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.
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) | 478 g | Ejector Stroke(mm) | 95 mm |
Weight (KG) | 955 kg | Ejector Force(kN) | 40 kN |
Place of Origin | China | Theoretical Shot Volume(cm3) | 559 cm3 |
Warranty | 1 Year | Screw Speed (rpm) | 0-266rpm |
Key Selling Points | Injection Molding Machine | Screw diameter (mm) | 50 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) | 420 mm |
Brand Name | Hommar | Power (kW) | 21.6 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 |
1.What factors affect the overall cycle time of an cap injection moulding 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
2.Are there any special considerations for high-temperature materials in an cap 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
3.About cap injection moulding 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
4.What is the role of molds in controlling the temperature and pressure distribution in an cap 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
5.What kind of maintenance is required for an cap injection moulding machine?
We pay attention to employee development and benefits, and provide a good working environment in order to improve the efficiency of employees and improve the quality management of cap injection moulding machine products
Maintenance for an injection molding machine typically includes regular cleaning and lubrication of the machine, checking and replacing worn parts, and inspecting the machine for any signs of wear or damage
Additionally, the machine should be inspected for any potential safety hazards, and any necessary repairs should be made
6.How do fluctuations in the stock market affect the demand for cap injection moulding machines?
Fluctuations in the stock market can have a direct impact on the demand for injection molding machines
When the stock market is performing well, businesses may be more likely to invest in injection molding machines, as they may have more capital to invest in new equipment
Conversely, when the stock market is performing poorly, businesses may be less likely to invest in injection molding machines, as they may have less capital to invest in new equipment
7.What are some safety regulations and standards that cap injection moulding machines must adhere to?
We have a professional team that is committed to the innovation and development of cap injection moulding machine
1
All injection molding machines must be equipped with safety guards to protect operators from moving parts
2
All injection molding machines must be equipped with emergency stop buttons to shut down the machine in the event of an emergency
3
All injection molding machines must be equipped with a safety interlock system to prevent the machine from operating if any of the safety guards are not in place
4
All injection molding machines must be equipped with a pressure relief valve to prevent the machine from over-pressurizing
5
All injection molding machines must be equipped with a temperature control system to prevent the machine from overheating
6
All injection molding machines must be equipped with a ventilation system to ensure proper air circulation and reduce the risk of fire
7
All injection molding machines must be inspected and tested regularly to ensure they are in proper working order
8
All injection molding machines must be operated in accordance with the manufacturer’s instructions and safety guidelines
8.How accurate are the dimensions of products produced by an cap injection moulding machine?
We focus on our customers' needs and strive to meet their expectations, so we take this very seriously
The accuracy of the dimensions of products produced by an injection molding machine depends on the quality of the mold and the skill of the operator
Generally, injection molding machines can produce parts with tolerances of +/- 0
005 inches (0
127 mm)
However, with the right mold and operator, parts with tolerances of +/- 0
001 inches (0
025 mm) can be achieved
9.What are some real-world applications of products produced by cap injection moulding machines?
We maintain a stable growth through reasonable capital operations, focus on industry development trends and cutting -edge technologies, and focus on product quality and safety performance
1
Automotive parts such as bumpers, dashboards, and door panels
2
Electronic components such as connectors, switches, and housings
3
Medical devices such as syringes, catheters, and hearing aids
4
Toys such as action figures, dolls, and building blocks
5
Household items such as toothbrushes, kitchen utensils, and storage containers
6
Industrial components such as gears, valves, and fasteners
7
Packaging materials such as caps, lids, and containers
10.About cap 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
11.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 cap injection moulding 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
12.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
13.Can an cap injection moulding machine produce intricate and detailed designs?
We are committed to providing personalized solutions and established long -term strategic cooperative relationships with customers
Yes, an injection molding machine can produce intricate and detailed designs
Injection molding machines are capable of producing complex shapes with high precision and accuracy
They can also be used to produce parts with intricate details, such as textured surfaces, thin walls, and complex geometries
14.What is the role of computer-aided design (CAD) in injection molding?
We adhere to the principle of quality first and have a complete production quality management system and quality inspection process
Computer-aided design (CAD) plays an important role in injection molding
CAD is used to create 3D models of the parts that will be produced by injection molding
This allows for the design of the injection mold to be optimized for the part, ensuring that the part is produced with the highest quality and accuracy
CAD also allows for the injection mold to be tested virtually before it is produced, ensuring that it will produce the desired parts
15.Are there any environmental concerns with using an cap injection moulding machine?
We attach importance to the innovation ability and team spirit of employees, have advanced R & D facilities and laboratories, and have a good quality management system
Yes, there are environmental concerns with using an injection molding machine
These include the release of volatile organic compounds (VOCs) into the air, the release of hazardous chemicals into the environment, and the potential for the release of plastic particles into the environment
Additionally, injection molding machines require a large amount of energy to operate, which can contribute to air pollution
16.About cap injection moulding 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
17.What are the different sizes of cap 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)
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