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): | 660 mm . |
Ejector Force(kN): | 120kN | Theoretical Shot Volume(cm2): | 354 cm³ |
Injection Rate (g/S): | 126 g/s | Machine Type: | Hydraulic |
Injection Weight (9): | 180 g | Screw diameter (mm): | 663 mm |
Distance between Tie Bars: | 900*405 | Weight (KG): | 422 kg |
Type: | Tube Head Injection | Place of Origin: | Guangdong, China |
Open Stroke(mm): | 161 mm | Model Number: | HM105-25 |
Brand Name: | HOMMAR | Power (kW): | 391 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: | 2sets | Oil Tank Capacity: | 349L |
Product name: | Injection machinery |
1.About tederic injection machine 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.About tederic injection 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
3.What factors affect the overall cycle time of an tederic injection 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.What are some of the biggest challenges faced in operating an tederic injection machine?
1
Temperature Control: Injection molding machines must be able to maintain a consistent temperature in order to produce quality parts
If the temperature is too low, the plastic may not flow properly and the parts may be weak or brittle
If the temperature is too high, the plastic may become too soft and the parts may be distorted
2
Pressure Control: The pressure of the injection molding machine must be carefully controlled in order to ensure that the plastic is injected into the mold at the correct rate and with the correct amount of force
If the pressure is too low, the plastic may not fill the mold properly and the parts may be weak or distorted
If the pressure is too high, the plastic may be forced out of the mold too quickly and the parts may be deformed
3
Cycle Time: The cycle time of the injection molding machine must be carefully monitored in order to ensure that the parts are produced in a timely manner
If the cycle time is too long, the parts may not be produced in a timely manner and the production process may be delayed
4
Maintenance: Injection molding machines require regular maintenance in order to ensure that they are operating properly and producing quality parts
If the machine is not properly maintained, it may not be able to produce quality parts and the production process may be delayed
5.About tederic injection machine 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
6.About tederic injection 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
7.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
8.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
9.What is the expected maintenance and repair schedule for an tederic injection 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
10.About tederic injection machine patent
Injection molding machine patents are patents related to the design and operation of injection molding machines
Injection molding machines are used to produce plastic parts for a variety of industries, including automotive, medical, and consumer products
Injection molding machines use a combination of heat, pressure, and a mold to shape molten plastic into a desired shape
Patents related to injection molding machines cover a wide range of topics, including the design of the machine, the operation of the machine, and the materials used in the process
11.What is the maximum weight limit for materials used in an tederic injection machine?
We have advanced production equipment and technology to meet the needs of customers, and can provide customers with high quality, low priced tederic injection machine products
The maximum weight limit for materials used in an injection molding machine depends on the size and type of the machine
Generally, the maximum weight limit for a standard injection molding machine is between 300 and 400 tons
12.Can an tederic injection machine produce products with different surface finishes?
We should perform well in market competition, and the prices of tederic injection machine products have a great competitive advantage
Yes, an injection molding machine can produce products with different surface finishes
Depending on the type of injection molding machine, the surface finish can be achieved through a variety of methods, such as painting, plating, polishing, and texturing
13.What is an tederic injection machine?
Being one of the top tederic injection machine manufacturers in China, We attach great importance to this detail
An injection molding machine is a machine that is used to shape plastic or other materials through the process of injection molding This process involves heating the material, injecting it into a mold, and then cooling it so that it takes the shape of the mold
Injection molding machines are used to produce a variety of products, including automotive parts, medical devices, and consumer goods
14.How is the user experience of operating an tederic injection machine being improved?
The user experience of operating an injection molding machine is being improved in a variety of ways
Automation and digitalization are being used to streamline the process and reduce the amount of manual labor required
Automated systems can be used to monitor and adjust the machine’s settings, as well as to detect and alert operators to any potential problems
Additionally, user-friendly interfaces are being developed to make the process easier to understand and operate
Finally, virtual reality and augmented reality are being used to provide operators with a more immersive experience, allowing them to better understand the process and make more informed decisions
15.How is the injection molded product cooled and ejected from the machine?
We continuously upgrade our skills and knowledge to adapt to changing tederic injection machine market needs
Injection molded products are cooled by circulating water or air around the mold
Once the product has cooled, the mold is opened and the product is ejected from the machine using a mechanical ejector system
The ejector system typically consists of a series of pins that push the product out of the mold
16.What training is required for operating an tederic injection machine?
Our tederic injection 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
17.What are the different types of molds used in injection molding?
We have a good reputation and image in the industry
The quality and price advantage of tederic injection machine products is an important factor in our hard overseas market
1
Single-Cavity Molds: These molds are used to produce a single part at a time
2
Multi-Cavity Molds: These molds are used to produce multiple parts at a time
3
Stack Molds: These molds are used to produce multiple parts in a single cycle
4
Hot Runner Molds: These molds are used to reduce cycle time and improve part quality
5
Two-Shot Molds: These molds are used to produce two different parts in a single cycle
6
Unscrewing Molds: These molds are used to produce parts with threads
7
Insert Molds: These molds are used to insert components into a part
8
Overmolding Molds: These molds are used to produce parts with multiple materials
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