groove on a corner of the angle iron through the handle block. Disassemble and assemble the overall corner insertion structure through the handle groove to facilitate taking and viewing the test results. Limit and fix the sampling structure through the placement frame to facilitate the casting and molding of the specimen. Take out the central specimen through the placement groove for observation. Help the specimen to form through the sampling block. Install the placement handle through the installation groove. Take out the central specimen through the handle. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 FIG. 6 shows a first three-dimensional structural schematic diagram of the water impermeability test mold for the heat preservation system of the present utility model;

[0017] Figure 2 FIG. 7 shows a second three-dimensional structural schematic diagram of the water impermeability test mold for the heat preservation system of the present utility model;

[0018] Figure 3 FIG. 8 shows a side three-dimensional structural schematic diagram of the water impermeability test mold for the heat preservation system of the present utility model;

[0019] Figure 4 FIG. 9 shows a partial three-dimensional structural schematic diagram of the water impermeability test mold for the heat preservation system of the present utility model;

[0020] DESCRIPTION OF THE REFERENCE NUMERALS: 1, main body bottom plate; 2, limiting component; 3, inserting plate component; 4, corner inserting component; 5, handle component; 6, placing component; 7, sampling component; 201, limiting frame; 202, limiting angle plate; 301, clamping plate; 302, clamping part; 401, angle iron; 402, clamping groove; 501, handle block; 502, handle groove; 601, placing frame; 602, placing groove; 701, sampling block; 702, installation groove; 703, handle. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The present utility model will be further described below with reference to the drawings and embodiments.

[0022] Please refer to Figure 1 , the present utility model provides an embodiment: a water impermeability test mold for a heat preservation system, including a main body bottom plate 1, a limiting component 2, an inserting plate component 3, a corner inserting component 4, a handle component 5, a placing component 6 and a sampling component 7. A limiting component 2 is arranged on the top surface of the main body bottom plate 1. Several groups of inserting plate components 3 are arranged on the outer side of the limiting component 2. Corner inserting components 4 are arranged at the four corners on the outer side of the inserting plate components 3. A handle component 5 is arranged at a corner of the corner inserting component 4. A placing component 6 is arranged in the middle of the main body bottom plate 1. A sampling component 7 is arranged in the middle of the placing component 6.

[0023] Please refer to Figures 2 - 4, in this embodiment, the limiting component 2 includes a limiting frame 201 and limiting angle plates 202. The limiting frame 201 is provided on the top surface of the main body bottom plate 1, and limiting angle plates 202 are provided at the four corners of the limiting frame 201. During use, the plug-in plate structure is limited by the limiting frame 201, and the four corners of the plug-in plate structure are fixed by the limiting angle plates 202. The plug-in plate assembly 3 includes a clamping plate 301 and a clamping member 302. Clamping plates 301 are provided on the outer sides of the limiting frame 201, and clamping members 302 are equidistantly arranged on the surface of the clamping plate 301. During use, the overall structure is sealed by the clamping plate 301, and the outer side of the overall device is sealed by installing the corner plug structure through the clamping members 302. The corner plug assembly 4 includes an angle iron 401 and a clamping groove 402. Angle irons 401 are provided at the four corners on the outer side of the clamping plate 301, and a clamping groove 402 is provided on the surface of the angle iron 401. During use, the clamping plate 301 is integrally limited by the angle iron 401 for specimen forming, and the clamping member 302 is inserted through the clamping groove 402 for corner plug fixing;

[0024] The handle assembly 5 includes a handle block 501 and a handle groove 502. A handle block 501 is provided at one corner of the angle iron 401, and a handle groove 502 is opened inside the handle block 501. During use, the handle groove 502 is installed on one corner of the angle iron 401 through the handle block 501, and the overall corner plug structure is disassembled and assembled through the handle groove 502 for taking and viewing test results. The placement assembly 6 includes a placement frame 601 and a placement groove 602. The placement frame 601 is provided in the middle of the surface of the main body bottom plate 1, and a placement groove 602 is opened at the position opposite to the middle of the main body bottom plate 1 and the placement frame 601. During use, the sampling structure is limited and fixed by the placement frame 601 for specimen pouring and forming, and the central specimen is taken out through the placement groove 602 for observation. The sampling assembly 7 includes a sampling block 701, a mounting groove 702, and a handle 703. The sampling block 701 is provided inside the placement groove 602, a mounting groove 702 is opened at the bottom surface of the sampling block 701, and a handle 703 is provided inside the mounting groove 702. During use, the sampling block 701 helps the specimen to form, the handle 703 is installed and placed through the mounting groove 702, and the central specimen is taken out through the handle 703.

[0025] When working, first, the plug-in plate structure is limited by the limiting frame 201, the four corners of the plug-in plate structure are fixed by the limiting angle plates 202, the overall structure is sealed by the clamping plate 301, the outer side of the overall device is sealed by installing the corner plug structure through the clamping members 302, the clamping plate 301 is integrally limited by the angle iron 401 for specimen forming, and the clamping member 302 is inserted through the clamping groove 402 for corner plug fixing;

[0026] Then, the handle groove 502 is installed at a corner of the angle iron 401 through the handle block 501. The overall corner plug structure is disassembled and assembled through the handle groove 502 to facilitate taking and viewing the test results. The sampling structure is limited and fixed through the placement frame 601 to facilitate the casting and molding of the specimen. The central specimen is taken out through the placement groove 602 for observation. The sampling block 701 helps the specimen to be molded. The placement handle 703 is installed through the installation groove 702. The central specimen is taken out through the handle 703.

[0027] Through the above steps, through the main body bottom plate 1, the plug board assembly 3 is installed and limited by the limiting component 2. The pattern is limited by the plug board assembly 3. The plug board assembly 3 is installed and fixed by the corner plug component 4. The corner plug component 4 is disassembled and assembled through the handle component 5. The sampling component 7 is installed and placed through the placement component 6 to help the specimen to be molded. The central specimen is taken out through the sampling component 7 and can reach the specified size.

[0028] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. A thermal insulation system water-tightness test mold, comprising a main body bottom plate (1); characterized in that: The invention also comprises a limit assembly (2), a plug assembly (3), a corner plug assembly (4), a handle assembly (5), a placement assembly (6) and a sampling assembly (7); the limit assembly (2) is arranged on the top surface of the main body bottom plate (1); a plurality of groups of plug assembly (3) are arranged on the outer side of the limit assembly (2); corner plug assemblies (4) are arranged at the four outer corners of the plug assembly (3); a handle assembly (5) is arranged at one corner of the corner plug assembly (4); a placement assembly (6) is arranged in the middle of the main body bottom plate (1); and a sampling assembly (7) is arranged in the middle of the placement assembly (6).

2. The thermal insulation system water-tightness test mold according to claim 1, characterized in that: The limiting assembly (2) comprises a limiting frame (201) and a limiting angle plate (202); the limiting frame (201) is arranged on the top surface of the main body bottom plate (1); and the limiting angle plates (202) are arranged at the four corners of the limiting frame (201).

3. The thermal insulation system water-tightness test mold according to claim 2, characterized in that: The plug board assembly (3) comprises a card board (301) and a card member (302). The card boards (301) are arranged on the outside of the limiting frame (201), and the card members (302) are arranged equidistantly on the surface of the card board (301).

4. The thermal insulation system water-tightness test mold according to claim 3, characterized in that: The corner plug assembly (4) comprises an angle iron (401) and a clamping slot (402). The four outer corners of the clamping plate (301) are each provided with an angle iron (401), and the surface of the angle iron (401) is provided with a clamping slot (402).

5. The thermal insulation system water-tightness test mold according to claim 4, characterized in that: The handle assembly (5) comprises a handle block (501) and a handle groove (502); the handle block (501) is arranged at one corner of the angle iron (401), and the handle groove (502) is arranged inside the handle block (501).

6. The thermal insulation system water-tightness test mold according to claim 4, characterized in that: The placement component (6) comprises a placement frame (601) and a placement groove (602). The placement frame (601) is arranged in the middle of the surface of the main body bottom plate (1), and the placement groove (602) is arranged in the middle of the main body bottom plate (1) opposite to the placement frame (601).