Improved ag fixture

CN122502108APending Publication Date: 2026-08-04合肥金龙浩科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
合肥金龙浩科技有限公司
Filing Date
2026-04-17
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

该设计导致治具在加工流程中易携带大量蒙砂药水,药水附着于治具表面及收纳空间内难以快速排出,不仅造成药水浪费、缩短药水使用寿命,还会引发玻璃加工不良,影响生产效率与产品品质,现有技术对该问题的解决效果欠佳

Benefits of technology

[0011] This invention proposes an improved AG fixture with the following advantages: enhanced processing stability and avoidance of core defects. Through the cooperation of positioning posts and through holes, the limiting design of the wall and glass edge, and the flow-through effect of the guide holes, displacement and glass breakage during processing are effectively prevented. Simultaneously, structural design avoids localized etching anomalies, reduces color defects and glass damage, and ensures a continuous and stable processing flow. The guide holes allow for rapid discharge of chemicals, reducing the amount of liquid carried in the fixture and residue. Combined with the gap structure, this reduces chemical accumulation, significantly improving chemical utilization. The optimized fixture structure works synergistically to solve the problem of chemical waste in existing technologies, while simultaneously improving product yield and reducing overall production costs.

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Abstract

This invention discloses an improved AG fixture, comprising: a fixture body, a storage space adapted to hold glass, an upper surface of the fixture body being a first plane, a bottom surface of the storage space being a second plane, the first plane being located above the second plane, and glass adapted to be placed in the storage space being positioned between the first and second planes. The glass has protrusions, the upper surfaces of which protrude beyond the first plane. This invention effectively prevents glass displacement and chipping during processing, structurally avoids localized etching anomalies, reduces color defects and glass damage, ensures continuous and stable processing, and, in conjunction with fixture structural optimization, forms a synergistic effect, solving the problem of chemical waste in existing technologies, while improving product yield and reducing overall production costs.
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Description

Technical Field

[0001] This invention relates to the field of glass processing technology, and in particular to an improved AG fixture. Background Technology

[0002] In the glass frosting process, AG fixtures are used to hold and position the glass, ensuring processing stability. Existing AG fixtures often employ a design with a deeper storage space to prevent glass from falling off during processing. This design leads to the fixture carrying a large amount of frosting solution during the processing. The solution adheres to the fixture surface and inside the storage space, making it difficult to drain quickly. This not only wastes the solution and shortens its lifespan but also causes glass defects, affecting production efficiency and product quality. Existing technologies have not adequately addressed this problem. Summary of the Invention

[0003] In order to solve the technical problems existing in the background art, the present invention proposes an improved AG fixture.

[0004] The present invention proposes an improved AG fixture, comprising: a fixture body, wherein the fixture body is provided with a storage space for placing glass, the upper surface of the fixture body is a first plane, the bottom surface of the storage space is a second plane, the first plane is located above the second plane, the glass to be placed in the storage space is located between the first plane and the second plane, and the glass has a protrusion, the upper surface of the protrusion protruding from the first plane.

[0005] Preferably, the fixture body has a storage space with multiple positioning posts and a protrusion with multiple through holes, and the glass placed in the storage space can be fitted with the multiple through holes one by one onto the multiple positioning posts.

[0006] Preferably, the storage space has two parallel first walls and two parallel second walls, with a smooth transition at the junction of the first walls and the two second walls. Any one of the first walls is perpendicular to the second wall. The glass placed in the storage space has two parallel first edges and two parallel second edges, with any one of the first edges being perpendicular to the second edge. The two first walls correspond one-to-one with the two first edges, and the two second walls correspond one-to-one with the two second edges.

[0007] Preferably, there is a first gap between the first edge and the corresponding first wall, and a second gap between the second edge and the corresponding second wall.

[0008] Preferably, when the glass adapter is placed in the storage space, the length of the first gap is the same as the length of the second gap.

[0009] Preferably, the fixture body is provided with a plurality of flow guide holes arranged in an array, the flow guide holes extending downward from the bottom wall of the storage space and penetrating the fixture body.

[0010] Preferably, the diameter of the guide hole is 5 mm.

[0011] This invention proposes an improved AG fixture with the following advantages: enhanced processing stability and avoidance of core defects. Through the cooperation of positioning posts and through holes, the limiting design of the wall and glass edge, and the flow-through effect of the guide holes, displacement and glass breakage during processing are effectively prevented. Simultaneously, structural design avoids localized etching anomalies, reduces color defects and glass damage, and ensures a continuous and stable processing flow. The guide holes allow for rapid discharge of chemicals, reducing the amount of liquid carried in the fixture and residue. Combined with the gap structure, this reduces chemical accumulation, significantly improving chemical utilization. The optimized fixture structure works synergistically to solve the problem of chemical waste in existing technologies, while simultaneously improving product yield and reducing overall production costs. Attached Figure Description

[0012] Figure 1 This is an overall structural diagram of an improved AG fixture proposed in this invention; Figure 2 This is a top view of an improved AG fixture proposed in this invention. Detailed Implementation

[0013] refer to Figure 1-2 This invention proposes an improved AG fixture for use in glass frosting processes. It achieves glass positioning and support, solving problems such as liquid accumulation, discoloration, and sheet detachment that occur with existing fixtures during processing. Its specific structure and related designs are as follows: The fixture includes a fixture body 1, on which a storage space 2 is provided. The storage space 2 is used to fit and place glass 3, so that glass 3 maintains a preset posture during processing. The upper surface of the fixture body 1 is a first plane, and the bottom surface of the storage space 2 is a second plane. The first plane is located above the second plane. Glass 3, which is fitted and placed in the storage space 2, is located between the first plane and the second plane. Glass 3 has a protrusion 4, and the upper surface of the protrusion 4 is higher than the first plane.

[0014] The fixture body 1 has multiple positioning posts 5 on its storage space 2. The positioning posts 5 are an integral structure with the fixture body 1 and are used for positioning the glass 3. The protrusion 4 has multiple through holes 6, the number and position of which correspond to the positioning posts 5. When the glass 3 is placed in the storage space 2, the multiple through holes 6 are installed one-to-one with the multiple positioning posts 5, which restricts the horizontal displacement of the glass 3 during processing, avoids processing deviations caused by displacement, and provides stable support for the glass 3, reducing the risk of glass falling off.

[0015] The storage space 2 has two parallel first walls 7 and two parallel second walls 8, forming a circumferential limiting structure. The joints between the first walls 7 and the two second walls 8 are smooth, preventing scratches and damage to the glass 3. Either first wall 7 or second wall 8 is perpendicular, forming a regular storage area. The glass 3 placed in the storage space 2 has two parallel first edges 9 and two parallel second edges 10, with either first edge 9 or second edge 10 perpendicular, adapting to the wall structure of the storage space 2. The two first walls 7 correspond one-to-one with the two first edges 9, and the two second walls 8 correspond one-to-one with the two second edges 10. This cooperation between the walls and the glass edges further enhances the positioning stability of the glass 3.

[0016] A first gap 11 exists between the first edge 9 and the corresponding first wall 7, and a second gap 12 exists between the second edge 10 and the corresponding second wall 8. The gaps provide operational allowance for the placement and removal of the glass 3, while also accommodating the natural deformation of the glass 3 during processing, avoiding damage caused by hard contact between the wall and the edge of the glass 3, reducing chemical residue caused by excessive tight contact between the glass 3 and the wall, and helping to solve the problem of liquid accumulation.

[0017] When the glass 3 is placed in the storage space 2, the first gap 11 and the second gap 12 are aligned. This ensures that the glass 3 is subjected to balanced forces in all directions within the storage space 2, preventing the glass 3 from shifting due to uneven gaps, thereby preventing localized etching abnormalities during processing and structurally avoiding color defects.

[0018] The fixture body 1 is provided with multiple flow guide holes 13 arranged in an array. The flow guide holes 13 extend downward from the bottom wall of the storage space 2 and penetrate through the fixture body 1. The flow guide holes 13 enable rapid flow and discharge of the chemical solution during processing, reducing chemical residue in the storage space 2 and on the surface of the fixture body 1, and reducing the amount of liquid carried by the fixture. At the same time, it enhances the adhesion stability between the glass 3 and the bottom surface of the storage space 2, fundamentally preventing the phenomenon of glass 3 falling off during the frosting process, and improves processing stability in conjunction with the positioning structure.

[0019] The diameter of the guide hole 13 is set to 5mm to match the flow rate and adsorption requirements of the medicine, while taking into account the drainage of accumulated liquid and the stability of the glass bearing. It works in conjunction with the fixture depth optimization and positioning column adjustment to form a synergistic effect, solve the core defects of the existing technology, and improve the product processing qualification rate and medicine utilization rate.

[0020] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. An improved AG fixture, characterized in that, include: The jig body (1) has a storage space (2) that can accommodate the glass (3). The upper surface of the jig body (1) is a first plane, and the bottom surface of the storage space (2) is a second plane. The first plane is located above the second plane. The glass (3) that is accommodated in the storage space (2) is located between the first plane and the second plane. The glass (3) has a protrusion (4), and the upper surface of the protrusion (4) protrudes from the first plane.

2. The improved AG fixture according to claim 1, characterized in that, The fixture body (1) has a storage space (2) with multiple positioning posts (5) and a protrusion (4) with multiple through holes (6). The glass (3) that is adapted to be placed in the storage space (2) can be installed on the multiple positioning posts (5) one by one with the multiple through holes (6).

3. An improved AG fixture according to claim 2, characterized in that, The storage space (2) has two parallel first walls (7) and two parallel second walls (8). The connection between the first wall (7) and the two second walls (8) is smooth. Any first wall (7) is perpendicular to the second wall (8). The glass (3) placed in the storage space (2) has two parallel first edges (9) and two parallel second edges (10). Any first edge (9) is perpendicular to the second edge (10). The two first walls (7) correspond one-to-one with the two first edges (9), and the two second walls (8) correspond one-to-one with the two second edges (10).

4. An improved AG fixture according to claim 3, characterized in that, There is a first gap (11) between the first edge (9) and the corresponding first wall (7), and there is a second gap (12) between the second edge (10) and the corresponding second wall (8).

5. An improved AG fixture according to claim 4, characterized in that, When the glass (3) is placed in the storage space (2), the length of the first gap (11) is the same as the length of the second gap (12).

6. An improved AG fixture according to claim 5, characterized in that, Multiple flow guide holes (13) are arranged in an array on the fixture body (1). The flow guide holes (13) extend downward from the bottom wall of the storage space (2) and penetrate through the fixture body (1).

7. An improved AG fixture according to claim 6, characterized in that, The diameter of the guide hole (13) is 5 mm.