Cooling equipment on explosion-proof glass production line
By designing an explosion-proof glass production line cooling equipment with an adjustment mechanism, the problem that existing equipment cannot adjust the blowing angle is solved, and the cooling effect of different glass products is improved and the equipment versatility is enhanced.
Patent Information
- Application Number
- CN202421760782.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-24
AI Technical Summary
The cooling equipment on the existing explosion-proof glass production line cannot adjust the blowing angle, resulting in poor cooling effect on different glass products and affecting universality.
A cooling device including a cooling box, a cold air assembly, a transmission box, a cooling assembly and a regulating mechanism is designed. The air guide fan is driven to rotate through the adjustment mechanism, and its inclination angle is adjusted to meet the needs of different glass products.
It has achieved improvement in the cooling effect of different glass products, enhanced the versatility of the equipment, and can adapt to the needs of different glass products.
Smart Images

Figure CN222951281U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of explosion-proof glass, in particular to cooling equipment on an explosion-proof glass production line. Background Art
[0002] Cooling equipment needs to be installed on the explosion-proof glass production line for cooling and lowering the temperature. For example, the Chinese patent document with publication number: CN206626849U discloses a cooling device for a glass production line with high efficiency.
[0003] However, the fan of the above technical solution is in a fixed state and its blowing angle and direction cannot be adjusted. The products on the glass production line have different heights and sizes, which affects the cooling effect on different glass products. Utility Model Content
[0004] The utility model aims to solve the disadvantages of the prior art that the blowing angle cannot be adjusted, which affects the versatility, and proposes a cooling device for an explosion-proof glass production line.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A cooling device for explosion-proof glass production line, comprising:
[0007] The main body of explosion-proof glass production line;
[0008] A cooling box, the cooling box is bolted to the surface of the explosion-proof glass production line body;
[0009] A cold air assembly, the cold air assembly comprises an air inlet pipe, an arc-shaped cover and an air guide cover, the bottom end of the air inlet pipe is connected to the top end of the arc-shaped cover, the bottom end of the arc-shaped cover is connected to the top of the air guide cover, and the bottom of the air guide cover is connected to the opening at the top of the cooling box;
[0010] A transmission case, which is bolted to the rear side of the air scoop;
[0011] The cooling assembly includes a rack, a pinion, a rotating shaft and an air guide fan, the teeth of the rack mesh with the teeth of the pinion, the axis of the pinion is key-connected with the rear end of the rotating shaft, the front end of the rotating shaft is key-connected with the rear side of the air guide fan, and the surface of the air guide fan is hinged with the inside of the air guide cover;
[0012] The adjusting mechanism is connected to the rack and is used to drive the air guide fan to rotate. The air guide fan can be driven to rotate through the transmission of the structure, and the inclination angle of the air guide fan can be adjusted to adapt to the needs of glass products on the main body of the explosion-proof glass production line, facilitate cooling, and enhance versatility.
[0013] As a preferred solution of the utility model, the adjusting mechanism includes a rotating rod, a main bevel gear, a secondary bevel gear and a screw rod, the rotating rod is key-connected with the main bevel gear, the teeth of the main bevel gear are meshed with the teeth of the secondary bevel gear, the axis of the secondary bevel gear is key-connected with the right end of the screw rod, the surface of the screw rod is threadedly connected with the screw hole of the rack, the surface of the rotating rod is key-connected with a handle, the handle can drive the rotating rod to rotate, the rotating rod can drive the main bevel gear to rotate, the main bevel gear can drive the secondary bevel gear to rotate, the secondary bevel gear can drive the screw rod to rotate, and the screw rod can drive the rack to move.
[0014] As a preferred solution of the utility model, the surface of the rotating rod is rotatably sleeved with the inside of the transmission box, both ends of the screw rod are rotatably sleeved with the inside of the transmission box, and the rotating rod is rotatably arranged with the transmission box through a bearing to ensure the stability of the rotating rod rotation.
[0015] As a preferred solution of the utility model, the surface of the rack is slidably connected to a sliding frame, the surface of the sliding frame is connected to the internal bolts of the transmission box, and the rack is slidably arranged with the sliding frame through a sliding rail to guide the rack.
[0016] As a preferred solution of the utility model, the top of the right side of the cooling box is connected to an air outlet pipe, three air outlet pipes are provided, and the air outlet pipes can be connected to equipment such as a heat exchanger to facilitate subsequent use of the hot air.
[0017] As a preferred solution of the utility model, an air guide plate is clamped at the top end of the cooling box, the air guide plate corresponds to the air guide fan, and the air guide plate can disperse and guide the cold air blown out by the air guide fan.
[0018] Beneficial effects:
[0019] 1. The adjustment mechanism can drive the rack to move, the rack can drive the pinion to rotate, the pinion can drive the shaft to rotate, the shaft can drive the air guide fan to rotate, and its angle can be adjusted;
[0020] 2. The cold air enters from the air intake pipe, then enters the arc cover, and then is dispersed into the cooling box by the air guide fan inside the air guide cover to cool the explosion-proof glass production line;
[0021] In the utility model: the air guide fan can be driven to rotate through the transmission of the structure, and the inclination angle of the air guide fan can be adjusted to adapt to the needs of glass products on the main body of the explosion-proof glass production line, facilitate cooling of different glass products, and enhance the versatility of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is an overall three-dimensional diagram of the utility model;
[0023] Figure 2 It is a three-dimensional diagram of the adjustment mechanism of the utility model;
[0024] Figure 3 It is a three-dimensional diagram of the air guide cover of the utility model;
[0025] Figure 4 This is a three-dimensional diagram of the interior of the cooling box of the present invention.
[0026] In the figure: 1. Main body of explosion-proof glass production line; 2. Cooling box; 3. Air inlet pipe; 4. Arc cover; 5. Air guide cover; 6. Transmission box; 7. Rotating rod; 8. Main bevel gear; 9. Sub-bevel gear; 10. Screw; 11. Rack; 12. Pinion; 13. Rotating shaft; 14. Air guide fan; 15. Air outlet pipe; 16. Air guide plate. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.
[0028] Embodiment 1
[0029] Reference Figure 1-Figure 4 , a cooling device on an explosion-proof glass production line, comprising
[0030] Explosion-proof glass production line main body 1;
[0031] A cooling box 2, the cooling box 2 is bolted to the surface of the explosion-proof glass production line body 1;
[0032] A cold air assembly, the cold air assembly comprises an air inlet pipe 3, an arc-shaped cover 4 and an air guide cover 5, the bottom end of the air inlet pipe 3 is connected to the top end of the arc-shaped cover 4, the bottom end of the arc-shaped cover 4 is connected to the top of the air guide cover 5, and the bottom of the air guide cover 5 is connected to the opening at the top of the cooling box 2;
[0033] A transmission box 6, which is bolted to the rear side of the air guide cover 5;
[0034] The cooling assembly includes a rack 11, a pinion 12, a rotating shaft 13 and an air guide fan 14. The teeth of the rack 11 are meshed with the teeth of the pinion 12. The axis of the pinion 12 is key-connected with the rear end of the rotating shaft 13. The front end of the rotating shaft 13 is key-connected with the rear side of the air guide fan 14. The surface of the air guide fan 14 is hinged with the inside of the air guide cover 5.
[0035] The adjusting mechanism is connected to the rack 11 and is used to drive the air guide fan 14 to rotate.
[0036] By means of the above structure: the air guide fan 14 can be driven to rotate through the transmission of the structure, and the inclination angle of the air guide fan 14 can be adjusted to adapt to the needs of glass products on the explosion-proof glass production line body 1, facilitate cooling, and enhance versatility.
[0037] See also Figure 2 The adjusting mechanism includes a rotating rod 7, a main bevel gear 8, a secondary bevel gear 9 and a screw rod 10. The rotating rod 7 is key-connected with the main bevel gear 8. The teeth of the main bevel gear 8 are meshed with the teeth of the secondary bevel gear 9. The axis of the secondary bevel gear 9 is key-connected with the right end of the screw rod 10. The surface of the screw rod 10 is threadedly connected with the screw hole of the rack 11. The surface of the rotating rod 7 is key-connected with a handle. The handle can drive the rotating rod 7 to rotate, the rotating rod 7 can drive the main bevel gear 8 to rotate, the main bevel gear 8 can drive the secondary bevel gear 9 to rotate, the secondary bevel gear 9 can drive the screw rod 10 to rotate, and the screw rod 10 can drive the rack 11 to move.
[0038] See also Figure 3 The surface of the rotating rod 7 is rotatably sleeved with the inside of the transmission box 6, and both ends of the screw rod 10 are rotatably sleeved with the inside of the transmission box 6. The rotating rod 7 is rotatably arranged with the transmission box 6 through a bearing to ensure the stability of the rotation of the rotating rod 7. The screw rod 10 is rotatably arranged with the transmission box 6 through a bearing.
[0039] See also Figure 2 The surface of the rack 11 is slidably connected with a sliding frame, the surface of the sliding frame is connected with the internal bolts of the transmission box 6, and the rack 11 is slidably arranged with the sliding frame through a sliding rail to guide the rack 11.
[0040] See also Figure 4 The top of the right side of the cooling box 2 is connected to an air outlet pipe 15, and three air outlet pipes 15 are provided. The air outlet pipes 15 can be connected to equipment such as a heat exchanger to facilitate the subsequent use of the hot air.
[0041] See also Figure 4 An air guide plate 16 is clamped at the top of the cooling box 2 , and the air guide plate 16 corresponds to the air guide fan 14 . The air guide plate 16 can disperse and guide the cold air blown out by the air guide fan 14 .
[0042] Embodiment 2
[0043] The difference between this embodiment and the first embodiment is that the rotating rod 7, the main bevel gear 8, the secondary bevel gear 9 and the screw rod 10 are replaced by an electric push rod, which is connected to the rack 11. The electric push rod can drive the rack 11 to move, but it still needs to use a power supply and has poor stability. Therefore, the present application preferably uses the rotating rod 7, the main bevel gear 8, the secondary bevel gear 9 and the screw rod 10.
[0044] It should be noted that the specific type of air guide fan 14 to be used is selected by the relevant technical personnel familiar with the field, and the above-mentioned air guide fan 14 belongs to the existing technology and will not be elaborated in this solution.
[0045] The main body 1 of the explosion-proof glass production line adopts the existing technology and can adopt the main structure of patent application number 202211727109.6.
[0046] The operating steps of the utility model are as follows: the glass products produced by the explosion-proof glass production line body 1 are cooled by the cooling box 2, the top end of the air inlet pipe 3 is connected to the cold air source, the air inlet pipe 3 can introduce the cold air into the arc cover 4, the arc cover 4 can introduce the cold air into the air guide cover 5, the surface key of the rotating rod 7 is connected with a handle, the handle can drive the rotating rod 7 to rotate, the rotating rod 7 can drive the main bevel gear 8 to rotate, the main bevel gear 8 can drive the secondary bevel gear 9 to rotate, the secondary bevel gear 9 can drive the screw rod 10 to rotate, the screw rod 10 can drive the rack 11 to move, the rack 11 can drive the pinion 12 to rotate, the pinion 12 can drive the rotating shaft 13 to rotate, the rotating shaft 13 can drive the air guide fan 14 to rotate, adjust the angle of the air guide fan 14, turn on the power of the air guide fan 14, and the air guide fan 14 can generate airflow.
[0047] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A cooling device for explosion-proof glass production line, characterized in that: include Explosion-proof glass production line main body (1); A cooling box (2), the cooling box (2) is bolted to the surface of the explosion-proof glass production line body (1); A cold air component, the cold air component comprising an air intake pipe (3), an arc-shaped cover (4) and an air guide cover (5), the bottom end of the air intake pipe (3) being connected to the top end of the arc-shaped cover (4), the bottom end of the arc-shaped cover (4) being connected to the top of the air guide cover (5), and the bottom of the air guide cover (5) being connected to an opening at the top of the cooling box (2); A transmission box (6), the transmission box (6) is bolted to the rear side of the air guide cover (5); A cooling assembly, the cooling assembly comprising a rack (11), a pinion (12), a rotating shaft (13) and an air guide fan (14), the teeth of the rack (11) meshing with the teeth of the pinion (12), the axis of the pinion (12) being key-connected with the rear end of the rotating shaft (13), the front end of the rotating shaft (13) being key-connected with the rear side of the air guide fan (14), and the surface of the air guide fan (14) being hinged with the inside of the air guide cover (5); An adjusting mechanism is connected to the rack (11), and is used to drive the air guide fan (14) to rotate.
2. The cooling device for explosion-proof glass production line according to claim 1 is characterized in that: The adjusting mechanism comprises a rotating rod (7), a main bevel gear (8), a secondary bevel gear (9) and a screw rod (10); the rotating rod (7) is key-connected with the main bevel gear (8); the teeth of the main bevel gear (8) are meshed with the teeth of the secondary bevel gear (9); the axis of the secondary bevel gear (9) is key-connected with the right end of the screw rod (10); and the surface of the screw rod (10) is threadedly connected with the screw hole of the rack (11).
3. The cooling device for explosion-proof glass production line according to claim 2 is characterized in that: The surface of the rotating rod (7) is rotatably sleeved with the interior of the transmission box (6), and both ends of the screw rod (10) are rotatably sleeved with the interior of the transmission box (6).
4. The cooling device for explosion-proof glass production line according to claim 1 is characterized in that: The surface of the rack (11) is slidably connected to a sliding frame, and the surface of the sliding frame is connected to internal bolts of the transmission box (6).
5. The cooling device for explosion-proof glass production line according to claim 1 is characterized in that: The top of the right side of the cooling box (2) is connected to an air outlet pipe (15), and three air outlet pipes (15) are provided.
6. The cooling device for explosion-proof glass production line according to claim 1 is characterized in that: An air guide plate (16) is clamped at the top end of the cooling box (2), and the air guide plate (16) corresponds to the air guide fan (14).
Citation Information
Patent Citations
Glass production line and on-line monitoring control method of glass production line
CN116081933A
High -efficient refrigerated glass production line cooling device
CN206626849U