Vertical Injection Moulding Machine
VR
  • Product Details
Hommar understands the importance of providing high-quality plastic bottle manufacturing solutions for a variety of applications. Whether you are in the beverage industry, personal care industry, or need bottles for home use, we have the expertise and capabilities to meet your needs. Our experienced team will work closely with you to fully understand your specific requirements. We'll take your brand identity, product specifications, and any other considerations into consideration to design a custom bottle solution that perfectly matches your vision. Hommar is committed to sustainable development and environmentally friendly practices. As part of our efforts, Hommar is also working to incorporate recycled materials into our manufacturing processes and optimize energy consumption.

By choosing Hommar plastic machinery, you can be confident that you are making an environmentally responsible choice. Experience efficiency and excellence with our comprehensive plastic bottle production services. We are your ultimate partner.




Condition
New
Showroom Location
None
Style
VERTICAL
Warranty of core components
1 Year
Injection Rate (g/s)
120 g/s
Core Components
Bearing, Motor, Pump, Gear
Machine Type
Hydraulic
Plastic Processed
LSR
Injection Weight (g)
475 g
Ejector Stroke(mm)
102 mm
Weight (KG)
841 kg
Ejector Force(kN)
38 kN
Place of Origin
China
Theoretical Shot Volume(cm3)
470 cm3
Warranty
1 Year
Screw Speed (rpm)
0-275rpm
Key Selling Points
Injection Molding Machine
Screw diameter (mm)
58 mm
Applicable Industries

Hotels, Garment Shops, Building Material Shops,

Manufacturing Plant, Machinery Repair Shops,

Food & Beverage Factory, Home Use, Retail,

Construction works , Energy & Mining, Advertising

Company

Distance between Tie Bars
860x 420mm
Type
Tube Head Injection
Open Stroke(mm)
254 mm
Brand Name
HommarPower (kW)
23.9 kW
Plastic Type
Thermoplastic
Transport Package
Customer's country
Voltage
380V/220/415V
Language
According to customer's country
Automatic
semi-auto
Nozzle Projecting Template Size
≥47
Machine Color
White and red
After-sales Service Provided
Video technical support
Certification
CE IS09001
Distance between Tie Bars
860x 420mm
Quantity (sets)
> 1
Lead time (days)
To be negotiated










injection molding machine control retrofit FAQs Guide. Welcome to our complete guide on injection molding machine control retrofit – the versatile and efficient industrial equipment used for the production of a wide range of plastic products. injection molding machine control retrofit are an essential part of modern manufacturing processes, offering high precision, speed, and repeatability. With its ability to produce complex and intricate shapes, this technology has revolutionized the way plastic products are manufactured. we will explore the working principle, components, applications, and benefits of using an injection molding machine control retrofit. From automotive and medical devices to household items and consumer goods, injection molding machine control retrofit play a vital role in shaping the products we use in our daily lives. Join us on this journey to discover the world of injection molding machine control retrofits and their significance in the manufacturing world.
1.About injection molding machine control retrofit technology
2.What are the different sizes of injection molding machine control retrofits?
3.How does the rate of injection affect the final product?
4.About injection molding machine control retrofit MOQ
5.Can an injection molding machine control retrofit handle high production volumes?
6.What are the energy consumption levels of different types of injection molding machine control retrofits?
7.About the development history of injection molding machine control retrofit factory
8.How important is cooling time in the injection molding process?
9.About injection molding machine control retrofit production skills training
10.About injection molding machine control retrofit origin
11.Are there any safety precautions that need to be taken when operating an injection molding machine control retrofit?
12.What are the different types of injection molding techniques?
13.How do temperature and humidity affect the operation of an injection molding machine control retrofit?
14.How has technology improved the features and capabilities of modern injection molding machine control retrofits?
15.How does the initial cost of an injection molding machine control retrofit compare to its long-term operating costs?
16.What are the advantages of using an injection molding machine control retrofit?

1.About injection molding machine control retrofit technology

Injection molding machine technology is a process used in the manufacturing industry to create plastic parts and components
It involves injecting molten plastic into a mold cavity, where it cools and hardens into the desired shape
The process is used to produce a wide variety of products, from medical devices to automotive parts
Injection molding machines are highly automated and can produce complex parts with tight tolerances
The technology is used in a variety of industries, including automotive, medical, consumer goods, and electronics

2.What are the different sizes of injection molding machine control retrofits?

We continue to invest in research and development and continue to launch innovative products
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)

3.How does the rate of injection affect the final product?

The rate of injection affects the final product in several ways
A slower rate of injection will result in a product with a higher molecular weight, while a faster rate of injection will result in a product with a lower molecular weight
Additionally, a slower rate of injection will result in a product with a higher viscosity, while a faster rate of injection will result in a product with a lower viscosity
Finally, a slower rate of injection will result in a product with a higher degree of crystallinity, while a faster rate of injection will result in a product with a lower degree of crystallinity

How does the rate of injection affect the final product?

4.About injection molding machine control retrofit MOQ

Injection molding machine MOQs vary depending on the type of machine and the supplier
Generally, the MOQ for a standard injection molding machine is one unit
However, some suppliers may require a minimum order of two or more units

5.Can an injection molding machine control retrofit handle high production volumes?

We actively participate in the injection molding machine control retrofit industry associations and organization activities
The corporate social responsibility performed well, and the focus of brand building and promotion Yes, injection molding machines are designed to handle high production volumes
Injection molding machines are capable of producing thousands of parts per hour, depending on the size and complexity of the part

6.What are the energy consumption levels of different types of injection molding machine control retrofits?

We enjoy high authority and influence in the industry and continue to innovate products and service models
The energy consumption levels of different types of injection molding machines vary depending on the size and type of machine
Generally, the larger the machine, the higher the energy consumption
For example, a standard hydraulic injection molding machine typically consumes between 3 and 5 kWh per hour, while a servo-driven machine can consume up to 15 kWh per hour
Additionally, machines with higher clamping forces tend to consume more energy than those with lower clamping forces

What are the energy consumption levels of different types of injection molding machine control retrofits?

7.About the development history of injection molding machine control retrofit 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

8.How important is cooling time in the injection molding process?

We have flexible production capacity
Whether you are large orders or small orders, you can produce and release goods in a timely manner to meet customer needs
Cooling time is a critical factor in the injection molding process
It is the time required for the plastic to cool and solidify in the mold
If the cooling time is too short, the plastic may not solidify properly and the part may be weak or have poor surface finish
If the cooling time is too long, the plastic may become brittle and the part may warp or shrink
Proper cooling time is essential for producing high-quality parts

9.About injection molding machine control retrofit production skills training

Injection molding machine production skills training is a comprehensive program designed to teach participants the fundamentals of injection molding machine production
The program covers topics such as machine setup, troubleshooting, safety, and maintenance
Participants will learn how to operate and maintain injection molding machines, as well as how to troubleshoot and diagnose common problems
The program also covers topics such as material selection, mold design, and process optimization
Upon completion of the program, participants will have the knowledge and skills necessary to produce quality parts with injection molding machines

About injection molding machine control retrofit production skills training

10.About injection molding machine control retrofit 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

11.Are there any safety precautions that need to be taken when operating an injection molding machine control retrofit?

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

12.What are the different types of injection molding techniques?

1
Thermoset Injection Molding 2
Thermoplastic Injection Molding 3
Compression Molding 4
Transfer Molding 5
Blow Molding 6
Extrusion Molding 7
Rotational Molding 8
Structural Foam Molding 9
Reaction Injection Molding (RIM) 10
Insert Molding

What are the different types of injection molding techniques?

13.How do temperature and humidity affect the operation of an injection molding machine control retrofit?

Our injection molding machine control retrofit products have competitive and differentiated advantages, and actively promote digital transformation and innovation
Temperature and humidity can have a significant effect on the operation of an injection molding machine
High temperatures can cause the plastic to melt too quickly, resulting in poor quality parts
High humidity can cause the plastic to absorb moisture, which can cause the plastic to become brittle and crack
Low temperatures can cause the plastic to cool too quickly, resulting in poor part quality
Low humidity can cause the plastic to become too dry, resulting in poor part quality

14.How has technology improved the features and capabilities of modern injection molding machine control retrofits?

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
Technology has improved the features and capabilities of modern injection molding machines in a variety of ways
For example, modern machines are now equipped with advanced computer controls that allow for more precise and efficient operation
Additionally, modern machines are now capable of producing parts with complex geometries and intricate details that were not possible with older machines
Furthermore, modern machines are now able to produce parts with higher levels of accuracy and repeatability, as well as faster cycle times
Finally, modern machines are now able to use a variety of materials, including plastics, metals, and composites, allowing for greater flexibility in the production of parts

15.How does the initial cost of an injection molding machine control retrofit compare to its long-term operating costs?

The initial cost of an injection molding machine is typically higher than its long-term operating costs
The initial cost of the machine includes the purchase price, installation, and setup costs
The long-term operating costs include the cost of electricity, maintenance, and repairs
In general, the long-term operating costs are lower than the initial cost of the machine

How does the initial cost of an injection molding machine control retrofit compare to its long-term operating costs?

16.What are the advantages of using an injection molding machine control retrofit?

We have a wide range of injection molding machine control retrofit 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


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