Coating mold frame
By dividing the main body of the coating mold frame into a coating section and a clamping section, and leaving a gap between the two, the problem of obstruction in the clamping part of the coating mold frame is solved, achieving uniform coating of coating and accurate test results, while reducing environmental pollution and material waste.
Patent Information
- Application Number
- CN202422942666.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The clamping parts of existing coating mold frames can easily obstruct the coating operation, affecting the accuracy and uniformity of coating test results, and can also easily lead to environmental pollution.
The main board of the coating mold frame is divided into a coating section and a clamping section, which are installed and connected in a detachable manner. A gap is reserved between the two, and the base design facilitates the recycling of excess coating, ensuring uniform coating and accurate testing.
It improves the accuracy and efficiency of coating testing, reduces material waste and environmental pollution, and ensures the integrity and uniformity of coating application.
Smart Images

Figure CN223551725U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating mold frame technology, and specifically to a coating mold frame. Background Technology
[0002] In the coatings industry's production process, coating testing is a crucial step, directly impacting the performance and quality of the final product. To ensure accuracy and reliability, the coating process requires strict control to guarantee a comprehensive and uniform coverage of the surface to be treated. In practice, a common method is to uniformly coat the coating onto specialized coating panels for simulated testing. This approach helps evaluate key indicators such as film-forming properties, gloss, hiding power, and drying time.
[0003] To achieve uniform coating coverage, coating mold equipment is typically used to complete the coating inspection process. The coating mold, through its specific structural design, can tightly clamp the coating plate, providing a stable area for coating and ensuring the standardization and controllability of the coating process. However, in practical applications, because the clamping part of the coating mold often directly contacts the edge of the coating area on the coating plate, it inevitably hinders normal coating to some extent, especially in the vicinity of the clamping part. This obstruction effect may lead to uneven coating distribution in these areas, forming coatings of varying thicknesses, or even leaving uncovered blank areas. These defects not only compromise the integrity and uniformity of the coating layer but may also mislead the coating performance test results, reducing the accuracy and reference value of the test data. Furthermore, during the coating process, coating can easily leak out, causing environmental pollution.
[0004] Therefore, in order to solve the problem that the clamping part of the existing coating mold frame can easily obstruct the coating operation, thereby affecting the accuracy of coating test results, a coating mold frame is needed. Utility Model Content
[0005] The present invention aims to provide a coating mold frame to solve the problem that the clamping part of the existing coating mold frame easily obstructs the coating operation, thereby affecting the accuracy of coating test results.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] This utility model provides a coating template frame, which divides the main board into a brushing part and a clamping part, and connects them in a detachable manner with a certain gap between them. This ensures both clamping stability and comprehensive and uniform coating, thus solving the problem of clamping obstruction. The structure is simple, easy to operate, and improves both detection accuracy and operational efficiency. Specifically, the coating template frame includes a base, which includes an installation area and a fixing area, with a certain gap between them. The fixing area is located on both sides of the installation area. Clamping structures are respectively provided on the fixing area. A main board is provided on the installation area of the base, including a brushing part and clamping parts located on both sides of the brushing part, with a certain gap between them. The clamping parts are movably mounted on the fixing area, and the clamping structures are located above the clamping parts. A coating recovery structure is also provided below the base, and the width of the coating recovery structure is greater than the width of the installation area.
[0008] The principle and advantages of this scheme are:
[0009] In the field of coating performance testing, the traditional method usually involves uniformly applying the coating onto a dedicated coating plate to evaluate its various performance indicators. However, while the use of a coating mold provides a stable boundary for coating application, its clamping design often directly contacts the coating edge of the coating plate, resulting in uneven coating distribution near the clamping area. This affects the integrity and uniformity of the coating layer, thereby reducing the accuracy of the test results.
[0010] This design divides the motherboard into a coating section and a clamping section, with the two parts being detachable for installation and connection, and cleverly leaving an appropriate space between them. This layout not only strengthens the stability of the motherboard but also ensures that the coating section can achieve all-round and uniform application of paint, effectively avoiding the obstruction problems that may occur in traditional clamping methods.
[0011] Meanwhile, the base is divided into an installation area and a fixing area, with a gap area corresponding to the gap of the motherboard, facilitating the recycling of excess paint and thus reducing negative environmental impact. The paint recycling structure allows for the centralized collection of excess paint, promoting effective recycling and reducing material waste, and further minimizing pollution to the surrounding environment.
[0012] Furthermore, connecting members are provided on both sides of the coating part; a docking member is provided on one side of the clamping part, and the docking member is movably mounted on the connecting member. The connecting members and the docking member enable quick installation and disassembly of the coating part and the clamping part, improving installation efficiency and operability.
[0013] Furthermore, a baffle is provided below the base, and a slide rail is provided on the inner side of the baffle, with the paint recycling structure movably mounted on the slide rail.
[0014] Furthermore, the paint recycling structure includes a paint tank with an open top, and the two sides of the paint tank are movably mounted on slide rails.
[0015] Furthermore, the length of the brushing part is 100-320mm and the width is 180-320mm; the length of the clamping part is 100-320mm and the width is 10-30mm. This facilitates meeting the requirements for paint testing, ensuring the effectiveness and integrity of paint coating; and ensuring the stability and firmness of clamping, facilitating clamping operations.
[0016] Furthermore, the connector comprises multiple connecting posts located on both sides of the coating section, with a length of 5-15mm and a diameter of 1-5mm. The mating part comprises mating holes corresponding to the connecting posts, with a depth of 6-16mm. This ensures the stability of the connection while also guaranteeing the formation of a gap space between the coating section and the clamping section, ensuring smooth flow of the coating material.
[0017] Furthermore, the clamping structure includes multiple positioning frames, each positioning frame including a positioning seat disposed on the fixed area, and a clamping arm disposed on the positioning seat, the clamping arm being disposed above the clamping part.
[0018] Furthermore, the base has four support feet at its bottom, and an anti-slip layer is provided at the bottom of the support feet.
[0019] Furthermore, the width of the paint tank is 120-350mm. This ensures that spilled paint can be effectively recycled, avoiding environmental pollution. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of a coating mold frame according to the present invention.
[0021] Figure 2 This is a schematic diagram of the base of a coating mold frame according to the present invention.
[0022] Figure 3 This is an exploded view of a coating mold frame according to the present invention.
[0023] Figure 4 This is a schematic diagram of the main board of a coating mold frame according to the present invention. Detailed Implementation
[0024] The following detailed description illustrates the specific implementation method:
[0025] The reference numerals in the accompanying drawings include: base 1, mounting area 2, fixing area 3, through hole 4, main board 5, brushing part 6, clamping part 7, connector 8, docking part 9, clamping structure 10, positioning frame 11, positioning seat 12, clamping arm 13, baffle 14, slide rail 15, paint recycling structure 16, paint box 17, support foot 18, and limit block 19.
[0026] Example 1
[0027] This embodiment is basically as shown in the appendix. Figure 1 As shown: A paint mold frame innovatively divides the main board into a painting section and a clamping section, employing an easily disassembled assembly method. An appropriate gap is reserved between these two parts to ensure stable clamping while achieving full and uniform paint coverage, effectively avoiding clamping interference problems. This design is not only simple in construction and easy to operate, but also significantly improves the accuracy and efficiency of testing. Specifically, it includes a square-shaped base 1, as shown in the attached diagram. Figure 2 As shown, the base 1 includes an installation area 2 located in the middle and fixed areas 3 located on both sides of the installation area 2. In this embodiment, a certain gap is also provided between the installation area 2 and the fixed areas 3, that is, two through holes 4 are respectively opened on both sides of the base 1, dividing the base 1 into the installation area 2 located in the middle and the fixed areas 3 located on both sides. The paint that flows down can be collected and recycled through the through holes 4 to avoid contaminating the paint table.
[0028] Combined with appendix Figure 3 As shown, a mainboard 5 for applying coating is mounted on the mounting area 2 of the base 1, as illustrated in the attached diagram. Figure 4 As shown, the mainboard 5 includes a coating section 6 located in the middle and clamping sections 7 located on both sides of the coating section 6. In this embodiment, a certain gap is provided between the coating section 6 and the clamping sections 7, so that the coating section 6 is located above the mounting area 2, and the clamping sections 7 are movably mounted above the fixing area 3, so that the gap between the coating section 6 and the clamping sections 7 can be located above the through hole 4 between the mounting area 2 and the fixing area 3. This allows excess paint on the coating section 6 to flow through the gap into the through hole 4 of the base 1, thereby ensuring both the integrity and uniformity of the paint coating on the coating section 6 and the convenient recycling of excess paint, avoiding pollution.
[0029] In this embodiment, the length of the coating part 6 is set to 100-320mm, that is, the height distance in the Y-axis direction is 100-320mm. The specific dimensions can be set according to the actual model specifications. The width is set to 180-320mm, that is, the lateral length in the X-axis direction is 180-320mm. This is to meet the requirements of paint testing and ensure the effectiveness and integrity of paint coating. The length of the clamping part 7 is set to 100-320mm, that is, the height setting is consistent with that of the coating part 6 in the Y-axis direction. The width is set to 10-30mm, that is, the lateral length in the X-axis direction is 10-30mm, to ensure the stability and firmness of clamping and facilitate clamping operation. Multiple connectors 8 are installed on both sides of the coating part 6 by bolts. In this embodiment, the connectors 8 are 5-7 evenly distributed connecting posts on each side of the coating part 6, with a length of 5-15mm and a diameter of 1-5mm. Correspondingly, a mating part 9 is provided on one side of the clamping part 7. The mating part 9 is movably sleeved on the connecting part 8. In this embodiment, the mating part 9 is a mating hole corresponding to the connecting post, and its depth is set to 6-16mm. This allows the clamping part 7 to be directly installed on both sides of the coating part 6. A limiting block 19 is provided at the end of the connecting part 8. The limiting block 19 can fix the mating hole in a certain position to ensure the stability of the connection, while also ensuring that a gap space can be formed between the coating part 6 and the clamping part 7 to ensure the smooth flow of paint.
[0030] As attached Figure 1 As shown, multiple clamping structures 10 are installed on the fixed areas 3 on both sides of the base 1. In this embodiment, the clamping structure 10 includes three evenly arranged positioning frames 11 on each side. Each positioning frame 11 includes a positioning seat 12 that is bolted to the fixed area 3. A clamping arm 13 is movably mounted on the positioning seat 12 by bolts. The clamping arm 13 can rotate up and down around the positioning seat 12 so that the clamping arm 13 is located above the clamping part 7. The clamping structure 10 clamps and fixes the clamping part 7, which can ensure the stability of the clamping and will not obstruct the coating part 6. This effectively solves the problem of easy obstruction in the clamping area and ensures the uniformity and comprehensiveness of the coating.
[0031] A paint recycling structure 16 is also installed below the base 1. The width of the paint recycling structure 16 is greater than the width of the installation area 2, so that the paint flowing down through the through hole 4 can directly flow into the paint recycling structure 16, facilitating the recycling of excess paint. In this embodiment, combined with the attached... Figure 2As shown, a baffle 14 is vertically installed below the base 1, and a slide rail 15 is installed on the inner side of the baffle 14. The paint recovery structure 16 is movably installed on the slide rail 15, allowing it to move back and forth on the slide rail 15. In this embodiment, the paint recovery structure 16 includes a paint tank 17 with an open top. The two sides of the paint tank 17 are movably mounted on the slide rail 15. After painting is completed, the paint tank 17 can be pulled out to collect excess paint directly into the paint tank 17, avoiding excessive paint contamination of the workbench, improving the production environment, and reducing pollution. In this embodiment, the width of the paint tank 17 is 120-350mm to ensure effective recovery of the paint flowing down from the through hole 4.
[0032] In this embodiment, four support feet 18 are also installed at the bottom of the base 1, and an anti-slip layer is installed at the bottom of the support feet 18. This facilitates the stable installation of the base 1 and improves the stability and controllability of the painting process.
[0033] The specific implementation process is as follows:
[0034] As attached Figure 1 and attached Figure 4 As shown, when painting is required, the clamping part 7 is first connected and fixed to the connecting part 8 one by one via the docking part 9, so that the clamping part 7 is installed on both sides of the painting part 6 through the limiting block 19, forming a certain gap on both sides. The installed mainboard 5 is placed on the installation area 2 of the base 1, so that the painting part 6 is above the installation area 2, the clamping part 7 is above the fixing area 3, and the gap formed is above the through hole 4 of the base 1. Then, the clamping arm 13 of the clamping structure 10 is operated to fix it on the clamping part 7, thereby clamping and fixing the entire mainboard 5. After installation, the painting part 6 can be painted. During the painting process, excess paint will flow directly from the gaps on both sides into the through hole 4, and then flow into the paint tank 17 for recycling through the through hole 4.
[0035] After painting is complete, the paint tank 17 can be pulled out to collect excess paint, thus avoiding contamination of the workbench and facilitating cleaning. After testing is complete, operate the clamping arm 13 to remove the main board 5 and then remove the clamping part 7, improving the versatility and applicability of the clamping part 7.
[0036] In this embodiment, the mainboard is cleverly divided into a coating section 6 and a clamping section 7, which are connected by a convenient detachable method, while an appropriate gap is cleverly reserved between them. This design not only ensures the stability of the clamping section 6 but also allows the coating section 7 to achieve comprehensive and uniform coating of paint, successfully solving the obstruction problem that may occur with traditional clamping methods. In addition, this design has a simple and clear structure, and the operation process is easy and convenient, which not only improves the accuracy of detection but also significantly improves work efficiency.
[0037] The base 1 is set as the installation area 2 and the fixing area 3, and through holes 4 corresponding to the gap are provided to facilitate the recycling of excess paint, reduce environmental pollution, and collect excess paint in a centralized manner through the paint recycling structure 16, which makes it easier to effectively recycle and process the paint, reduce material loss, and also reduce pollution to the surrounding environment.
[0038] The above descriptions are merely embodiments of this utility model. Commonly known technical solutions and / or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solution of this utility model. These modifications and improvements should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A coating mold frame, characterized in that: The device includes a base, which comprises an installation area and a fixing area, with the fixing area located on both sides of the installation area. A certain gap is provided between the installation area and the fixing area. Clamping structures are respectively provided on the fixing area. A main board is provided on the installation area of the base, the main board including a brushing part and clamping parts located on both sides of the brushing part, with a certain gap between the brushing part and the clamping parts. The clamping parts are movably disposed on the fixing area, and the clamping structures are located above the clamping parts. A paint recycling structure is also provided below the base, the width of which is greater than the width of the installation area.
2. The coating mold frame according to claim 1, characterized in that: The brushing part is provided with connectors on both sides; the clamping part is provided with a docking part on one side, and the docking part is movably mounted on the connector.
3. A coating mold frame according to claim 1, characterized in that: A baffle is provided below the base, and a slide rail is provided on the inner side of the baffle. The paint recycling structure is movably mounted on the slide rail.
4. A coating mold frame according to claim 3, characterized in that: The paint recycling structure includes a paint tank with an open top, and the two sides of the paint tank are movably mounted on slide rails.
5. A coating mold frame according to claim 1, characterized in that: The length of the coating part is 100-320mm and the width is 180-320mm; the length of the clamping part is 100-320mm and the width is 10-30mm.
6. A coating mold frame according to claim 2, characterized in that: The connector consists of multiple connecting posts located on both sides of the coating section, with a length of 5-15mm and a diameter of 1-5mm.
7. A coating mold frame according to claim 6, characterized in that: The docking component is a docking hole corresponding to the connecting post, and its depth is 6-16mm.
8. A coating mold frame according to claim 1, characterized in that: The clamping structure includes multiple positioning frames, each positioning frame including a positioning seat disposed on the fixed area, and a clamping arm disposed on the positioning seat, the clamping arm being disposed above the clamping part.
9. A coating mold frame according to claim 1, characterized in that: The base has four support feet at the bottom, and an anti-slip layer is provided on the bottom of the support feet.
10. A coating mold frame according to claim 4, characterized in that: The width of the paint box is 120-350mm.