Glass high-pressure frame

By designing adjustable pressing and positioning components, the problems of positional shift and optical deviation during the transportation of high-pressure glass frames were solved, achieving stable transportation and high yield of glass under high pressure.

CN224226171UActive Publication Date: 2026-05-12FUYAO GRP SHANGHAI AUTOMOBILE GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUYAO GRP SHANGHAI AUTOMOBILE GLASS CO LTD
Filing Date
2025-06-04
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

During transportation, the spring tension of the lower pressure rod in existing glass high-pressure frames causes glass misalignment and optical deviation, affecting product yield.

Method used

Design a high-pressure glass frame, including a transport frame body, a lowering component, and a positioning component. The positions of the lowering component and the positioning component are adjustable. The lowering component pushes the pressure rod to press the glass, and the positioning component supports the pressure rod, reducing the pressure of the pressure rod on the glass, ensuring that the glass does not shift position during transportation, and maintaining good fit and optical properties under high pressure.

Benefits of technology

This effectively prevents glass from shifting during transportation, reduces deformation, maintains good fit and optical properties, and improves product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass high-pressure frame which comprises a conveying frame body, a pressing rod, a downward pressing piece and a positioning piece. The downward pressing piece and the positioning piece are located on the conveying frame body. The transport frame body is provided with a glass storage area, and the pressing piece is located above the glass storage area. The positions of the pressing piece and the positioning piece are adjustable up and down, and the pressing rod is used for being erected on glass located in a glass storage area; the pressing piece is used for abutting against the top face of the rear end of the pressing rod. The positioning piece is used for supporting the front end of the pressing rod. Glass is placed in the glass storage area of the transportation frame body, then the downward pressing piece is lowered, the downward pressing piece pushes the pressing rod to press and fix the glass, the pressing rod is supported through the positioning piece, the pressure of the pressing rod on the glass is reduced, the pressing rod is kept in the state of being close to the glass, position deviation of the glass in the transportation process is avoided, and the glass transportation efficiency is improved. Meanwhile, as the downward pressure is reduced, the glass is not easy to deform after being subjected to high pressure, so that good goodness of fit and optical characteristics are kept, and the product yield is improved.
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Description

Technical Field

[0001] This utility model relates to the field of glass transportation technology, and in particular to a high-pressure glass frame. Background Technology

[0002] Existing laminated glass pressure cookers are equipped with pressure rods to hold the glass in place and prevent it from shifting during transport. However, existing pressure rods typically use springs that engage with hooks on the pressure cooker to position multiple glass units. When the glass products enter the high-pressure environment of the autoclave, the downward force provided by the springs can cause misalignment and optical deviations in the glass, affecting product yield. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a high-pressure glass frame that, while preventing the glass from shifting during transportation, ensures that the glass maintains good fit and optical properties after being subjected to high pressure, thereby improving product yield.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:

[0005] A glass high-pressure frame includes a transport frame body, a pressure bar, and a lowering member and a positioning member located on the transport frame body;

[0006] The transport frame body is provided with a glass storage area, and the pressure member is located above the glass storage area;

[0007] The positions of the pressing member and the positioning member are both adjustable up and down, and the pressure rod is used to be mounted on the glass located in the glass storage area;

[0008] The pressing member is used to press against the top surface of the rear end of the pressure rod, and the positioning member is used to support the front end of the pressure rod.

[0009] Furthermore, the transport frame body is provided with at least two slots arranged from top to bottom;

[0010] The positioning element is used to insert into any of the slots.

[0011] Furthermore, the positioning element is provided with a connecting element;

[0012] When the positioning member is inserted into the slot along the first horizontal direction, the connecting member is sleeved on the pressing member along the first horizontal direction.

[0013] Furthermore, it also includes a positioning base;

[0014] The positioning seat is detachably mounted on the transport frame body, and all the slots are located on the positioning seat.

[0015] Furthermore, the transport frame body is provided with at least two insertion holes arranged from top to bottom;

[0016] The pressing component is provided with a pin, which is inserted into the socket.

[0017] Furthermore, the transport frame body includes a base and uprights;

[0018] The glass storage area is located on the base, and there are at least two columns arranged around the glass storage area on the base.

[0019] Furthermore, the transport frame body also includes reinforcing tubes;

[0020] One end of the reinforcing tube is connected to the column, and the other end of the reinforcing tube is connected to the base.

[0021] Furthermore, the glass storage area is provided with support members for supporting the glass.

[0022] Furthermore, the transport frame body is provided with a storage slot for storing the pressure rod.

[0023] Furthermore, the bottom of the transport frame body is provided with forklift positioning holes.

[0024] The beneficial effects of this utility model are as follows: It provides a high-pressure glass rack, in which glass is placed in the glass storage area of ​​the transport rack body, and then the lowering pressure member pushes the pressure rod to press and fix the glass by adjusting the lowering pressure member. Then, the positioning member supports the pressure rod to reduce the pressure of the pressure rod on the glass, so that the pressure rod is kept close to the glass, avoiding the glass from shifting position during transportation. At the same time, due to the small lower pressure, the glass is not easy to deform after being subjected to high pressure, thereby maintaining good fit and optical properties and improving product yield. Attached Figure Description

[0025] Figure 1 This is a front view of the structure of a glass high-pressure frame according to the present invention;

[0026] Figure 2 This is a side view of a glass high-pressure frame according to the present invention;

[0027] Figure 3 for Figure 1 Enlarged view of point A in the middle;

[0028] Figure 4 for Figure 1 Enlarged view of point B in the middle;

[0029] Figure 5 for Figure 1 Enlarged diagram of point C in the middle.

[0030] Label Explanation:

[0031] 1. Transport frame body; 2. Pressing component; 3. Positioning component; 4. Glass storage area; 5. Slot; 6. Connector; 7. Positioning seat; 8. Insertion hole; 9. Pin; 10. Pressure rod;

[0032] 11. Base; 12. Column; 13. Reinforcing tube; 14. Support component; 15. Storage slot; 16. Forklift positioning hole; 17. Stacking positioning head; 18. Horizontal limit component. Detailed Implementation

[0033] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0034] Please refer to Figures 1 to 5 A glass high-pressure frame includes a transport frame body 1, a pressure bar 10, and a lower pressure member 2 and a positioning member 3 located on the transport frame body 1;

[0035] The transport rack body 1 is provided with a glass storage area 4, and the pressure component 2 is located above the glass storage area 4;

[0036] The positions of the pressing component 2 and the positioning component 3 are both adjustable up and down, and the pressure rod 10 is used to support the glass located in the glass storage area 4;

[0037] The pressing member 2 is used to press against the top surface of the rear end of the pressure rod 10, and the positioning member 3 is used to support the front end of the pressure rod 10.

[0038] As can be seen from the above description, the beneficial effects of this utility model are as follows: the glass is placed in the glass storage area 4 of the transport frame body 1, and then the lowering member 2 is lowered to push the pressure rod 10 to press and fix the glass. Then, the positioning member 3 supports the pressure rod 10 to reduce the pressure of the pressure rod 10 on the glass, so that the pressure rod 10 remains close to the glass, avoiding the glass from shifting position during transportation. At the same time, because the downward pressure is reduced, the glass is not easy to deform after being subjected to high pressure, thereby maintaining good fit and optical properties and improving product yield.

[0039] Furthermore, the transport frame body 1 is provided with at least two slots 5 arranged from top to bottom;

[0040] The positioning element 3 is used to insert into any slot 5.

[0041] As can be seen from the above description, the multiple slots 5 provide the positioning component 3 with a variety of height adjustment options. Operators can accurately adjust the insertion position of the positioning component 3 according to the actual height of the glass to achieve a tight fit between the pressing component 2 and the glass surface, ensuring that glass of different specifications can be stably supported and protected during transportation, which greatly improves the versatility and applicability of the equipment.

[0042] Furthermore, the positioning component 3 is provided with a connecting component 6;

[0043] When the positioning member 3 is inserted into the slot 5 along the first horizontal direction, the connecting member 6 is sleeved on the pressing member 2 along the first horizontal direction.

[0044] As can be seen from the above description, the connector 6 provides convenience for the positioning member 3 to support the pressing member 2. After the height of the pressing member 2 is determined, the positioning member 3 is inserted into the slot 5 with the height adapted to the pressing member 2. While fixing the positioning member 3, the operation of the connector 6 being sleeved on the pressing member 2 is also completed, so that the positioning member 3 supports the pressing member 2. The parts fit tightly together and the operation is convenient.

[0045] Furthermore, it also includes positioning seat 7;

[0046] The positioning seat 7 is detachably mounted on the transport frame body 1, and all slots 5 are located on the positioning seat 7.

[0047] As can be seen from the above description, the positioning seat 7 can flexibly change the position of all slots 5, and correspondingly change the height adjustment range of the positioning component 3 to flexibly meet the position change requirements of the pressure rod 10.

[0048] Furthermore, the transport frame body 1 is provided with at least two insertion holes 8 arranged from top to bottom;

[0049] The pressing part 2 is provided with a pin 9, which is inserted into the socket 8.

[0050] As can be seen from the above description, the lower pressure component 2 is connected by a pin 9 and different holes 8 to achieve flexible adjustment of the height of the lower pressure component 2, which is convenient to operate. The lower pressure component 2 also has good stability after being fixed.

[0051] Furthermore, the transport frame body 1 includes a base 11 and a column 12;

[0052] The glass storage area 4 is located on the base 11, and there are at least two columns 12 arranged around the glass storage area 4 on the base 11.

[0053] As described above, the base 11 serves as the foundation platform for glass placement, providing a wide and stable load-bearing surface; the layout of at least two uprights 12 surrounding the glass storage area 4 forms a three-dimensional protective frame. During transportation, the uprights 12 effectively block external collisions and compressions, providing a physical barrier for the glass and reducing the risk of breakage due to lateral impacts. Moreover, the spacing between the uprights 12 can be rationally designed according to the glass size, accommodating the placement needs of glass of different specifications while also forming constraints around the glass to prevent it from sliding or tipping over on the transport frame body 1.

[0054] Furthermore, the transport frame body 1 also includes a reinforcing tube 13;

[0055] One end of the reinforcing tube 13 is connected to the column 12, and the other end of the reinforcing tube 13 is connected to the base 11.

[0056] As described above, the reinforcing tube 13 constructs a triangular stable support system, effectively dispersing the stress concentration problem at the connection between the column 12 and the base 11. When the transport frame body 1 carries glass and is subjected to vertical pressure, impact force generated by transport bumps, or lateral force from stacking, the reinforcing tube 13 is used to evenly transmit these external forces to the entire frame, avoiding deformation or cracking of the base 11 or column 12 due to excessive local stress, and significantly enhancing the structural strength of the transport frame body 1 under complex working conditions.

[0057] Furthermore, the glass storage area 4 is provided with a support member 14 for supporting the glass.

[0058] As can be seen from the above description, the support member 14 is used to accurately position the glass. By limiting the placement position of the glass, it ensures that each piece of glass is within the reasonable bearing area of ​​the transport frame body 1, preventing the glass from sliding or tipping over due to unstable center of gravity during transportation, and providing a stable placement environment for the glass.

[0059] Furthermore, the transport frame body 1 is provided with a storage slot 15 for storing the pressure bar 10.

[0060] As can be seen from the above description, when the transport frame body 1 is idle or the pressure bar 10 is not needed, it can be disassembled and stored in the storage slot 15 to avoid the pressure bar 10 being lost or damaged due to random placement.

[0061] Furthermore, the bottom of the transport frame body 1 is provided with a forklift positioning hole 16.

[0062] As described above, the forklift positioning hole 16 precisely matches the forklift forks. Operators only need to insert the forks into the positioning hole to quickly and accurately pick up the transport rack body 1. Compared to traditional transport rack bodies 1 without positioning holes, there is no need to repeatedly adjust the fork position, significantly reducing handling time. Especially when transferring glass in batches, it can significantly improve operational efficiency and meet the needs of enterprises for efficient logistics. Secondly, it enhances the safety of the handling process.

[0063] Please refer to Figures 1 to 5 Embodiment 1 of this utility model is as follows:

[0064] A type of glass high-pressure frame, such as Figure 1As shown, the device includes a transport frame body 1, a pressure rod 10, and a lowering member 2 and a positioning member 3 located on the transport frame body 1. The transport frame body 1 has a glass storage area 4, and the lowering member 2 is located above the glass storage area 4. The positions of the lowering member 2 and the positioning member 3 are adjustable up and down. The pressure rod 10 is used to support the glass located in the glass storage area 4. The lowering member 2 is used to press against the top surface of the rear end of the pressure rod 10, and the positioning member 3 is used to support the front end of the pressure rod 10.

[0065] In this embodiment, the usage process of a glass high-pressure frame is as follows:

[0066] First, place the glass in the glass storage area 4, and then lower the pressure member 2 so that the pressure member 2 pushes the pressure rod 10 to press against the top surface of the glass. The pressure rod 10 and the transport frame body 1 together limit the glass.

[0067] Then, the position of the positioning component 3 on the transport frame body 1 is adjusted so that the positioning component 3 supports the pressure rod 10, thereby reducing the pressure exerted by the pressure rod 10 on the glass.

[0068] When picking up or placing glass later, the operation can be performed from below the positioning component 3 after adjusting the positioning component 3.

[0069] In this embodiment, as Figure 4 As shown, the transport frame body 1 has at least two slots 5 arranged from top to bottom; the positioning member 3 is used to be inserted into any slot 5. The positioning member 3 is provided with a connecting member 6; when the positioning member 3 is inserted into the slot 5 in the first horizontal direction, the connecting member 6 is sleeved on the pressing member 2 in the first horizontal direction.

[0070] In addition, as shown in the figure, the pressure rod 10 is made of different steel welded together and is also fitted with a horizontal limiting member 18. The horizontal limiting member 18 can move on the pressure rod 10 in the first horizontal direction. After all the glass is stacked in the glass storage area 4, the horizontal limiting member 18 is moved to make it fit tightly against the top side of the glass. Then, the horizontal limiting member 18 and the pressure rod 10 are connected by bolts to achieve horizontal limiting of the glass.

[0071] like Figure 1 and Figure 3 As shown, both the positioning element 3 and the pressure rod 10 are rod-shaped; slots 5 corresponding to both ends of the positioning element 3 are provided on the transport frame body 1; when installing the positioning element 3, a suitable slot 5 is selected according to the height of the pressure rod 10 after the pressure element 2 is pressed down; when the end of the positioning element 3 is inserted into the slot 5, one end of the pressure rod 10 is inserted into the sleeve hole on the connector 6, and the connector 6 uses bolts to fix the pressure rod 10.

[0072] Furthermore, the positioning seat 7 is detachably mounted on the transport frame body 1, and all slots 5 are located on the positioning seat 7. The positioning seat 7 is preferably fixed to the transport frame body 1 using screws.

[0073] In this embodiment, as Figure 5 As shown, the transport frame body 1 is provided with at least two insertion holes 8 arranged from top to bottom; the lower pressing member 2 is provided with a pin 9, which is inserted into the insertion hole 8.

[0074] In this embodiment, the lower pressure member 2 is detachably connected to the transport frame body 1; the transport frame body 1 is provided with a storage slot 15 for storing the pressure rod 10. When it is not necessary to transport the glass, the pressure rod 10 can be stored in the storage slot 15.

[0075] Please refer to Figure 1 and Figure 2 Embodiment two of this utility model is as follows:

[0076] A high-pressure glass transport rack, based on the above-described embodiment 1, includes a transport rack body 1 comprising a base 11, a reinforcing tube 13, and uprights 12; a glass storage area 4 is located on the base 11, and at least two uprights 12 are arranged around the glass storage area 4 on the base 11. One end of the reinforcing tube 13 is connected to the upright 12, and the other end of the reinforcing tube 13 is connected to the base 11.

[0077] Furthermore, a stacking positioning head 17 is provided on the top of the column 12. Different glass high-pressure frames are positioned and stacked together through the stacking positioning head 17.

[0078] In this embodiment, the glass storage area 4 is provided with a support member 14 for supporting the glass. Specifically, the support member 14 consists of two parallel rails that jointly support the glass.

[0079] The bottom of the transport frame body 1 is also provided with a forklift positioning hole 16 for use with a forklift to complete the glass transport.

[0080] In summary, this utility model provides a high-pressure glass rack. Glass is placed in the glass storage area of ​​the transport rack body. Then, by lowering the pressure member, the pressure member pushes the pressure rod to press and fix the glass. A positioning member supports the pressure rod, reducing the pressure on the glass and keeping the pressure rod close to the glass. This prevents the glass from shifting during transport. Simultaneously, because the downward pressure is reduced, the glass is less prone to deformation after high pressure, thus maintaining good fit and optical properties, improving product yield. The positioning member achieves height variation by inserting into different slots. The multiple slots provide rich height adjustment options for the positioning member, greatly improving the versatility and applicability of the equipment. The layout of at least two uprights surrounding the glass storage area forms a three-dimensional protective frame. During transport, the uprights effectively block external collisions and compression, providing a physical barrier for the glass and reducing the risk of breakage due to lateral impact.

[0081] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A glass high-pressure frame, characterized in that, Includes a transport frame body, a pressure bar, and a lower pressure member and a positioning member located on the transport frame body; The transport frame body is provided with a glass storage area, and the pressure member is located above the glass storage area; The positions of the pressing member and the positioning member are both adjustable up and down, and the pressure rod is used to be mounted on the glass located in the glass storage area; The pressing member is used to press against the top surface of the rear end of the pressure rod, and the positioning member is used to support the front end of the pressure rod.

2. The glass high-pressure frame according to claim 1, characterized in that, The transport frame body is provided with at least two slots arranged from top to bottom; The positioning element is used to insert into any of the slots.

3. A glass high-pressure frame according to claim 1, characterized in that, The positioning component is provided with a connecting component, which is detachably connected to the pressure rod.

4. A glass high-pressure frame according to claim 2, characterized in that, It also includes a positioning base; The positioning seat is detachably mounted on the transport frame body, and all the slots are located on the positioning seat.

5. A glass high-pressure frame according to claim 1, characterized in that, The transport frame body is provided with at least two insertion holes arranged from top to bottom; The pressing component is provided with a pin, which is inserted into the socket.

6. A glass high-pressure frame according to claim 1, characterized in that, The transport frame body includes a base and uprights; The glass storage area is located on the base, and there are at least two columns arranged around the glass storage area on the base.

7. A glass high-pressure frame according to claim 6, characterized in that, The transport frame body also includes reinforcing tubes; One end of the reinforcing tube is connected to the column, and the other end of the reinforcing tube is connected to the base.

8. A glass high-pressure frame according to claim 1, characterized in that, The glass storage area is equipped with support components for supporting the glass.

9. A glass high-pressure frame according to claim 1, characterized in that, The transport frame body is provided with a storage slot for storing the pressure rod.

10. A glass high-pressure frame according to claim 1, characterized in that, The bottom of the transport frame body is provided with forklift positioning holes.