Vertical Injection Moulding Machine
VR
  • Product Details
Our company integrates development and manufacturing in-house. Specializing in manufacturing various types of machinery and equipment and related products. We have an experienced and professional team and have established cooperative relationships with customers in multiple countries. Main businesses: 1. Injection molding machine accessories and peripheral equipment, plasma processors, auto parts plastic molds, etc. Our products are exported to Belize and other Western countries. The company has formed unique advantages in the industry. Our plasma treatment equipment is mainly used for surface cleaning and modification of glass, plastics, membranes, and metal materials. In addition, the company's customers span packaging, plastics, automotive industry, electronic products, medical, precision glass and other fields, and has been providing various key technologies for the rapidly developing electronic information industry.

At present, the company's main products include Extrusion blow molding machine, etc. The products sell well in domestic and foreign markets, with stable and timely supply, reliable quality and sincere service. Adhering to the business principle of "customers first, reputation first" and the enterprise spirit of "integrity, pragmatism, pioneering and innovation". Service Welcome you to choose our machine. We can provide you with various machinery. We can guarantee high-quality products that meet national standards. We welcome customers, business associations and friends from all over the world to contact us and seek cooperation for mutual benefit.




Condition
New
Showroom Location
None
Style
VERTICAL
Warranty of core components
1 Year
Injection Rate (g/s)
116 g/s
Core Components
Bearing, Motor, Pump, Gear
Machine Type
Hydraulic
Plastic Processed
LSR
Injection Weight (g)
490 g
Ejector Stroke(mm)
100 mm
Weight (KG)
984 kg
Ejector Force(kN)
55 kN
Place of Origin
China
Theoretical Shot Volume(cm3)
402 cm3
Warranty
1 Year
Screw Speed (rpm)
0-274rpm
Key Selling Points
Injection Molding Machine
Screw diameter (mm)
52 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)
464 mm
Brand Name
HommarPower (kW)
22.1 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
≥36
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










screw diameter injection moulding machine FAQs Guide. Welcome to our complete guide on screw diameter injection moulding machine – the versatile and efficient industrial equipment used for the production of a wide range of plastic products. screw diameter injection moulding machine 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 screw diameter injection moulding machine. From automotive and medical devices to household items and consumer goods, screw diameter injection moulding machine play a vital role in shaping the products we use in our daily lives. Join us on this journey to discover the world of screw diameter injection moulding machines and their significance in the manufacturing world.
1.About screw diameter injection moulding machine customization services
2.What training is required for operating an screw diameter injection moulding machine?
3.What are the types of defects that can be detected in the injection molding process?
4.How does the initial cost of an screw diameter injection moulding machine compare to its long-term operating costs?
5.How does the rate of injection affect the final product?
6.Can an screw diameter injection moulding machine be used for rapid prototyping?
7.What are the different sizes of screw diameter injection moulding machines?
8.How is plastic melted and injected into the mold?
9.Are there any special considerations for high-temperature materials in an screw diameter injection moulding machine?
10.About screw diameter injection moulding machine R&D capabilities
11.About the development history of screw diameter injection moulding machine factory
12.How has technology improved the features and capabilities of modern screw diameter injection moulding machines?
13.How does the material selection impact the design and production process of an screw diameter injection moulding machine?
14.How are these defects identified and corrected?
15.About screw diameter injection moulding machine raw materials
16.What is the role of molds in controlling the temperature and pressure distribution in an screw diameter injection moulding machine?

1.About screw diameter injection moulding machine customization services

Injection molding machine customization services are a great way to customize your injection molding machine to meet your specific needs
With the help of a professional, you can customize your machine to fit your exact specifications and requirements
This can include customizing the size, shape, and features of the machine, as well as the materials used in the process
Customization services can also help you save money by reducing the cost of production and increasing the efficiency of the process

2.What training is required for operating an screw diameter injection moulding machine?

Our screw diameter injection moulding 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 are the types of defects that can be detected in the injection molding process?

1
Flash: This is a defect caused by excess material that is forced out of the mold during the injection molding process
2
Short Shot: This is a defect caused by the injection of insufficient material into the mold
3
Warpage: This is a defect caused by uneven cooling of the plastic parts, resulting in uneven shrinkage and distortion
4
Sink Marks: This is a defect caused by the uneven cooling of the plastic parts, resulting in a depression in the surface of the part
5
Weld Lines: This is a defect caused by the joining of two streams of molten plastic during the injection molding process
6
Voids: This is a defect caused by air pockets trapped in the plastic part during the injection molding process
7
Burn Marks: This is a defect caused by the overheating of the plastic material during the injection molding process

4.How does the initial cost of an screw diameter injection moulding machine 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

5.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?

6.Can an screw diameter injection moulding machine be used for rapid prototyping?

No, an injection molding machine is not suitable for rapid prototyping
Rapid prototyping is a process that uses 3D printing technology to quickly create a physical model of a design
Injection molding machines are used to mass-produce parts from thermoplastic and thermoset materials

7.What are the different sizes of screw diameter injection moulding machines?

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)

8.How is plastic melted and injected into the mold?

We have been working hard to improve service quality and meet customer needs
Plastic is melted in an injection molding machine, which consists of a hopper, a heating barrel, and a reciprocating screw
The plastic is fed into the hopper, where it is heated and melted
The melted plastic is then injected into the mold cavity under high pressure
The mold is then cooled, and the plastic solidifies into the desired shape

9.Are there any special considerations for high-temperature materials in an screw diameter injection moulding machine?

Yes, there are several special considerations for high-temperature materials in an injection molding machine
These include: 1
Ensuring that the injection molding machine is equipped with a high-temperature barrel and nozzle
2
Using a high-temperature screw and barrel material that can withstand the elevated temperatures
3
Using a high-temperature mold material that can withstand the elevated temperatures
4
Ensuring that the injection molding machine is equipped with a high-temperature control system to regulate the temperature of the material
5
Using a high-temperature lubricant to reduce friction and wear on the machine components
6
Ensuring that the injection molding machine is equipped with a cooling system to reduce the temperature of the material after injection

10.About screw diameter injection moulding machine R&D capabilities

Injection molding machine R&D capabilities refer to the ability of a company to research, develop, and manufacture injection molding machines
This includes the ability to design and build custom injection molding machines, as well as the ability to develop and implement new technologies and processes
Companies with strong R&D capabilities are able to stay ahead of the competition and provide their customers with the most advanced injection molding machines available

About screw diameter injection moulding machine R&D capabilities

11.About the development history of screw diameter injection moulding 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

12.How has technology improved the features and capabilities of modern screw diameter injection moulding machines?

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

13.How does the material selection impact the design and production process of an screw diameter injection moulding 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

14.How are these defects identified and corrected?

We pay attention to user experience and product quality, and provide the best product quality and lowest production cost for cooperative customers
Defects can be identified and corrected in a variety of ways
Depending on the type of defect, the most common methods include: 1
Manual Testing: Manual testing involves a tester manually running through the application and looking for any errors or bugs
This can be done by running through the application step-by-step, or by using automated testing tools
2
Automated Testing: Automated testing involves using software to automatically run through the application and look for any errors or bugs
This can be done by using a variety of tools, such as unit tests, integration tests, and regression tests
3
Debugging: Debugging involves using a debugger to identify and fix any errors or bugs in the code
This can be done by using a variety of tools, such as a debugger, a profiler, or a code analyzer
4
Code Reviews: Code reviews involve having a team of developers review the code to identify any errors or bugs
This can be done by using a variety of tools, such as static code analysis, peer reviews, and code reviews
5
Root Cause Analysis: Root cause analysis involves identifying the root cause of the defect and then fixing it
This can be done by using a variety of tools, such as fault tree analysis, cause and effect diagrams, and failure mode and effects analysis

15.About screw diameter injection moulding machine raw materials

Injection molding machine raw materials are typically thermoplastics, thermosets, elastomers, and metals
Thermoplastics are the most commonly used raw materials in injection molding machines
They are typically composed of polymers, such as polyethylene, polypropylene, polystyrene, and polyvinyl chloride
Thermosets are materials that are cured by heat or pressure and are not able to be melted and reshaped
Elastomers are materials that are flexible and can be stretched and then return to their original shape
Metals are also used in injection molding machines, such as aluminum, brass, and steel

About screw diameter injection moulding machine raw materials

16.What is the role of molds in controlling the temperature and pressure distribution in an screw diameter injection moulding 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


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We gain many good reputations and lasting trust from all customers by professional and high efficiency service and high quality standard qualified products. feel free to communicate your ideas and ask lots of questions.

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They are all manufactured according to the strictest international standards. Our products have received favor from both domestic and foreign markets.
They are now widely exporting to 200 countries.

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