Efficient cooling transmission line for tempered hollow glass sheets

By designing a glass slide conveyor belt structure and an air-cooled box, combined with an internal frame conveyor table and cooling fans, the problems of uneven cooling and unstable transmission of tempered insulating glass were solved, achieving efficient cooling and stable transmission, thus improving glass quality and processing efficiency.

CN224015506UActive Publication Date: 2026-03-20ANHUI YAOHAI GLASS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to guarantee the cooling effect of tempered insulating glass during the cooling process, resulting in temperature fluctuations, which affect glass quality and transmission stability, and are prone to problems such as panel wobbling and rough cut edges.

Method used

It adopts a glass slide conveyor belt structure and an air-cooled box structure, combined with an internal frame conveyor platform and a cooling fan. It achieves uniform cooling and stable transmission through a high-efficiency cooling conveyor line composed of a reciprocating conveyor chain and a cooling suction pipe.

Benefits of technology

This technology enables efficient cooling of insulated glass, improves cooling efficiency, ensures the integrity of the glass edge cut, and enhances the processing quality and economic value of the glass.

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Abstract

The utility model relates to an efficient cooling transmission line for tempered hollow glass sheets, which comprises a glass slide transmission belt structure and an air cooling box body structure, the glass slide transmission belt structure comprises a main transmission belt body and an inner guide frame transmission structure, and the air cooling box body structure comprises an outer cover body arranged outside an inner mounting seat frame body and a cooling fan assembly. The inner guide frame conveying structure comprises a set of edge limiting base bodies arranged on the upper portion of the main conveying belt body, a reciprocating type conveying chain way and a plurality of sets of inner frame body conveying table structures, and the inner frame body conveying table structures are used in cooperation with the slide loading frame structures. The inner frame body conveying table structure and the slide loading frame structure are used in a matched mode, and the effect of complete conduction of slide edge notches is achieved. The inner frame body conveying table structure moves in a reciprocating mode through a reciprocating type conveying chain way, a cooling fan blows cold air into an air pipe, and heat in an outer cover body and a main conveying belt body is rapidly discharged through a cooling air suction pipe set. The cooling efficiency of the hollow glass is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of insulating glass processing, and in particular to a high-efficiency cooling and transmission line for tempered insulating glass sheets. Background Technology

[0002] Insulating glass has excellent heat and sound insulation properties. However, it retains a high temperature after manufacturing. Directly sealing the glass afterward can cause deformation and potentially breakage. Therefore, cooling is necessary before sealing. Tempered glass is a type of safety glass. Tempered glass is actually a prestressed glass. To improve its strength, chemical or physical methods are used to create compressive stress on the glass surface. When subjected to external forces, this surface stress is first neutralized, thus increasing its load-bearing capacity and enhancing its resistance to wind pressure, temperature changes, and impacts. Tempered glass manufacturing processes are divided into physical tempering and chemical tempering. Physical tempering, also known as quenched tempering, involves heating ordinary flat glass in a furnace to near its softening temperature (600°C), causing it to deform and eliminate internal stress. The glass is then removed from the furnace and rapidly and evenly cooled to room temperature using high-pressure cold air blown onto both sides through multi-nozzle nozzles.

[0003] Publication No.: CN219489844U A cooling device for tempered glass production includes a controller embedded in the front side wall of the base frame, a diagonal brace welded to the bottom of the base frame, a crossbar welded to the inner wall of the diagonal brace, a drive motor fixed to the top of the crossbar, and two columns fixedly connected to the top of the base frame by screws. A drive wheel is movably mounted on the top of the first column. This cooling device, equipped with a transmission structure, can rapidly cool the tempered glass during transmission, improving work efficiency. A cooling chamber is set at the top of the base frame, containing opposing fans. A sleeve with a movable sleeve is fitted to the fan output end, allowing the sleeve carrying the sleeve hole to rotate during air transmission, evenly distributing the airflow inside the cooling chamber, ensuring uniform airflow to the transmitted tempered glass. The structure is simple and easy to maintain.

[0004] In actual processing, the cooling effect is difficult to guarantee. At the same time, during the transmission process, temperature fluctuations in the transmission structure can cause the glass plate to wobble. This wobble in the transmission structure results in rough and incomplete cut edges on the glass sheet, reducing the quality and economic value of the glass. Utility Model Content

[0005] The purpose of this invention is to provide a high-efficiency cooling and transmission line for tempered insulating glass sheets, solving the problems of efficient cooling and stable transmission of tempered insulating glass sheets.

[0006] The utility model discloses a technical scheme that solves its technical problem is: a kind of high-efficiency cooling transmission line of toughened hollow glass original piece, including glass sheet transmission belt structure and the air cooling box structure being located at the upper portion of glass sheet transmission belt structure, the glass sheet transmission belt structure include main transmission belt body, the inner guide frame transmission structure in the main transmission belt body, the air cooling box structure include the inner mounting seat frame body being located at the outside of main transmission belt body, the outer cover body being located at the outside of inner mounting seat frame body and the cooling fan assembly being located at the upper portion of outer cover body, the inner guide frame transmission structure include the group of side portion limit seat body being located at the upper portion of main transmission belt body, reciprocating transmission chain channel being located in main transmission belt body, and the plurality of inner frame body transmission table structure connected with reciprocating transmission chain channel, the inner frame body transmission table structure is used in cooperation with glass sheet loading frame structure.

[0007] The inner frame body transmission table structure includes an inner transmission table body disposed on the upper portion of the reciprocating transmission chain channel, a plurality of heat dissipation hole groups disposed in the inner transmission table body, and an inner frame connecting assembly disposed on the upper portion of the inner transmission table body.

[0008] The glass sheet loading frame structure includes a loading frame body, an inner support body disposed in the loading frame body, and a group of side portion limit clamp seat bodies disposed on the upper portion of the loading frame body.

[0009] The stop pressing rod structure between the two side portion limit clamp seat bodies includes a pressing rod body, a pressing connection seat disposed on the lower portion of the pressing rod body, and a plurality of pressing blocks disposed on the lower portion of the pressing connection seat.

[0010] The loading frame body is provided with a buffer block at each of the upper and lower ends.

[0011] The outer cover body is provided with a cooling air suction pipe group on the lower portion.

[0012] The utility model discloses the beneficial effects of the inner frame body transmission table structure and the glass sheet loading frame structure are used in cooperation, the glass sheet loading frame structure fixes the glass sheet to slide back and forth along the main transmission belt body to achieve stable guiding effect, and the effect of complete conduction of the glass sheet side notch is achieved. The inner frame body transmission table structure moves back and forth through the reciprocating transmission chain channel, starts the cooling fan, the cooling fan blows cold air through the air pipe, and then the cooling air flow uniformly blows to the surface of the hollow glass through the air outlet, so that the cooling air flow blows and cools the glass sheet from the top, and the heat in the outer cover body and the main transmission belt body is quickly discharged through the cooling air suction pipe group; so as to make the hollow glass cooling more comprehensive, effectively improve the cooling efficiency of the hollow glass, and speed up the processing progress of the hollow glass.

[0013] The utility model will be combined with drawing and example, and the utility model will be described in more detail. DRAWINGS

[0014] Figure 1 It is the structure schematic diagram of the utility model.

[0015] Figure 2 is a top view of the glass loading rack. Figure 1

[0016] Figure 3 is an internal structure view of the glass loading rack. Figure 1

[0017] Figure 4 is a structure schematic view of the glass loading rack structure in the utility model.

[0018] Figure 5 is a use state view of the utility model.

[0019] In the figure: 1. main transmission belt body, 2. inner mounting seat frame body, 3. outer cover body, 4. cooling fan assembly, 5. edge part limiting seat body, 6. reciprocating transmission chain channel, 7. inner transmission table body, 8. heat dissipation hole group, 9. inner frame connecting assembly, 10. loading rack body, 11. inner support body, 12. edge part limiting clamp seat body, 13. compression rod body, 14. compression connecting seat, 15. compression block group, 16. buffer block, 17. cooling air suction pipe group. DETAILED DESCRIPTION

[0020] The orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end" and "another end" in the application text is the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0021] In the description of the utility model, it should be pointed out that, unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "connection" and the like should be broadly understood, for example, "connection" can be fixed connection, can also be detachable connection, or integrally connected; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0022] Example 1, as Figures 1-5 ​​As shown, an efficient cooling conveying line for toughened hollow glass blanks comprises a glass sheet conveying belt structure and a wind cooling box structure arranged on the upper part of the glass sheet conveying belt structure, the glass sheet conveying belt structure comprises a main conveying belt body 1, an inner guide frame conveying structure arranged in the main conveying belt body, the wind cooling box structure comprises an inner mounting seat frame body 2 arranged on the outer part of the main conveying belt body, an outer cover body 3 arranged on the outer part of the inner mounting seat frame body, and a cooling fan assembly 4 arranged on the upper part of the outer cover body, and the lower part of the outer cover body is provided with a cooling air suction pipe group 17.

[0023] The inner guide frame conveying structure comprises a group of edge limiting seat bodies 5 arranged on the upper part of the main conveying belt body, a reciprocating conveying chain channel 6 arranged in the main conveying belt body, and a plurality of inner frame body conveying table structures connected with the reciprocating conveying chain channel, and the inner frame body conveying table structures are used in cooperation with the glass sheet loading rack structure.

[0024] The glass sheet loading rack structure comprises a loading rack body 10, an inner support body 11 arranged in the loading rack body, and a group of edge limiting clamp seat bodies 12 arranged on the upper part of the loading rack body.

[0025] The stop pressing rod structure between the two edge limiting clamp seat bodies comprises a pressing rod body 13, a pressing connection seat 14 arranged on the lower part of the pressing rod body 13, and a pressing block group 15 arranged on the lower part of the pressing connection seat. The loading rack body is provided with a buffer block 16 at the upper and lower ends.

[0026] The inner frame body conveying table structure is used in cooperation with the glass sheet loading rack structure, the glass sheet loading rack structure fixes the glass sheet to slide back and forth along the main conveying belt body to achieve stable guiding effect and complete conduction effect of the edge cut of the glass sheet. The inner frame body conveying table structure moves back and forth through the reciprocating conveying chain channel, starts the cooling fan, the cooling fan blows cold air into the air pipe, then the cooling air flow uniformly blows to the surface of the hollow glass through the air blowing nozzle, so that the cooling air flow blows and cools the glass sheet from above, and the heat in the outer cover body and the main conveying belt body is quickly discharged through the cooling air suction pipe group; so that the cooling of the hollow glass is more comprehensive, the cooling efficiency of the hollow glass is effectively improved, and the processing progress of the hollow glass is accelerated.

[0027] The above embodiments only describe the preferred embodiments of the present application, and do not limit the scope of the present application, and various modifications and improvements of the technical solutions of the present application made by ordinary engineering technical personnel without departing from the design spirit of the present application shall fall within the protection scope determined by the claims of the present application.

[0028] The utility model discloses the same or can adopt prior art to realize with the part not involved in the utility model same as prior art.

Claims

1. A high-efficiency cooling conveyor line for tempered insulating glass sheets, comprising a glass sheet conveyor belt structure and an air-cooled box structure disposed on the upper part of the glass sheet conveyor belt structure, characterized in that: The slide conveyor belt structure includes a main conveyor belt body and an inner guide frame conveyor structure disposed within the main conveyor belt body. The air-cooled housing structure includes an inner mounting bracket body disposed outside the main conveyor belt body, an outer cover body disposed outside the inner mounting bracket body, and a cooling fan assembly disposed on the upper part of the outer cover body. The inner guide frame conveyor structure includes a set of edge limiting seats disposed on the upper part of the main conveyor belt body, a reciprocating conveyor chain disposed within the main conveyor belt body, and multiple sets of inner frame conveyor platform structures connected to the reciprocating conveyor chain. The inner frame conveyor platform structure is used in conjunction with the slide loading rack structure.

2. The high-efficiency cooling transmission line for tempered insulating glass sheets as described in claim 1, characterized in that: The inner frame transmission platform structure includes an inner transmission platform body located on the upper part of the reciprocating transmission chain, a heat dissipation hole group located in the inner transmission platform body, and an inner frame connecting assembly located on the upper part of the inner transmission platform body.

3. The high-efficiency cooling transmission line for tempered insulating glass sheets as described in claim 1, characterized in that: The slide loading rack structure includes a loading rack body, an inner support body disposed in the loading rack body, and a set of edge limiting clamps disposed on the upper part of the loading rack body.

4. The high-efficiency cooling transmission line for tempered insulating glass sheets as described in claim 2, characterized in that: A stop clamping rod structure between two edge limiting clamping bodies, the stop clamping rod structure including a clamping rod body, a clamping connecting seat disposed at the lower part of the clamping rod body, and a clamping block assembly at the lower part of the clamping connecting seat.

5. The high-efficiency cooling transmission line for tempered insulating glass sheets as described in claim 3, characterized in that: The loading frame is equipped with buffer blocks at both the upper and lower ends.

6. The high-efficiency cooling transmission line for tempered insulating glass sheets as described in claim 1, characterized in that: A cooling air intake pipe assembly is provided at the lower part of the outer casing.

Citation Information

Patent Citations

  • Cooling device for tempered glass production

    CN219489844U