Product Name: Injection Molding Machine
Product Type: Hydraulic/ Electric/ Hybrid
Capacity: Varies from 50 to 5000 tons
Material Compatibility: Plastic, Rubber, Metal
Injection System: Single/ Multi-stage
Clamping Force: Varies from 50 to 5000 tons
Injection Rate: 100g-10kg/s
Mold Opening Stroke: Varies from 200 to 2000mm
Max Daylight: Varies from 500 to 4000mm
Platen Size: Varies from 400x400mm to 5000x5000mm
Control System: PLC or computer-controlled
Power Supply: 3-phase AC 380V/50Hz
Cooling Method: Water/oil cooling
Injection Pressure: Varies from 30 to 300MPa
Max Temperature: Varies from 150 to 400℃
Application: Manufacturing various plastic, rubber, and metal products such as automotive parts, household appliances, and electronic components.
Plastic Processed: | PP, PC | Condition: | New |
Style: | VERTICAL | Ejector Stroke(mm): | 666 mm . |
Ejector Force(kN): | 130kN | Theoretical Shot Volume(cm2): | 373 cm³ |
Injection Rate (g/S): | 140 g/s | Machine Type: | Hydraulic |
Injection Weight (9): | 180 g | Screw diameter (mm): | 625 mm |
Distance between Tie Bars: | 900*405 | Weight (KG): | 498 kg |
Type: | Tube Head Injection | Place of Origin: | Guangdong, China |
Open Stroke(mm): | 166 mm | Model Number: | HM105-25 |
Brand Name: | HOMMAR | Power (kW): | 364 KW |
Warranty: | 2 years | Key Selling Points: | Automatic |
Applicable Industries: | Manufacturing Plant | Showroom Location: | None |
Marketing Type: | Other | Machinery Test Report: | Provided |
Video outgoing-inspection: | Provided | Warranty of core components: | 1 Year |
Core Components: | Bearing, Motor, Other | Plastic Type: | Thermoplastic |
After Warranty Service: | Field maintenance and repair service . | Keyword: | ness carbon handlebar Injection machinery |
Molds: | 6sets | Oil Tank Capacity: | 377L |
Product name: | Injection machinery |
1.What are the different sizes of power consumption of injection molding machines?
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Injection molding machines come in a variety of sizes, ranging from small machines that produce less than 5 ounces of product to large machines that produce over 400 ounces of product
The most common sizes are:
- Small (up to 5 ounces)
- Medium (5-100 ounces)
- Large (100-400 ounces)
- Extra-large (over 400 ounces)
2.What training is required for operating an power consumption of injection molding machine?
Our power consumption of injection molding machine products undergo strict quality control to ensure customer satisfaction
Operators of injection molding machines must be trained in the safe and proper operation of the machine
This includes understanding the machine’s safety features, how to set up and adjust the machine, how to troubleshoot and maintain the machine, and how to properly handle and dispose of hazardous materials
Additionally, operators should be trained in the specific processes and materials used in the injection molding process
3.What factors affect the overall cycle time of an power consumption of injection molding machine?
1
Injection pressure: The higher the injection pressure, the faster the cycle time
2
Injection speed: The faster the injection speed, the faster the cycle time
3
Mold temperature: The higher the mold temperature, the faster the cycle time
4
Cooling time: The shorter the cooling time, the faster the cycle time
5
Clamping force: The higher the clamping force, the faster the cycle time
6
Ejection speed: The faster the ejection speed, the faster the cycle time
7
Machine size: The larger the machine size, the faster the cycle time
8
Machine type: Different types of machines have different cycle times
4.About the development history of power consumption of injection molding machine factory
Injection molding machine factory has a long history of development
The first injection molding machine was invented in 1872 by John Wesley Hyatt, an American inventor
He developed the first injection molding machine to produce celluloid billiard balls
In the 1930s, the first fully automatic injection molding machine was developed by James Watson Hendry of the United Kingdom
This machine was capable of producing plastic parts with complex shapes
In the 1950s, the first commercially successful injection molding machine was developed by the German company Krauss-Maffei
This machine was capable of producing parts with complex shapes and high precision
In the 1960s, the first all-electric injection molding machine was developed by the Japanese company Toshiba
This machine was capable of producing parts with high precision and repeatability
In the 1970s, the first microprocessor-controlled injection molding machine was developed by the American company Cincinnati Milacron
This machine was capable of producing parts with high precision and repeatability
In the 1980s, the first two-platen injection molding machine was developed by the German company Demag
This machine was capable of producing parts with complex shapes and high precision
In the 1990s, the first servo-driven injection molding machine was developed by the Japanese company Nissei
This machine was capable of producing parts with high precision and repeatability
In the 2000s, the first multi-component injection molding machine was developed by the German company Arburg
This machine was capable of producing parts with complex shapes and high precision
5.What are the advantages of using an power consumption of injection molding machine?
We have a wide range of power consumption of injection molding machine customer groups and establishes long -term cooperative relationships with partners
The countries we provide services include
1
Cost-Effective: Injection molding is one of the most cost-effective manufacturing processes due to its high production rate and low material waste
2
Versatility: Injection molding machines can be used to produce a wide variety of parts and products with different shapes, sizes, and materials
3
Automation: Injection molding machines are highly automated, allowing for a high degree of repeatability and accuracy
4
Durability: Injection molded parts are highly durable and can withstand extreme temperatures and pressures
5
Efficiency: Injection molding machines are highly efficient, allowing for quick production of large quantities of parts
6.Can an power consumption of injection molding machine be used for large and small scale production?
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Yes, an injection molding machine can be used for both large and small scale production
Injection molding machines are capable of producing parts in a wide range of sizes, from very small to very large
The size of the part being produced is determined by the size of the mold used in the injection molding machine
7.How does the material selection impact the design and production process of an power consumption of injection molding machine?
Material selection for an injection molding machine is critical to the design and production process
The material must be able to withstand the high temperatures and pressures of the injection molding process, as well as the wear and tear of the machine components
The material must also be able to withstand the corrosive effects of the molten plastic
Additionally, the material must be able to provide the necessary strength and rigidity to ensure the machine operates safely and efficiently
The material must also be able to provide the necessary thermal conductivity to ensure the molten plastic is evenly distributed throughout the mold
Finally, the material must be able to provide the necessary lubricity to ensure the machine components move smoothly and efficiently
8.Are there any safety precautions that need to be taken when operating an power consumption of injection molding machine?
We focus on teamwork and communication to achieve common goals, We attach great importance to this detail
Yes, there are several safety precautions that should be taken when operating an injection molding machine
These include:
1
Wear appropriate safety gear such as safety glasses, gloves, and hearing protection
2
Make sure the machine is properly grounded and all electrical connections are secure
3
Ensure that the machine is properly lubricated and all moving parts are in good working order
4
Keep the area around the machine clean and free of debris
5
Make sure the machine is properly guarded and all safety devices are in place
6
Make sure the machine is operated in accordance with the manufacturer’s instructions
7
Make sure all operators are properly trained and understand the safety procedures
8
Make sure the machine is inspected regularly for any signs of wear or damage
9
Make sure the machine is shut off and unplugged when not in use
9.Is it possible to recycle materials used in injection molding?
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Your OEM or ODM order design we have a complete confidentiality system
Yes, it is possible to recycle materials used in injection molding
Many injection molders have implemented recycling programs to reduce waste and increase efficiency
The most common materials used in injection molding are thermoplastics, which can be recycled and reused
10.What is the role of molds in controlling the temperature and pressure distribution in an power consumption of injection molding machine?
Molds play an important role in controlling the temperature and pressure distribution in an injection molding machine
The mold is designed to provide a uniform temperature and pressure distribution throughout the mold cavity, which helps to ensure that the plastic material is evenly distributed and that the finished product has a consistent shape and quality
The mold also helps to regulate the flow of the molten plastic material, which helps to ensure that the plastic is evenly distributed and that the finished product has a consistent shape and quality
11.How has automation affected the injection molding industry?
We are centered on customers and always pay attention to customers' needs for power consumption of injection molding machine products
Automation has had a major impact on the injection molding industry
Automation has allowed for increased production speeds, improved product quality, and reduced labor costs
Automation has also enabled injection molders to produce more complex parts with greater accuracy and repeatability
Automation has also allowed for improved safety, as machines can be programmed to operate with fewer risks to workers
Finally, automation has allowed injection molders to reduce their energy consumption and waste, leading to a more sustainable production process
12.About power consumption of injection molding machine origin
Injection molding machines were first developed in the 1930s and were used to produce plastic parts for the automotive industry
The first injection molding machine was patented by John Wesley Hyatt in 1872
The first commercial injection molding machine was developed in the early 1950s by the American company Van Dorn
This machine was capable of producing plastic parts for a variety of industries
Since then, injection molding machines have become increasingly sophisticated and are now used to produce a wide variety of plastic products
13.What is the role of the power consumption of injection molding machine operator?
We should have a stable supply chain and logistics capabilities, and provide customers with high -quality, low -priced power consumption of injection molding machine products
The injection molding machine operator is responsible for setting up, operating, and maintaining the injection molding machine
This includes monitoring the machine's performance, making necessary adjustments, and troubleshooting any issues that may arise
The operator is also responsible for ensuring that the product meets quality standards and is produced in a timely manner
14.About power consumption of injection molding machine inventory
Injection molding machine inventory is a list of all the injection molding machines that are currently in use or available for purchase
It includes information about the manufacturer, model, size, and other specifications of the machine
It also includes the current price of the machine and any discounts that may be available
The inventory can be used to compare different machines and find the best one for a particular application
15.About power consumption of injection molding machine overseas warehouse
Injection molding machine overseas warehouse is a service provided by many companies that specialize in the manufacture and distribution of injection molding machines
This service allows customers to purchase injection molding machines from overseas warehouses, which can be located in different countries
This service is beneficial for customers who need to purchase injection molding machines quickly and without the hassle of dealing with international shipping and customs regulations
The injection molding machine overseas warehouse service also allows customers to purchase injection molding machines at a discounted price, as the cost of shipping and customs fees are often included in the purchase price
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