A wind cooling device of a tempered glass production equipment
Patent Information
- Application Number
- CN202521889352.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-02
AI Technical Summary
[0003]该中国专利公开的技术方案存在以下问题,由于其是通过喷头喷出水雾来实现降低空气温度,再通过鼓风机将冷却的空气吹向玻璃,水雾的大小难以控制,容易积水,另外,该中国专利公开的技术方案无法对玻璃的另一面进行冷却,而且仅仅依靠单一气压的空气吹向玻璃,无法适合需要不同气压吹向玻璃的场景,因此该中国专利公开的技术方案仍然有提高的空间,需要对其进行改良
[0013]本实用新型的有益效果为:本实用新型通过延伸布置在玻璃输送线上方的第一风扇降温组件、第一气体增压降温组件可选择不同风压的风对玻璃的上表面进行降温,同样,通过延伸布置在玻璃输送线下方的第二风扇降温组件、第二气体增压降温组件可选择不同风压的风对玻璃的下表面进行降温,解决目前技术风压单一,且无法对玻璃下表面进行降温的问题。
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Figure CN224646856U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to air-cooling equipment, and more specifically to an air-cooling device for tempered glass production equipment. Background Technology
[0002] Chinese patent discloses an air-cooling device for tempered glass production equipment (patent number: 202022174256.8), including a base, a turntable, a connecting rod, and a first rotating bracket. A first motor is mounted on the base; the output end of the first motor is connected to the turntable; the turntable is rotatably connected to the connecting rod; the end of the connecting rod away from the turntable is rotatably connected to the first rotating bracket; the side of the first rotating bracket facing away from the connecting rod is connected to a first sliding member; a first rack is mounted on the first sliding member; the first sliding member is slidably connected to a second housing; a telescopic rod is mounted on the base; the end of the telescopic rod away from the base is connected to a first connecting column; the end of the first connecting column away from the telescopic rod is connected to the first housing; an independent second support column helps prevent glass tilting; the belt drives the rollers to rotate, reducing the speed difference between different rollers and preventing glass breakage; the independent second support column helps prevent glass tilting; the combination of the second motor and the lead screw allows the device to adapt to tempered glass of different thicknesses; the air outlet device can change the angle of the baffle plate by rotating the second gear to control the airflow.
[0003] The technical solution disclosed in this Chinese patent has the following problems: since it reduces the air temperature by spraying water mist from a nozzle and then blowing the cooled air onto the glass by a blower, the size of the water mist is difficult to control and water is easy to accumulate. In addition, the technical solution disclosed in this Chinese patent cannot cool the other side of the glass, and it only relies on air of a single pressure to blow onto the glass, which is not suitable for scenarios that require air of different pressures to blow onto the glass. Therefore, the technical solution disclosed in this Chinese patent still has room for improvement and needs to be improved. Utility Model Content
[0004] The main purpose of this utility model is to provide a solution to the above-mentioned problems by providing an air-cooling device for tempered glass production equipment.
[0005] The technical solution adopted in this utility model is as follows: A cooling device for tempered glass production equipment includes a water curtain cooling machine, a first fan cooling assembly for blowing air cooled by the water curtain cooling machine toward the glass conveyor line, a second fan cooling assembly for blowing air cooled by the water curtain cooling machine toward the area below the glass conveyor line, a first gas pressurization cooling assembly for pressurizing the air cooled by the water curtain cooling machine and blowing it toward the area above the glass conveyor line, and a second gas pressurization cooling assembly for pressurizing the air cooled by the water curtain cooling machine and blowing it toward the area below the glass conveyor line.
[0006] The water curtain cooling machine includes a casing with an inlet and an outlet, a water tank located at the bottom of the casing, at least one honeycomb wet curtain that is detachably installed inside the casing and located above the water tank, a spray pipe located above the honeycomb wet curtain, and a circulating water pump connected to the water tank via a water pipe and the spray pipe.
[0007] The first fan cooling assembly includes a first air duct connected to the outlet of the chassis, a second air duct that runs through the first air duct and extends above the glass conveying line, a first air valve located inside the outlet of the air duct, and a first fan located inside the first air duct and above the first air valve.
[0008] The second fan cooling assembly includes a third air duct that runs through the first air duct and is parallel to the second air duct, a fourth air duct that runs through the third air duct and extends below the glass conveying line, a second fan placed inside the third air duct, and a second air valve placed inside the fourth air duct. The fourth air duct has an outlet facing downwards from the glass conveying line, and the second air valve is located at the outlet.
[0009] The first air valve has the same structure as the second air valve. The first air valve includes a valve body and two valve plates that are rotatably mounted in the valve body via a rotating shaft. An actuator cylinder is provided on the outside of the valve body to drive each valve plate to rotate inside the valve body.
[0010] The first gas pressurization and cooling assembly includes at least one upper pressurization pipe with an air outlet located above the glass conveyor line and a first vortex air pump installed on the first air pipe. The first vortex air pump is connected to the upper pressurization pipe and the outlet of the chassis through pipes respectively.
[0011] The second gas pressurization and cooling assembly includes at least one lower pressurization pipe with an air outlet located below the glass conveying line, and a second vortex air pump installed on the first air duct. The second vortex air pump is connected to the lower pressurization pipe and the outlet of the chassis through pipes respectively.
[0012] The upper pressurizing air pipe is fixed to the outside of the second air duct outlet, and the lower pressurizing air pipe is fixed to the outside of the fourth air duct outlet.
[0013] The beneficial effects of this utility model are as follows: This utility model can select different air pressures to cool the upper surface of the glass by extending and arranging the first fan cooling component and the first gas pressurization cooling component above the glass conveyor line. Similarly, the second fan cooling component and the second gas pressurization cooling component can select different air pressures to cool the lower surface of the glass by extending and arranging the second fan cooling component and the second gas pressurization cooling component below the glass conveyor line, thus solving the problem that the current technology has a single air pressure and cannot cool the lower surface of the glass. Attached Figure Description
[0014] Figure 1 This is a three-dimensional schematic diagram of the present invention.
[0015] Figure 2 This is a three-dimensional cross-sectional structural diagram of the water curtain cooling machine of this utility model.
[0016] Figure 3 This is a partial three-dimensional schematic diagram of the present invention.
[0017] Figure 4 This is a schematic diagram of the structure of the first fan cooling component and the second fan cooling component of this utility model.
[0018] Figure 5 This is a schematic diagram of the structure of the first air valve of this utility model. Detailed Implementation
[0019] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.
[0020] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0022] Please refer to Figures 1 to 5This utility model provides an air-cooling device for tempered glass production equipment, comprising a water curtain cooling machine 10, a first fan cooling assembly 20 for blowing air cooled by the water curtain cooling machine 10 towards the glass conveyor line A, a second fan cooling assembly 30 for blowing air cooled by the water curtain cooling machine 10 towards the glass conveyor line A below, a first gas pressurization cooling assembly 40 for pressurizing the air cooled by the water curtain cooling machine 10 and blowing it towards the glass conveyor line A above, and a second fan cooling assembly 30 for pressurizing the air cooled by the water curtain cooling machine 10 and blowing it towards the glass conveyor line A below. In practical use, the user can freely select the first fan cooling component 20 and the first gas pressurization and cooling component 40 to cool the upper surface of the glass on the glass conveyor line A, that is, to select air with different air pressures to cool the upper surface of the glass on the glass conveyor line A. Similarly, the user can freely select the second fan cooling component 30 and the second gas pressurization and cooling component 50 to cool the lower surface of the glass on the glass conveyor line A, that is, to select air with different air pressures to cool the lower surface of the glass on the glass conveyor line A.
[0023] In this embodiment, the water curtain cooling machine 10 includes a housing 11 having an inlet 111 and an outlet 112, a water tank 12 located at the bottom of the housing 11, at least one honeycomb wet curtain 13 detachably installed inside the housing 11 and located above the water tank 12, a spray pipe 14 located above the honeycomb wet curtain 13, and a circulating water pump 15 connected to the water tank 12 via a water pipe and the spray pipe 14. The circulating water pump 15 can draw water from the water tank 12 and spray it onto the honeycomb wet curtain 13 through the spray pipe 14. Air enters the honeycomb wet curtain 13 through the inlet 111 and leaves the water curtain cooling machine 10 through the outlet 112, thereby achieving the purpose of cooling.
[0024] It is worth mentioning that the honeycomb wet curtain 12 can be the wet curtain disclosed in Chinese patent A type of evaporative air cooler wet curtain and air cooler with the wet curtain installed (patent number: 201220091784.X), or it can be water curtain honeycomb paper. Water curtain honeycomb paper is a commonly used accessory in the field of air-cooled machine technology. In order to express the overall structure, a simple schematic diagram is used.
[0025] In this embodiment, as Figure 1 , Figure 4As shown, the first fan cooling assembly 20 includes a first air duct 21 connected to the outlet 111 of the chassis 11, a second air duct 22 that passes through the first air duct 21 and extends above the glass conveying line A, a first air valve 23 located inside the outlet of the air duct 22, and a first fan 24 located inside the first air duct 22 and above the first air valve 23. The first fan 24 draws air cooled by the water curtain cooling machine 10 through the second air duct 22 and the first air duct 21, and adjusts the air volume through the first air valve 23 to accommodate glass of different thicknesses. Users can adjust the air volume through the first air valve 23 according to the actual situation.
[0026] In this embodiment, the second fan cooling component 30 includes a third air duct 31 that is connected to the first air duct 21 and parallel to the second air duct 22, a fourth air duct 32 that is connected to the third air duct 31 and extends to the bottom of the glass conveying line A, a second fan 33 placed inside the third air duct 31, and a second air valve 34 placed inside the fourth air duct 32. The fourth air duct 32 has an outlet 321 facing the bottom of the glass conveying line A, and the second air valve 34 is located at the outlet 321.
[0027] It is worth mentioning that the first air valve and the second air valve have the same structure, only different sizes, and have notches in the corresponding positions of the valve bodies. For example, the second air valve needs to have a notch so that the air blown by the second fan can be discharged through the second air valve.
[0028] This section only describes the structure of the first air valve, such as... Figure 5 As shown, the first air valve 23 includes a valve body 231 and two valve plates 232 that are rotatably mounted inside the valve body 231 via a rotating shaft B. An actuator cylinder 233 is provided on the outside of the valve body 231 to drive each valve plate 232 to rotate inside the valve body 231. Only one side of the actuator cylinder 233 is shown in the figure; there is another actuator cylinder on the other side.
[0029] It is worth noting that after the first air valve 23 and the second air duct 22 in the figure are combined, the air outlet of the air valve (the gap between the valve plates 232) can be arranged according to the direction of the rotating roller of the glass conveying line A. Only the position of the air valve 23 needs to be adjusted.
[0030] In this embodiment, the first gas pressurization and cooling assembly 40 includes at least one upper pressurization pipe 41 with an air outlet located above the glass conveyor line A and a first vortex air pump 42 installed on the first air duct 21. The first vortex air pump 42 is connected to the upper pressurization pipe 41 and the outlet 111 of the chassis 11 through pipes, so that the first vortex air pump 42 can pressurize the air cooled by the water curtain cooling machine 10 and discharge the pressurized air to the outside through the upper pressurization pipe 41.
[0031] In this embodiment, the second gas pressurization and cooling assembly 50 includes at least one lower pressurization pipe 51 with an air outlet located below the glass conveyor line A and a second vortex air pump 52 installed on the first air duct 21. The second vortex air pump 52 is connected to the lower pressurization pipe 51 and the outlet 111 of the chassis 11 through pipes, so that the second vortex air pump 52 can pressurize the air cooled by the water curtain cooling machine 10 and discharge the pressurized air to the outside through the lower pressurization pipe 51.
[0032] It is worth mentioning that, in this embodiment, the upper pressurizing air pipe 41 is fixed to the outside of the outlet of the second air duct 22, so that the air outlet faces the glass conveying line. The lower pressurizing air pipe 51 is fixed to the outside of the outlet of the fourth air duct 32, so that the air outlet faces the glass conveying line.
[0033] The present invention aims to solve the problem that by extending and arranging a first fan cooling component and a first gas pressurization cooling component above the glass conveyor line, different air pressures can be selected to cool the upper surface of the glass. Similarly, by extending and arranging a second fan cooling component and a second gas pressurization cooling component below the glass conveyor line, different air pressures can be selected to cool the lower surface of the glass, thus solving the problem that the current technology has a single air pressure and cannot cool the lower surface of the glass.
[0034] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A wind cooling device of a tempered glass production apparatus, characterized by: The device includes a water curtain cooling machine, a first fan cooling assembly for blowing air cooled by the water curtain cooling machine toward the glass conveyor line, a second fan cooling assembly for blowing air cooled by the water curtain cooling machine toward the bottom of the glass conveyor line, a first gas pressurization cooling assembly for pressurizing the air cooled by the water curtain cooling machine and blowing it toward the top of the glass conveyor line, and a second gas pressurization cooling assembly for pressurizing the air cooled by the water curtain cooling machine and blowing it toward the bottom of the glass conveyor line.
2. The air cooling device of the tempered glass production apparatus according to claim 1, wherein, The water curtain cooling machine includes a casing with an inlet and an outlet, a water tank located at the bottom of the casing, at least one honeycomb wet curtain that is detachably installed inside the casing and located above the water tank, a spray pipe located above the honeycomb wet curtain, and a circulating water pump connected to the water tank via a water pipe and the spray pipe.
3. The air cooling device of the tempered glass production apparatus according to claim 2, wherein The first fan cooling assembly includes a first air duct connected to the outlet of the chassis, a second air duct that runs through the first air duct and extends above the glass conveying line, a first air valve located inside the outlet of the air duct, and a first fan located inside the first air duct and above the first air valve.
4. The air cooling device of the tempered glass production apparatus according to claim 3, wherein The second fan cooling assembly includes a third air duct that runs through the first air duct and is parallel to the second air duct, a fourth air duct that runs through the third air duct and extends below the glass conveying line, a second fan placed inside the third air duct, and a second air valve placed inside the fourth air duct. The fourth air duct has an outlet facing downwards from the glass conveying line, and the second air valve is located at the outlet.
5. The air cooling device of the tempered glass production apparatus according to claim 4, wherein The first air valve has the same structure as the second air valve. The first air valve includes a valve body and two valve plates that are rotatably mounted in the valve body via a rotating shaft. An actuator cylinder is provided on the outside of the valve body to drive each valve plate to rotate inside the valve body.
6. The air cooling device of the tempered glass production apparatus according to claim 5, wherein, The first gas pressurization and cooling assembly includes at least one upper pressurization pipe with an air outlet located above the glass conveyor line and a first vortex air pump installed on the first air pipe. The first vortex air pump is connected to the upper pressurization pipe and the outlet of the chassis through pipes respectively.
7. The air cooling device of tempered glass production equipment according to claim 6, characterized in that, The second gas pressurization and cooling assembly includes at least one lower pressurization pipe with an air outlet located below the glass conveying line, and a second vortex air pump installed on the first air duct. The second vortex air pump is connected to the lower pressurization pipe and the outlet of the chassis through pipes respectively.
8. The air cooling device of tempered glass production equipment according to claim 7, characterized in that, The upper pressurizing air pipe is fixed to the outside of the second air duct outlet, and the lower pressurizing air pipe is fixed to the outside of the fourth air duct outlet.
Citation Information
Patent Citations
Evaporative type cooling pad for air cooler and air cooler with cooling pad
CN202470270U
Air cooling device of tempered glass production equipment
CN213865932U