A production process of an HTMI surface superposition texture glass
By adding multiple layers of texture and color to the tin-textured layer of the HTMI process, the problem of monotonous texture in the traditional HTMI process is solved, enhancing the aesthetics and three-dimensionality of the product.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- LONGKOU KENUOER GLASS TECH CO LTD
- Filing Date
- 2023-12-01
- Publication Date
- 2026-07-21
AI Technical Summary
The monotonous textures of traditional HTMI and TMI processes have led to aesthetic fatigue among the general public.
One or two more texture layers are added on top of the tin-textured layer of the HTMI process, and different colors are added to the texture layers. A strong three-dimensional texture is formed through multi-layer UV ink printing and baking processes.
It enhances the product's aesthetics and maintains the three-dimensionality of the texture, solving the problem of monotonous textures in traditional processes.
Smart Images

Figure CN117602849B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of tempered glass appearance processing technology, and in particular to a production process for HTMI surface textured glass. Background Technology
[0002] The glass industry is constantly evolving, and glass processing techniques have largely settled into traditional methods such as ordinary colored crystal, KMI, HTMI, TMI, and high-temperature treatment. With the increasing number of product models, traditional HTMI and TMI processes are gradually showing signs of monotonous textures and consumer fatigue with their aesthetic appeal. Summary of the Invention
[0003] This invention addresses the shortcomings of existing technologies by providing a simple and rationally designed HTMI surface-layer textured glass production process. This process adds one or two more texture layers to the tin-textured layer of HTMI or TMI processes, and allows for the addition of different colors to the textured layers, thereby enhancing the product's aesthetic appeal while maintaining the three-dimensionality of the texture.
[0004] To achieve the above objectives, the present invention provides a process for producing HTMI surface-textured glass, comprising the following steps;
[0005] Step 1: Seal the back of the non-tempered glass, which includes the following steps:
[0006] Step 1.1: The air surface of the non-tempered glass is treated with a general wear-resistant protective primer ink through a printing process.
[0007] Step 1.2: Baking and curing the air surface of the product obtained in Step 1.1 at 150-180℃;
[0008] This gives the glass a metallic feel and protects it from scratches. It can also be used as a foaming agent in products such as refrigerators and air conditioners.
[0009] Step 2: Apply a gold base treatment to the product obtained in Step 1, which includes the following steps;
[0010] Step 2.1: Adjust the general platinum ink to a metallic color and apply the printing process to the air surface of the product obtained in Step 1;
[0011] Step 2.2: Perform a baking and curing process at 150-180℃ on the air surface of the product obtained in Step 2.1;
[0012] Step 3: Perform a tempering process on the product obtained in Step 2;
[0013] Step 4: Perform HTMI underlying process processing on the product obtained in Step 3, specifically including the following steps;
[0014] Step 4.1: Using a texture mold and a special UV resin, the tin surface of the product obtained in Step 3 is processed by printing.
[0015] Step 4.2: The tin surface of the product obtained in Step 4.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ;
[0016] Step 5: The product obtained in Step 4 is processed using a multi-texture overlay process, specifically including the following steps:
[0017] Step 5.1: Use special UV ink to perform screen printing on the tin surface of the product obtained in Step 4;
[0018] Step 5.2: The tin surface of the product obtained in Step 5.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ;
[0019] Step 5.3: If the texture overlay process is to be continued, proceed to step 5.4;
[0020] If no further texture overlay processing is required, proceed to step 6;
[0021] Step 5.4: Using special UV ink, screen print the tin surface of the product obtained in Step 5.2, and then proceed to Step 5.2.
[0022] Step 6: Perform a curing and baking process on the product obtained in Step 5, which includes the following steps:
[0023] Step 6.1: The tin surface of the product obtained in Step 5 is treated with a UV curing machine to achieve a total energy density of 1000-1200 mJ / cm² for the final layer of printed UV ink. 2 ;
[0024] Step 6.2: The tin surface of the product obtained in Step 6.1 is baked at 150-180℃ for 15 minutes.
[0025] Furthermore, the special UV resin has an acid value of 8-18 (mg Koh / g) and a solid content of not less than 80%, so as to obtain sufficient adhesion.
[0026] Furthermore, the special UV ink uses the special UV resin as a substrate.
[0027] Furthermore, the special UV ink contains silver paste and glitter.
[0028] Furthermore, in step 1.2, the air surface of the product obtained in step 1.1 is subjected to a baking and curing process at 180°C.
[0029] Furthermore, in step 2.2, the air surface of the product obtained in step 2.1 is subjected to a baking and curing process at 180°C.
[0030] Furthermore, in step 6.2, the tin surface of the product obtained in step 6.1 is subjected to a baking and curing process at 180°C.
[0031] Furthermore, in step 5, when performing multiple texture overlay processes, matching patterns should be selected to avoid pattern confusion.
[0032] The beneficial effects of this solution can be seen from the description of the above solution. It has a simple structure and reasonable design. One or two more texture layers are added on the tin surface texture layer of HTMI and TMI processes. At the same time, different colors can be added to the added texture layers to make the product more beautiful while maintaining the three-dimensionality of the texture. Attached Figure Description
[0033] Figure 1 This is a process flow diagram of the present invention.
[0034] Figure 2 The appearance of the tin surface of traditional HTMI process products.
[0035] Figure 3 This refers to the appearance of the tin surface of the product manufactured using the surface overlay texture process of this invention. Detailed Implementation
[0036] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.
[0037] Example 1
[0038] like Figure 1 As shown, this embodiment is a process for producing HTMI surface-textured glass, including the following steps;
[0039] Step 1: Seal the back of the non-tempered glass, which includes the following steps:
[0040] Step 1.1: The air surface of the non-tempered glass is treated with a general wear-resistant protective primer ink through a printing process.
[0041] Step 1.2: Baking and curing the air surface of the product obtained in Step 1.1 at 150-180℃;
[0042] This gives the glass a metallic feel and protects it from scratches. It can also be used as a foaming agent in products such as refrigerators and air conditioners.
[0043] Step 2: Apply a gold base treatment to the product obtained in Step 1, which includes the following steps;
[0044] Step 2.1: Adjust the general platinum ink to a metallic color and apply the printing process to the air surface of the product obtained in Step 1;
[0045] Step 2.2: Perform a baking and curing process at 150-180℃ on the air surface of the product obtained in Step 2.1;
[0046] Step 3: Perform a tempering process on the product obtained in Step 2;
[0047] Step 4: Perform HTMI underlying process processing on the product obtained in Step 3, specifically including the following steps;
[0048] Step 4.1: Using a texture mold and a special UV resin, the tin surface of the product obtained in Step 3 is processed by printing.
[0049] Step 4.2: The tin surface of the product obtained in Step 4.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ;
[0050] Step 5: The product obtained in Step 4 is processed using a multi-texture overlay process, specifically including the following steps:
[0051] Step 5.1: Use special UV ink to perform screen printing on the tin surface of the product obtained in Step 4;
[0052] Step 5.2: The tin surface of the product obtained in Step 5.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ;
[0053] Step 5.3: If the texture overlay process is to be continued, proceed to step 5.4;
[0054] If no further texture overlay processing is required, proceed to step 6;
[0055] Step 5.4: Using special UV ink, screen print the tin surface of the product obtained in Step 5.2, and then proceed to Step 5.2.
[0056] Step 6: Perform a curing and baking process on the product obtained in Step 5, which includes the following steps:
[0057] Step 6.1: The tin surface of the product obtained in Step 5 is treated with a UV curing machine to achieve a total energy density of 1000-1200 mJ / cm² for the final layer of printed UV ink. 2 ;
[0058] Step 6.2: The tin surface of the product obtained in Step 6.1 is baked at 150-180℃ for 15 minutes.
[0059] This solution adds one or two more texture layers to the tin-surface texture layer of HTMI and TMI processes. Different colors can also be added to these additional texture layers to achieve the desired effect. Figure 2 Compared to traditional HTMI products, the product in this solution is as follows: Figure 3 As shown, it has a stronger aesthetic appeal while maintaining the three-dimensionality of the texture.
[0060] Furthermore, the special UV resin has an acid value of 8-18 (mg Koh / g) and a solid content of not less than 80%, so as to obtain sufficient adhesion.
[0061] Furthermore, the special UV ink uses the special UV resin as a substrate.
[0062] Furthermore, the special UV ink contains silver paste and glitter.
[0063] Furthermore, in step 1.2, the air surface of the product obtained in step 1.1 is subjected to a baking and curing process at 180°C.
[0064] Furthermore, in step 2.2, the air surface of the product obtained in step 2.1 is subjected to a baking and curing process at 180°C.
[0065] Furthermore, in step 6.2, the tin surface of the product obtained in step 6.1 is subjected to a baking and curing process at 180°C.
[0066] Furthermore, in step 5, when performing multiple texture overlay processes, matching patterns should be selected to avoid pattern confusion.
[0067] The technical features of this invention not described can be implemented by or using existing technology, and will not be repeated here. Of course, the above description is not a limitation of this invention, and this invention is not limited to the examples above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this invention should also be within the protection scope of this invention.
Claims
1. A manufacturing process for HTMI surface-textured glass, characterized in that, Includes the following steps; Step 1: Seal the back of the non-tempered glass, which includes the following steps: Step 1.1: The air surface of the non-tempered glass is treated with a general wear-resistant protective primer ink through a printing process. Step 1.2: Baking and curing the air surface of the product obtained in Step 1.1 at 150-180℃; Step 2: Apply a gold base treatment to the product obtained in Step 1, which includes the following steps; Step 2.1: Adjust the general platinum ink to a metallic color and apply the printing process to the air surface of the product obtained in Step 1; Step 2.2: Perform a baking and curing process at 150-180℃ on the air surface of the product obtained in Step 2.1; Step 3: Perform a tempering process on the product obtained in Step 2; Step 4: Perform HTMI underlying process processing on the product obtained in Step 3, specifically including the following steps; Step 4.1: Using a texture mold and a special UV resin, the tin surface of the product obtained in Step 3 is processed by printing. Step 4.2: The tin surface of the product obtained in Step 4.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ; Step 5: The product obtained in Step 4 is processed using a multi-texture overlay process, specifically including the following steps: Step 5.1: Use special UV ink to perform screen printing on the tin surface of the product obtained in Step 4; Step 5.2: The tin surface of the product obtained in Step 5.1 is treated with a UV curing machine to achieve an energy density of 300-800 mJ / cm². 2 ; Step 5.3: If the texture overlay process is to be continued, proceed to step 5.4; If no further texture overlay processing is required, proceed to step 6; Step 5.4: Using special UV ink, screen print the tin surface of the product obtained in Step 5.2, and then proceed to Step 5.
2. Step 6: Perform a curing and baking process on the product obtained in Step 5, which includes the following steps: Step 6.1: The tin surface of the product obtained in Step 5 is treated with a UV curing machine to achieve a total energy density of 1000-1200 mJ / cm² for the final layer of printed UV ink. 2 ; Step 6.2: The tin surface of the product obtained in Step 6.1 is baked at 150-180℃ for 15 minutes. The acid value of the special UV resin is 8-18 (mg KOH / g), and the solid content is not less than 80%. The special UV ink uses the special UV resin as the base material; The special UV ink contains silver paste and glitter.
2. The HTMI surface overlay textured glass production process according to claim 1, characterized in that, In step 1.2, the air surface of the product obtained in step 1.1 is subjected to a baking and curing process at 180°C.
3. The HTMI surface textured glass manufacturing process according to claim 1, characterized in that, In step 2.2, the air surface of the product obtained in step 2.1 is subjected to a baking and curing process at 180°C.
4. The HTMI surface overlay textured glass production process according to claim 1, characterized in that, In step 6.2, the tin surface of the product obtained in step 6.1 is subjected to a baking and curing process at 180°C.
5. The HTMI surface overlay textured glass production process according to claim 1, characterized in that, In step 5, when performing multiple texture overlay processes, matching patterns should be selected to avoid pattern confusion.