10l blow molding machine

10l blow molding machine

Leshan Intelligent Equipment Corp.,Ltd was founded in 1995 and is a professional supplier specializing in the design and production of blow molding machines. We manufacture injection molding and blow molding systems, including Irregular shape product blow molding machine,Milk bottle blow molding machine,Cleaning bottle blow molding machine,Blowing Mould & Injection Mould,Daily chemistry bottle blow molding machine,Food bottle blow molding machine,PET Machine,Chemical barrel blow molding machine,multi-layer coextrusion blow molding machine,Auxiliary machine and other related products. We have introduced Germanic technology 3D scanners specifically designed for mold design, and utilizing our strong technical capabilities, we have been developing various plastic molding and processing equipment.

We are still adopting international standards and ISO9001:2012 quality management system in production. As we continue to improve through planning, summarization, and innovation, our products sell well nationwide and are exported to countries such as Russia, Vietnam, Poland, and Laos,Czech Republic,Saint Pierre and Miquelon,Comoros. We also adhere to the business philosophy of seeking victory through quality and seeking leadership through integrity.



Parameter Information
Product Name 10l blow molding machine
Brand Name Leshan
Place of Origin Foshan,Guangdong,China
PLC Brand Siemens
Core Components PLC,Gear,Bearing,Gearbox,Pump,Motor...etc
Warranty 1year
Plastic Processed PE,PVC,Polystyrene,EVA,PA,ABS,HDPE...etc
Application Bottle
Port ShunDe/GuangZhou/ShenZhen China
MOQ 1 Set
Export Country Russia, Australia, Poland,Wallis and Futuna,Bahrain,Central African Republic,Mexico...etc
Export region Europe,America,Oceania...
Certification ISO 9001,CE...etc
Automatic Yes
Screw L/D Ratio 24
Packaging Details Standard exporting machine packing with plastic film
Color Customized
Accumulator Capacity(L) 100 L
Service Video technical support...
Supply Ability 500 Set/Sets per Month
Lead time (days) 70 (To be negotiated)

  Please note: The above table data is for reference only. For specific information, please contact us.

 



10l blow molding machine also has the characteristics of high efficiency, energy saving and environmental protection. During the manufacturing process, the blow molding machine can reduce energy consumption and the generation of emissions by recycling waste gas and waste liquid, thereby achieving the purpose of energy saving and emission reduction.

In addition, the blow molding machine can also use multi-layer molds to provide products with composite properties and increase the added value of the product.

 



10l blow molding machine---FAQs Guide

1.What is the working principle of a blow molding machine?

We focus on innovation and continuous improvement to maintain a competitive advantage.
The working principle of a blow molding machine involves the use of compressed air to inflate a molten plastic tube or parison inside a mold cavity. This creates a hollow shape that is then cooled and solidified to form a plastic product.
The process begins with the plastic material, usually in the form of pellets, being fed into a hopper and then melted in an extruder. The molten plastic is then forced into a long tube or parison, which is then clamped between two halves of a mold.
Next, a nozzle is inserted into the parison and compressed air is blown into it, causing the plastic to expand and take the shape of the mold cavity. The mold is cooled to solidify the plastic, and then the mold halves are separated, and the finished product is ejected.
The blow molding process can be either extrusion blow molding or injection blow molding, depending on the type of machine used. In extrusion blow molding, the parison is formed by extruding the molten plastic through a die, while in injection blow molding, the parison is formed by injecting the molten plastic into a mold cavity.
The working principle of a blow molding machine is based on the principles of thermodynamics and fluid mechanics, where the expansion of compressed air inside the parison creates pressure that forces the plastic to take the shape of the mold. This process allows for the production of hollow plastic products with complex shapes and sizes.

2.How to solve the malfunction of the 10l blow molding machine?

As one of the top 10l blow molding machine manufacturers in China, we take this very seriously.
1. Check the power supply: Make sure the machine is properly connected to a stable power source. If there is a power surge or fluctuation, it can cause the machine to malfunction.
2. Inspect the air supply: The blow molding machine requires a steady supply of compressed air to function properly. Check the air compressor and make sure it is providing enough pressure and volume.
3. Check the temperature settings: The temperature of the machine's heating elements must be set correctly for the plastic to melt and form properly. Make sure the temperature settings are appropriate for the type of plastic being used.
4. Clean and lubricate the machine: Over time, dust, debris, and residue can build up on the machine, causing it to malfunction. Clean and lubricate all moving parts to ensure smooth operation.
5. Check for worn or damaged parts: Inspect all parts of the machine for wear and tear. Replace any damaged or worn parts to prevent further malfunctions.
6. Adjust the mold: If the product being produced is not forming correctly, the mold may need to be adjusted. Make sure the mold is properly aligned and tightened.
7. Consult the manual: If the above steps do not solve the problem, consult the machine's manual for troubleshooting tips and solutions specific to your machine.
8. Call a professional: If the problem persists, it may be best to call a professional technician to diagnose and repair the machine. Attempting to fix complex issues without proper knowledge and training can cause further damage.

3.What is a blow molding machine?

We maintain a stable growth through reasonable capital operations, focus on industry development trends and cutting -edge technologies, and focus on product quality and safety performance.
A blow molding machine is a manufacturing machine used to produce hollow plastic parts or containers by inflating a heated plastic tube or parison inside a mold until it takes the shape of the mold cavity. The process involves melting plastic resin and extruding it into a hollow tube, which is then clamped into a mold and inflated with compressed air until it conforms to the shape of the mold.
This process is commonly used to produce bottles, containers, and other hollow plastic products. Blow molding machines can be either extrusion blow molding machines or injection blow molding machines, depending on the method used to create the parison.

4.What energy-saving measures are there for 10l blow molding machine?

I have a comprehensive after -sales service system, which can pay attention to market trends in time and adjust our strategy in a timely manner.
1. Use energy-efficient motors: Switching to energy-efficient motors can significantly reduce the energy consumption of a blow molding machine. These motors use less electricity and produce less heat, resulting in lower energy costs.
2. Optimize air pressure: Adjusting the air pressure to the minimum required level can reduce the energy consumption of the compressor and save energy.
3. Use variable frequency drives (VFDs): VFDs can adjust the speed of the motor to match the required output, reducing energy consumption and wear on the motor.
4. Insulate heating elements: Insulating the heating elements of the machine can reduce heat loss and improve energy efficiency.
5. Use LED lighting: Replacing traditional lighting with energy-efficient LED lights can reduce energy consumption and save on electricity costs.
6. Regular maintenance: Proper maintenance of the machine, including cleaning and lubrication, can improve its efficiency and reduce energy consumption.
7. Implement a shutdown schedule: Setting a shutdown schedule for the machine when it is not in use can save energy and reduce wear and tear on the machine.
8. Use energy-efficient materials: Using energy-efficient materials, such as lightweight plastics, can reduce the energy required to produce and transport the products.
9. Implement a heat recovery system: A heat recovery system can capture and reuse the heat generated during the blow molding process, reducing the energy needed to heat the material.
10. Invest in a high-efficiency machine: Upgrading to a newer, more energy-efficient blow molding machine can result in significant energy savings in the long run.

What energy-saving measures are there for 10l blow molding machine?

5.What types of blow molding machines are there?

We should have a stable supply chain and logistics capabilities, and provide customers with high -quality, low -priced 10l blow molding machine products.
1. Extrusion blow molding machine: This type of machine uses a continuous extrusion process to produce hollow plastic products, such as bottles, containers, and tanks.
2. Injection blow molding machine: This machine combines the processes of injection molding and blow molding to produce small, complex, and precise plastic products, such as medical devices and electronic components.
3. Stretch blow molding machine: This machine uses a two-stage process to produce high-quality, lightweight bottles and containers from PET (polyethylene terephthalate) material.
4. Reheat stretch blow molding machine: This type of machine is similar to the stretch blow molding machine, but it uses preforms (partially formed bottles) instead of raw material to produce bottles and containers.
5. Rotational blow molding machine: This machine uses a rotating mold to produce large, hollow plastic products, such as tanks, drums, and toys.
6. Shuttle blow molding machine: This machine has a shuttle system that moves the mold back and forth, allowing for the production of larger and more complex products.
7. Injection stretch blow molding machine: This machine combines the processes of injection molding and stretch blow molding to produce high-quality, lightweight bottles and containers from PET material.
8. Accumulator blow molding machine: This machine uses an accumulator to store molten plastic, which is then used to produce large and complex products, such as automotive parts and industrial containers.
9. Continuous extrusion blow molding machine: This machine uses a continuous extrusion process to produce long, tubular plastic products, such as pipes and tubes.
10. Co-extrusion blow molding machine: This machine uses multiple extruders to produce products with multiple layers, allowing for the production of complex and multi-functional products.

6.How to control temperature and pressure during the production process of 10l blow molding machine?

We focus on our customers' needs and strive to meet their expectations, so we take this very seriously.
1. Use a temperature controller: A temperature controller is an essential tool for controlling the temperature during the production process of blow molding machines. It allows you to set and maintain the desired temperature for the different stages of the process.
2. Monitor the temperature regularly: It is important to monitor the temperature of the machine regularly to ensure that it is within the desired range. This can be done using a thermometer or a temperature sensor.
3. Adjust the temperature settings: Depending on the type of material being used and the stage of the production process, the temperature settings may need to be adjusted. For example, a higher temperature may be required for melting the plastic, while a lower temperature may be needed for cooling the molded product.
4. Use a cooling system: To control the temperature during the cooling stage, a cooling system can be used. This can be in the form of a water chiller or a cooling tower, which helps to maintain a consistent temperature for the molded product.
5. Use a pressure regulator: A pressure regulator is used to control the pressure inside the machine. This is important for ensuring that the plastic is evenly distributed and that the final product has the desired shape and thickness.
6. Monitor the pressure: Just like temperature, it is important to monitor the pressure inside the machine regularly. This can be done using a pressure gauge or a pressure sensor.
7. Adjust the pressure settings: Depending on the type of material and the desired product, the pressure settings may need to be adjusted. This can be done manually or through the use of an automated pressure control system.
8. Use safety valves: Safety valves are important for maintaining the pressure within safe limits. They help to prevent any accidents or damage to the machine.
9. Train operators: It is important to train operators on how to control the temperature and pressure during the production process. They should be familiar with the different settings and know how to make adjustments when necessary.
10. Regular maintenance: Regular maintenance of the machine is crucial for ensuring that the temperature and pressure control systems are functioning properly. This will help to prevent any unexpected issues during the production process.

7.What are the main components of a 10l blow molding machine?

We have rich industry experience and professional knowledge, and have strong competitiveness in the market.
1. Extruder: This is the main component of a blow molding machine, which melts and forms the plastic material into a parison (hollow tube).
2. Die Head: The die head is responsible for shaping the parison into the desired shape and size.
3. Clamping Unit: The clamping unit holds the mold in place and provides the necessary pressure for the blowing process.
4. Blow Pin: The blow pin is used to inflate the parison and shape it against the mold.
5. Cooling System: The cooling system helps to cool down the plastic material and solidify it into the desired shape.
6. Control System: The control system is responsible for controlling and monitoring the various parameters of the blow molding process, such as temperature, pressure, and speed.
7. Mold: The mold is the cavity into which the plastic material is blown and takes the shape of the final product.
8. Ejector: The ejector removes the finished product from the mold after the blowing process is complete.
9. Hydraulic System: The hydraulic system provides the necessary power and pressure for the various movements of the machine.
10. Electrical System: The electrical system controls the various motors and sensors of the machine.
11. Air Compressor: The air compressor supplies the compressed air needed for the blowing process.
12. Chiller: The chiller is used to cool down the extruder and other components of the machine to maintain the required temperature.
13. Conveyor System: The conveyor system moves the finished products out of the machine for further processing or packaging.

8.What is the difference between traditional 10l blow molding machine and fully computer-controlled blow molding machines?

We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.
Traditional blow molding machines are operated manually by a person, while fully computer-controlled blow molding machines are operated by a computer program. This means that traditional blow molding machines require more human labor and supervision, while fully computer-controlled machines can run automatically with minimal human intervention.
Additionally, traditional blow molding machines may have limited capabilities and may only be able to produce simple shapes, while fully computer-controlled machines can produce more complex and precise shapes. This is because the computer program can control the machine's movements and parameters with greater accuracy and consistency.
Furthermore, fully computer-controlled blow molding machines often have advanced features such as real-time monitoring, data collection, and automatic adjustments, which can improve efficiency and quality control.
Overall, the main difference between traditional blow molding machines and fully computer-controlled machines is the level of automation and precision in the production process.

What is the difference between traditional 10l blow molding machine and fully computer-controlled blow molding machines?

9.How to control the energy consumption of 10l blow molding machine?

We are a professional 10l blow molding machine company dedicated to providing high quality products and services.
1. Use energy-efficient machines: When purchasing blow molding machines, opt for models that are energy-efficient and have a high energy star rating. These machines are designed to consume less energy while still maintaining high production efficiency.
2. Regular maintenance: Regular maintenance of the machines is crucial in controlling energy consumption. This includes cleaning and lubricating the machines, checking for leaks, and replacing worn-out parts. A well-maintained machine will operate more efficiently and consume less energy.
3. Optimize production processes: Analyze the production processes and identify areas where energy consumption can be reduced. For example, reducing the amount of air pressure used in the blowing process can significantly reduce energy consumption.
4. Use energy-saving features: Many blow molding machines come with energy-saving features such as automatic shut-off, idle mode, and variable speed drives. These features can help reduce energy consumption when the machine is not in use or operating at a lower speed.
5. Monitor energy usage: Install energy meters to monitor the energy consumption of the machines. This will help identify areas where energy is being wasted and allow for adjustments to be made to reduce consumption.
6. Use energy-efficient materials: The type of material used in the blow molding process can also affect energy consumption. Opt for materials that require less energy to heat and mold, such as lightweight plastics.
7. Implement energy management systems: Consider implementing an energy management system that can track and analyze energy usage in real-time. This will help identify patterns and areas for improvement.
8. Train employees: Proper training of employees on the operation and maintenance of the machines can help reduce energy consumption. They should be aware of energy-saving practices and encouraged to follow them.
9. Turn off machines when not in use: Make it a practice to turn off the machines when they are not in use, such as during breaks or at the end of the day. This will help save energy and reduce unnecessary wear and tear on the machines.
10. Regularly review and update energy-saving strategies: Regularly review and update your energy-saving strategies to ensure they are still effective. As technology advances, new energy-saving techniques may become available, so it is essential to stay informed and make necessary changes.



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