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): | 647 mm . |
Ejector Force(kN): | 130kN | Theoretical Shot Volume(cm2): | 335 cm³ |
Injection Rate (g/S): | 113 g/s | Machine Type: | Hydraulic |
Injection Weight (9): | 180 g | Screw diameter (mm): | 653 mm |
Distance between Tie Bars: | 900*405 | Weight (KG): | 302 kg |
Type: | Tube Head Injection | Place of Origin: | Guangdong, China |
Open Stroke(mm): | 171 mm | Model Number: | HM105-25 |
Brand Name: | HOMMAR | Power (kW): | 389 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: | 10sets | Oil Tank Capacity: | 335L |
Product name: | Injection machinery |
1.Can an buster beagle injection molding machine run 24/7?
We focus on innovation and continuous improvement to maintain a competitive advantage
Yes, an injection molding machine can run 24/7
However, it is important to note that the machine should be properly maintained and monitored to ensure that it is running safely and efficiently
2.Can an buster beagle 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
3.What is the role of software in controlling and monitoring an buster beagle injection molding machine?
Software plays an important role in controlling and monitoring an injection molding machine
It is used to control the speed, pressure, temperature, and other parameters of the machine
It can also be used to monitor the performance of the machine, detect any faults, and provide feedback to the operator
Additionally, software can be used to store and analyze data from the machine, allowing for better optimization of the injection molding process
4.How can the clamping force of an buster beagle injection molding machine be calculated?
We have rich industry experience and professional knowledge, and have strong competitiveness in the market
The clamping force of an injection molding machine can be calculated using the following formula:
Clamping Force (kN) = (Mold Cavity Area (cm2) x Cavity Pressure (MPa)) / 1000
Where Mold Cavity Area is the total area of the mold cavity, and Cavity Pressure is the pressure of the molten plastic material inside the mold cavity
5.Can an buster beagle injection molding machine use a variety of molding materials in a single production cycle?
Yes, an injection molding machine can use a variety of molding materials in a single production cycle
Injection molding machines are designed to be able to handle a wide range of materials, including thermoplastics, elastomers, and thermosets
The machine can be programmed to switch between different materials during the production cycle, allowing for the production of complex parts with multiple materials
6.What is the role of molds in controlling the temperature and pressure distribution in an buster beagle 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
7.What are the main components of an buster beagle injection molding machine?
We maintain a certain amount of R&D investment every year and continuously improve operational efficiency to provide better services to our cooperative customers
1
Clamping Unit: This is the part of the machine that holds the two halves of the mold together during the injection process
2
Injection Unit: This is the part of the machine that melts the plastic and injects it into the mold
3
Control Unit: This is the part of the machine that controls the speed, pressure, and temperature of the injection process
4
Ejector Unit: This is the part of the machine that pushes the finished part out of the mold
8.About buster beagle injection molding machine production management system
Injection molding machine production management system is a software solution designed to help manufacturers manage the production of injection molding machines
It provides a comprehensive set of tools to help streamline the production process, from scheduling and tracking orders to managing inventory and quality control
The system also helps to ensure that all parts and components are available when needed, and that the production process is running smoothly and efficiently
9.About the development history of buster beagle 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
10.What is the expected maintenance and repair schedule for an buster beagle injection molding machine?
The maintenance and repair schedule for an injection molding machine will vary depending on the type of machine and its usage
Generally, the following maintenance and repair tasks should be performed on a regular basis:
1
Check and adjust the machine’s settings
2
Inspect the machine for any signs of wear or damage
3
Clean and lubricate the machine’s components
4
Check the machine’s safety features
5
Test the machine’s performance
6
Replace any worn or damaged parts
7
Perform regular maintenance and repairs as needed
11.Are there any special considerations for high-temperature materials in an buster beagle injection molding 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
12.What are the common defects that can occur in the injection molding process?
We have broad development space in domestic and foreign markets
buster beagle injection molding machine have great advantages in terms of price, quality, and delivery date
1
Short Shots: This occurs when the molten plastic does not completely fill the mold cavity
2
Flash: This occurs when molten plastic escapes from the mold and creates a thin layer of plastic along the parting line of the mold
3
Warpage: This occurs when the plastic cools unevenly and causes the part to warp
4
Sink Marks: This occurs when the plastic cools too quickly and causes the surface of the part to sink in
5
Burn Marks: This occurs when the plastic is exposed to too much heat and causes the surface of the part to become discolored
6
Voids: This occurs when air bubbles become trapped in the plastic and create a void in the part
7
Weld Lines: This occurs when two streams of molten plastic meet and create a visible line on the surface of the part
13.About buster beagle injection molding machine production equipment
Injection molding machine production equipment is used to produce plastic parts and components for a variety of industries
The injection molding process involves melting plastic pellets and injecting them into a mold cavity
The molten plastic is then cooled and ejected from the mold
Injection molding machines come in a variety of sizes and configurations, and can be used to produce parts ranging from small medical components to large automotive parts
14.How have sustainability and recycling initiatives affected the use of buster beagle injection molding machines?
Sustainability and recycling initiatives have had a positive effect on the use of injection molding machines
By using recycled materials, injection molding machines can produce parts with a lower environmental impact
Additionally, the use of recycled materials can reduce the cost of production, making injection molding machines more cost-effective
Furthermore, the use of recycled materials can help reduce the amount of waste generated by injection molding machines, which can help reduce the environmental impact of the manufacturing process
15.How does the material selection impact the design and production process of an buster beagle 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
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