MOQ: | 1 |
Price: | $50000 |
Standard Packaging: | Pallet |
Delivery Period: | 30days |
Payment Method: | T/T,L/C |
Supply Capacity: | 30sets/month |
The batch-off cooler is usually paired with internal mixers, rubber roll-head extruders or rubber sheeting mills. The rubber cooler dips rubber sheet in liquid where it is cooled and then dried. The sheets are then transported and piled on the batch-off cooler.
Type:
1: Overhead type(hanging type): typically features high space utilization. The rubber sheets are suspended by a hanging device and move within the cooling area, providing good cooling effects, suitable for cooling larger rubber sheets.
2: Floor-standing type(floor-standing type): placed directly on the ground, with a relatively compact structure, making installation and maintenance convenient, suitable for rubber production enterprises of different scales.
Working principle
Feeding: The rubber sheets extruded from the extruder are conveyed to the cooling machine via a conveyor belt or other conveying systems.
Roller Transfer: The rubber sheets move on a series of rollers inside the cooling machine, which help to maintain the tension of the rubber sheets, allowing them to move smoothly during the cooling process.
Water Cooling: Water plays a crucial role in the cooling process. During the cooling process, the rubber sheets are partially or fully immersed in a water bath, where they absorb heat from the water to achieve cooling.
Temperature Control: Precisely controlling the temperature and flow rate of the water is a key parameter in the cooling process. By adjusting these parameters, the specific rubber compounds can be cooled at the appropriate rate.
Cooling chamber cooling: The film cooler usually consists of multiple cooling chambers, where the rubber sheets gradually reduce in temperature and solidify inside the chambers.
Structural composition
Transport device: Includes feed conveyor and discharge conveyor, responsible for transporting the rubber sheets into the cooler and then out after cooling.
Cooling drum: The rubber sheets move on the cooling drum, and the drum is usually equipped with cooling water inside to enhance the cooling effect.
Cooling chamber: It is equipped with cooling pipes, nozzles, and other devices, which can cool the rubber sheets through spraying water or misting.
Temperature control system: It is equipped with temperature sensors and controllers, which can monitor and regulate the temperature during the cooling process in real time to ensure the stability of the cooling effect.
Drying device: After the rubber sheets are cooled, it is used to remove the moisture on the surface of the rubber sheets to prevent them from sticking together.
Features
Efficient cooling: capable of rapidly lowering the temperature of rubber sheets to the desired range, improving production efficiency and shortening production cycles.
Temperature control is precise: it can precisely control the cooling temperature according to different rubber materials and production process requirements, ensuring the stability of rubber product quality.
High degree of automation: equipped with an automated control system, it can achieve automated operation of material feeding, cooling, and material discharge processes, reducing manual operations and improving production consistency and reliability.
Strong versatility: it can be applied to the cooling of various types and specifications of rubber sheets, with strong versatility and flexibility.
Application fields
Tire manufacturing: Used in the tire production process to cool and solidify the rubber materials of the tire tread, sidewall, etc., ensuring that the tires have good physical properties and dimensional stability.
Rubber board manufacturing: For producing rubber boards used in industrial, construction, conveyor belt, and other fields, the calendering cooling machine can quickly cool the rubber board after shaping, meeting the required hardness and thickness requirements.
Automotive parts manufacturing: Rubber sealing parts, shock absorbers, and other components in cars also require cooling treatment of rubber materials during production using the calendering cooling machine to ensure the quality and performance of the components.
Shoe material manufacturing: By cooling rubber sheets with a film cooler in the production of rubber soles and other shoe materials, the sole can achieve the appropriate hardness and flexibility.
Technical Parameters
Max. width of the sheet (MM) | 900 | 600 | 800 |
Thickness of the rubber sheet(MM) | 6-12 | 4-10 | 4-10 |
Conveying speed (M/MIN) | 4-40 | 3-24 | 3-35 |
Max. pendant length of hanging sheet(MM) | 1400 | 1400 | 1400 |
Number of cooling fans (Sets) | 18-26 | 12 | 20-32 |
Temperature over room temperature after rubber sheet cooling ( ℃) | 5 | 10 | 15 |
Swing sheet length(m) | 1-1.3 | 1-1.3 | 1-1.3 |
Compressed air pressure | 0.5-0.7 | 0.6-0.7 | 0.6-0.7 |
Total capacity of power supply | 34--50 | 14 | 25-34 |
MOQ: | 1 |
Price: | $50000 |
Standard Packaging: | Pallet |
Delivery Period: | 30days |
Payment Method: | T/T,L/C |
Supply Capacity: | 30sets/month |
The batch-off cooler is usually paired with internal mixers, rubber roll-head extruders or rubber sheeting mills. The rubber cooler dips rubber sheet in liquid where it is cooled and then dried. The sheets are then transported and piled on the batch-off cooler.
Type:
1: Overhead type(hanging type): typically features high space utilization. The rubber sheets are suspended by a hanging device and move within the cooling area, providing good cooling effects, suitable for cooling larger rubber sheets.
2: Floor-standing type(floor-standing type): placed directly on the ground, with a relatively compact structure, making installation and maintenance convenient, suitable for rubber production enterprises of different scales.
Working principle
Feeding: The rubber sheets extruded from the extruder are conveyed to the cooling machine via a conveyor belt or other conveying systems.
Roller Transfer: The rubber sheets move on a series of rollers inside the cooling machine, which help to maintain the tension of the rubber sheets, allowing them to move smoothly during the cooling process.
Water Cooling: Water plays a crucial role in the cooling process. During the cooling process, the rubber sheets are partially or fully immersed in a water bath, where they absorb heat from the water to achieve cooling.
Temperature Control: Precisely controlling the temperature and flow rate of the water is a key parameter in the cooling process. By adjusting these parameters, the specific rubber compounds can be cooled at the appropriate rate.
Cooling chamber cooling: The film cooler usually consists of multiple cooling chambers, where the rubber sheets gradually reduce in temperature and solidify inside the chambers.
Structural composition
Transport device: Includes feed conveyor and discharge conveyor, responsible for transporting the rubber sheets into the cooler and then out after cooling.
Cooling drum: The rubber sheets move on the cooling drum, and the drum is usually equipped with cooling water inside to enhance the cooling effect.
Cooling chamber: It is equipped with cooling pipes, nozzles, and other devices, which can cool the rubber sheets through spraying water or misting.
Temperature control system: It is equipped with temperature sensors and controllers, which can monitor and regulate the temperature during the cooling process in real time to ensure the stability of the cooling effect.
Drying device: After the rubber sheets are cooled, it is used to remove the moisture on the surface of the rubber sheets to prevent them from sticking together.
Features
Efficient cooling: capable of rapidly lowering the temperature of rubber sheets to the desired range, improving production efficiency and shortening production cycles.
Temperature control is precise: it can precisely control the cooling temperature according to different rubber materials and production process requirements, ensuring the stability of rubber product quality.
High degree of automation: equipped with an automated control system, it can achieve automated operation of material feeding, cooling, and material discharge processes, reducing manual operations and improving production consistency and reliability.
Strong versatility: it can be applied to the cooling of various types and specifications of rubber sheets, with strong versatility and flexibility.
Application fields
Tire manufacturing: Used in the tire production process to cool and solidify the rubber materials of the tire tread, sidewall, etc., ensuring that the tires have good physical properties and dimensional stability.
Rubber board manufacturing: For producing rubber boards used in industrial, construction, conveyor belt, and other fields, the calendering cooling machine can quickly cool the rubber board after shaping, meeting the required hardness and thickness requirements.
Automotive parts manufacturing: Rubber sealing parts, shock absorbers, and other components in cars also require cooling treatment of rubber materials during production using the calendering cooling machine to ensure the quality and performance of the components.
Shoe material manufacturing: By cooling rubber sheets with a film cooler in the production of rubber soles and other shoe materials, the sole can achieve the appropriate hardness and flexibility.
Technical Parameters
Max. width of the sheet (MM) | 900 | 600 | 800 |
Thickness of the rubber sheet(MM) | 6-12 | 4-10 | 4-10 |
Conveying speed (M/MIN) | 4-40 | 3-24 | 3-35 |
Max. pendant length of hanging sheet(MM) | 1400 | 1400 | 1400 |
Number of cooling fans (Sets) | 18-26 | 12 | 20-32 |
Temperature over room temperature after rubber sheet cooling ( ℃) | 5 | 10 | 15 |
Swing sheet length(m) | 1-1.3 | 1-1.3 | 1-1.3 |
Compressed air pressure | 0.5-0.7 | 0.6-0.7 | 0.6-0.7 |
Total capacity of power supply | 34--50 | 14 | 25-34 |