Pressing equipment for producing energy-saving hollow glass

Through the design of lifting tabletop and universal wheels, the problem of glass bumping and damage in hollow glass pressing equipment is solved, achieving convenient operation and low-loss energy-saving hollow glass production.

CN223118336UActive Publication Date: 2025-07-18GAOZHOU GAOHONG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422270412.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-18
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Existing hollow glass pressing equipment is prone to glass collision and damage during operation, and it is inconvenient to operate, making it difficult to efficiently produce energy-saving hollow glass.

Method used

The lifting table structure is adopted, including a lifting frame, a lifting seat and a lifting power mechanism. The lifting seat enables the transfer between the cleaning and delivery table and the hot pressing and delivery table. Combined with the design of universal wheels and one-way wheels, it avoids glass bumps and improves operational convenience.

Benefits of technology

It reduces the risk of glass damage, improves production efficiency, and reduces production losses, making it suitable for efficient manufacturing of hollow glass insulated glass insulated on doors and windows.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hollow glass pressing equipment, in particular to pressing equipment for producing energy-saving hollow glass, which comprises a glass cleaning device, a hollow glass hot-pressing device arranged above the glass cleaning device, a cleaning feeding table top arranged on the left side of the glass cleaning device, and a hot-pressing discharging table top, a lifting table top is arranged on the right side of the glass cleaning device and comprises a lifting frame arranged on the right side of the glass cleaning device, a lifting base slidably connected to the lifting frame in the vertical direction and a lifting power mechanism used for driving the lifting base to slide. Transfer of glass between the cleaning delivery table top and the hot-pressing delivery table top is completed through the lifting table top, overall operation is more convenient, the conditions of collision and glass damage can be avoided, production loss is greatly reduced, the glass transfer table can be better used for producing energy-saving hollow glass, and the production efficiency of the energy-saving hollow glass is improved. The method is particularly suitable for producing and manufacturing hollow glass of doors and windows.
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Description

Technical Field:

[0001] The utility model relates to the technical field of hollow glass pressing equipment, in particular to a pressing equipment for producing energy-saving hollow glass. Background Art:

[0002] Due to the good heat insulation, sound insulation and other capabilities of hollow glass, the demand for hollow glass in industries such as doors and windows is increasing day by day. In order to reduce the floor area and improve the operation efficiency, in the prior art, most glass cleaning devices are integrally arranged on the hollow glass pressing equipment, that is, the existing hollow glass pressing equipment integrates cleaning and pressing. For example, the integral hollow glass cleaning and hot pressing combined machine with the application number CN200820090424.1 includes a glass cleaning device, a hollow glass hot pressing device arranged above the glass cleaning device, a cleaning feeding table arranged on the left side of the glass cleaning device, a cleaning discharging table arranged on the right side of the glass cleaning device, a hot pressing discharging table arranged on the left side of the hollow glass hot pressing device and above the cleaning feeding table, and a hot pressing feeding table arranged on the right side of the hollow glass hot pressing device and above the cleaning discharging table; although compared with the traditional hollow glass pressing equipment, it can reduce the floor area and improve the operation efficiency, but every time when transferring the glass on the cleaning discharging table to the hot pressing feeding table, not only the operation is more troublesome, but also the glass is easily knocked and damaged. There is an urgent need for a pressing equipment that can be better used for producing energy-saving hollow glass, especially suitable for the production and manufacturing of hollow glass for doors and windows. Content of the Utility Model:

[0003] The purpose of the utility model is to provide a pressing equipment for producing energy-saving hollow glass aiming at the deficiencies of the prior art. Not only is the overall operation more convenient, but also the situation of knocking and glass damage can be avoided, greatly reducing the production loss, and it can be better used for producing energy-saving hollow glass, especially suitable for the production and manufacturing of hollow glass for doors and windows.

[0004] In order to achieve the above purpose, the technical scheme adopted by the utility model is: a pressing equipment for producing energy-saving hollow glass, including a glass cleaning device, a hollow glass hot pressing device arranged above the glass cleaning device, a cleaning feeding table arranged on the left side of the glass cleaning device, and a hot pressing discharging table arranged on the left side of the hollow glass hot pressing device and above the cleaning feeding table. A lifting table is arranged on the right side of the glass cleaning device. The lifting table includes a lifting frame arranged on the right side of the glass cleaning device, a lifting seat slidably connected to the lifting frame in the vertical direction, and a lifting power mechanism for driving the lifting seat to slide. The lifting power mechanism is arranged on the lifting frame, and the output end of the lifting power mechanism is drivingly connected to the lifting seat.

[0005] A further improvement to the above solution is that the lifting tabletop further includes a plurality of transmission shafts disposed on the lifting seat, and a plurality of transfer transmission wheels are respectively sleeved on each transmission shaft.

[0006] A further improvement to the above solution is that the transfer transmission wheel is a one-way wheel.

[0007] A further improvement to the above solution is that a plurality of cleaning feeding wheels are provided on the cleaning feeding tabletop.

[0008] A further improvement to the above solution is that the cleaning feeding wheel is a universal wheel.

[0009] A further improvement to the above solution is that a plurality of hot pressing output wheels are provided on the hot pressing output tabletop.

[0010] A further improvement to the above solution is that the hot pressing output wheel is a universal wheel.

[0011] A further improvement to the above solution is that the cleaning feeding tabletop and the hot pressing output tabletop are of an integral structure.

[0012] A further improvement to the above solution is that the cleaning feeding tabletop and the hot pressing output tabletop form the left machine part, the glass cleaning device and the insulating glass hot pressing device form the middle machine part, the lifting tabletop is the right machine part, and the left machine part, the middle machine part and the right machine part are respectively independently arranged.

[0013] A further improvement to the above solution is that the bottoms of the left machine part, the middle machine part and the right machine part are respectively provided with foot support caster assemblies.

[0014] The beneficial effect of the present utility model lies in that: A pressing device for producing energy-saving insulating glass provided by the present utility model includes a glass cleaning device, a hollow glass hot pressing device disposed above the glass cleaning device, a cleaning feeding tabletop disposed on the left side of the glass cleaning device, and a hot pressing output tabletop disposed on the left side of the hollow glass hot pressing device and above the cleaning feeding tabletop. A lifting tabletop is provided on the right side of the glass cleaning device. The lifting tabletop includes a lifting frame disposed on the right side of the glass cleaning device, a lifting seat slidably connected to the lifting frame in the vertical direction, and a lifting power mechanism for driving the lifting seat to slide. The lifting power mechanism is disposed on the lifting frame, and the output end of the lifting power mechanism is drivingly connected to the lifting seat;

[0015] When processing insulating glass by the present utility model, first place a single glass sheet on the cleaning and feeding table and feed it into the glass cleaning device for cleaning. Drive the lifting seat to align with the height of the glass cleaning device through the lifting power mechanism. The cleaned single glass sheet is sent to the lifting seat. Bond the composite rubber strip on the single glass sheet and place another cleaned glass sheet on the aforementioned single glass sheet. Then drive the lifting seat to align with the height of the insulating glass hot pressing device through the lifting power mechanism, and feed the glass to be pressed into the insulating glass hot pressing device for pressing. The double-layer insulating glass after pressing is sent to the hot pressing and feeding table; compared with the previous method of taking out the glass on the cleaning and feeding table and placing it on the hot pressing and feeding table, the present utility model completes the transfer of the glass between the cleaning and feeding table and the hot pressing and feeding table through the lifting table, which not only makes the overall operation more convenient, but also can avoid bumping and glass damage, greatly reducing production losses, and can be better used for the production of energy-saving insulating glass, especially suitable for the production and manufacturing of insulating glass for doors and windows. Description of the Drawings:

[0016] Figure 1 It is a schematic structural diagram of the present utility model.

[0017] Figure 2 It is a schematic structural diagram of the lifting table of the present utility model.

[0018] Description of the Reference Numerals: Glass cleaning device 1, Insulating glass hot pressing device 2, Cleaning and feeding table 3, Cleaning and feeding wheel 31, Hot pressing and feeding table 4, Hot pressing and feeding wheel 41, Lifting table 5, Lifting frame 51, Lifting seat 52, Lifting power mechanism 53, Transmission shaft 54, Transfer transmission wheel 55, Left machine part 6, Middle machine part 7, Right machine part 8, Foot support caster assembly 9. Detailed Embodiment:

[0019] The following further describes the present utility model with reference to the drawings. As Figure 1-2 shown, the present utility model includes a glass cleaning device 1, an insulating glass hot pressing device 2 arranged above the glass cleaning device 1, a cleaning and feeding table 3 arranged on the left side of the glass cleaning device 1, and a hot pressing and feeding table 4 arranged on the left side of the insulating glass hot pressing device 2 and above the cleaning and feeding table 3. A lifting table 5 is arranged on the right side of the glass cleaning device 1. The lifting table 5 includes a lifting frame 51 arranged on the right side of the glass cleaning device 1, a lifting seat 52 slidably connected to the lifting frame 51 in the vertical direction, and a lifting power mechanism 53 for driving the lifting seat 52 to slide. The lifting power mechanism 53 is arranged on the lifting frame 51, and the output end of the lifting power mechanism 53 is drivingly connected to the lifting seat 52.

[0020] The lifting tabletop 5 further includes a plurality of transmission shafts 54 disposed on the lifting seat 52. A plurality of transfer transmission wheels 55 are respectively sleeved on each transmission shaft 54. Through each transfer transmission wheel 55, the glass can be better sent out from the glass cleaning device 1 and fed into the insulating glass hot pressing device 2.

[0021] The transfer transmission wheel 55 is a one-way wheel, and only a single-direction movement of the glass is required, which can prevent the glass from running off track.

[0022] A plurality of cleaning feeding wheels 31 are provided on the cleaning feeding tabletop 3. Through the cleaning feeding wheels 31, the glass can be better fed into the glass cleaning device 1. The cleaning feeding wheels 31 are universal wheels, which can convey the glass in all directions, so that the position of the glass can be better adjusted to better feed the glass into the glass cleaning device 1.

[0023] A plurality of hot pressing sending wheels 41 are provided on the hot pressing sending tabletop 4. The hot pressing sending wheels 41 are universal wheels, which can better complete the sending out of the glass from the insulating glass hot pressing device 2.

[0024] The cleaning feeding tabletop 3 and the hot pressing sending tabletop 4 are of an integral structure, and the overall structure is more stable.

[0025] The cleaning feeding tabletop 3 and the hot pressing sending tabletop 4 form the left machine part 6, the glass cleaning device 1 and the insulating glass hot pressing device 2 form the middle machine part 7, and the lifting tabletop 5 is the right machine part 8. The left machine part 6, the middle machine part 7, and the right machine part 8 are respectively independently arranged, and the bottom parts of the left machine part 6, the middle machine part 7, and the right machine part 8 are respectively provided with foot support caster assemblies 9; compared with the overall integral structure design, the utility model is divided into the left machine part 6, the middle machine part 7, and the right machine part 8, which is not only more convenient for the overall transfer, but also more convenient for maintenance and overhaul.

[0026] Working principle:

[0027] First, place the single-piece glass on the cleaning and feeding table 3 and feed it into the glass cleaning device 1 for cleaning. Drive the lifting seat 52 to align with the height of the glass cleaning device 1 through the lifting power mechanism 53. The cleaned single-piece glass is sent to the lifting seat 52. Bond the composite rubber strip on the single-piece glass and place another cleaned glass on the aforementioned single-piece glass. Then, drive the lifting seat 52 to align with the height of the insulating glass hot pressing device 2 through the lifting power mechanism 53, and feed the glass to be pressed into the insulating glass hot pressing device 2 for pressing. The double-layer insulating glass after pressing is sent to the hot pressing and feeding table 4. Compared with the prior art where it is necessary to take out the glass on the cleaning and feeding table and place it on the hot pressing and feeding table, the present utility model completes the transfer of the glass between the cleaning and feeding table and the hot pressing and feeding table through the lifting table 5. Not only is the overall operation more convenient, but also the situation of bumping and glass damage can be avoided, greatly reducing production losses, and it can be better used for the production of energy-saving insulating glass, especially suitable for the production and manufacturing of insulating glass for doors and windows.

[0028] Of course, the above description is only a preferred embodiment of the present utility model. Therefore, any equivalent changes or modifications made according to the structure, features, and principles described in the scope of the patent application of the present utility model are included in the scope of the patent application of the present utility model.

Claims

1. A pressing device for producing energy-saving insulating glass, comprising a glass cleaning device (1), a hot pressing device (2) for insulating glass disposed above the glass cleaning device (1), a cleaning and feeding tabletop (3) disposed on the left side of the glass cleaning device (1), and a hot pressing and discharging tabletop (4) disposed on the left side of the hot pressing device (2) for insulating glass and above the cleaning and feeding tabletop (3), characterized in that: On the right side of the glass cleaning device (1), there is a lifting tabletop (5). The lifting tabletop (5) includes a lifting frame (51) arranged on the right side of the glass cleaning device (1), a lifting seat (52) slidably connected to the lifting frame (51) in the vertical direction, and a lifting power mechanism (53) for driving the sliding of the lifting seat (52). The lifting power mechanism (53) is arranged on the lifting frame (51), and the output end of the lifting power mechanism (53) is drivingly connected to the lifting seat (52).

2. The pressing device for producing energy-saving insulating glass according to claim 1, characterized in that: The lifting tabletop (5) further includes a plurality of transmission shafts (54) arranged on the lifting seat (52), and a plurality of transfer transmission wheels (55) are respectively sleeved on each transmission shaft (54).

3. The pressing device for producing energy-saving insulating glass according to claim 2, characterized in that: The transfer transmission wheel (55) is a one-way wheel.

4. A pressing device for producing energy-saving insulating glass according to claim 1, characterized in that: A plurality of cleaning feeding wheels (31) are arranged on the cleaning feeding tabletop (3).

5. The pressing device for producing energy-saving insulating glass according to claim 4, characterized in that: The cleaning feeding wheel (31) is a universal wheel.

6. The lamination equipment for producing energy-saving insulating glass according to claim 1, characterized in that: A plurality of hot pressing output wheels (41) are arranged on the hot pressing output tabletop (4).

7. A pressing device for producing energy-saving insulating glass according to claim 6, characterized in that: The hot pressing output wheel (41) is a universal wheel.

8. A pressing device for producing energy-saving insulating glass according to claim 1, characterized in that: The cleaning feeding tabletop (3) and the hot pressing output tabletop (4) are of an integral structure.

9. A pressing device for producing energy-saving insulating glass according to claim 1, characterized in that: The cleaning feeding tabletop (3) and the hot pressing output tabletop (4) form the left machine part (6), the glass cleaning device (1) and the insulating glass hot pressing device (2) form the middle machine part (7), the lifting tabletop (5) is the right machine part (8), and the left machine part (6), the middle machine part (7) and the right machine part (8) are respectively independently arranged.

10. A pressing device for producing energy-saving insulating glass according to claim 9, characterized in that: Foot support caster assemblies (9) are respectively arranged at the bottoms of the left machine part (6), the middle machine part (7) and the right machine part (8).

Citation Information

Patent Citations

  • Integral cleaning and heat pressing combined machine for hollow glass

    CN201245559Y