What is Large Injection Molding Machine
Large injection molding machines, designed for producing sizable plastic parts, possess a high tonnage capacity for applying significant clamping force during the injection process and can accommodate large molds. Equipped with advanced hydraulic or electric systems and larger injection units, these machines provide precise control and effectively handle the production of intricate plastic parts. Industries such as automotive, aerospace, consumer goods, and packaging benefit immensely from these machines, as they cater to the high demand for substantial plastic components.
Benefits of Large Injection Molding Machine
High production rate
The higher the production rate, the lesser the work rate. One key advantage of an injection molding machine is that it helps produce large quantities of plastic parts, which reduces the time spent on human labor and gives you more time for other things in life.
Low labor costs
Owning an injection molding machine helps reduce the amount of money you'll spend on labor. This means you'll spend less money on labor, which will increase the profit of your company or industry.
Versatility
Another key benefit of an injection molding machine is that you can use it for a wide range of plastic materials, including thermoplastics, thermosets, and elastomers, which makes them suitable for a wide range of applications.
High accuracy and consistency
The benefits of an injection molding machine cannot be overstated. Another crucial benefit of an injection molding machine is that it helps produce quality and accurate parts with consistency. Usually, accuracy and precision are major issues with humans in the realm of the production process, but with the help of an injection molding machine, you can produce complex parts en masse without worrying about the accuracy or consistency of the products.
Vertical And Horizontal Injection Molding Machine
Vertical mold locking, horizontal injection structure, with easy to pick and place parts, no column, three sides open, etc., easier to produce long workpiece plastic products.
Vertical mold locking, vertical injection structure design, can be used in conjunction with vertical mold locking, horizontal injection structure.
Horizontal Thin Wall Injection Molding Machine
C-type machine body staff operation without the obstacle of the column, improve work efficiency.
Horizontal Umbrella Bone Injection Molding Machine
Vertical mold locking, horizontal injection structure, with the characteristics of easy to take and put the pieces, no column, three-sided open, easier to produce long workpiece plastic products.
Liquid Silicone Rubber Injection Molding Machine
Self-developed (20/200l) liquid silicone feeder with optional German 2KM host;
Multi-level precision mold electric temperature control. Liquid silica gel special hydraulic water-cooled closed nozzle, material pipe set
Horizontal Energy Saving Injection Molding
low body, no height limitation for plant: the design of horizontal injection molding machine makes its body low, no special requirement for plant height, suitable for installation in various heights of the plant.
Horizontal BMC Injection Molding Machine
Where products can be automatically dislodged, automatic molding is possible without a robot: In the case where products can be automatically dislodged, the horizontal injection molding machine can realize automated molding without the use of a robot.
Horizontal Bakelite Injection Molding Machine
Low body, no height restriction for the plant where it is placed: the design of horizontal injection molding machine makes its body low, which has no special requirement for the height of the plant, and is suitable for installation in plants of various heights.
Horizontal Two-Color Injection Molding Machine
This product is suitable for two-color and two-material one-time molding of the injection molding parts, the use of disc multi-station design, improve production efficiency.
Why Choose Us
Advanced equipment
We take strong measures to ensure that we use the highest quality equipment in the industry and that our equipment is regularly and meticulously maintained.
Competitive prices
We offer our products at competitive prices, making them affordable for our customers. We believe that high-quality products should not come at a premium, and we strive to make our products accessible to all.
Rich experience
Has a long-standing reputation in the industry, which makes it stand out from its competitors. With over many years of experience, they have developed the skills necessary to meet their clients' needs.
High quality products
We always put customer needs and expectations in the first place, refine on, continuous improvement, to seek every opportunity to do better, to provide customers with their expectations of quality products, to provide customers with the most satisfactory service at anytime.
State-of-the-art technology
We use the latest technology and tools to deliver high quality services. Our team is well-versed in the and advancements in technology and uses them to provide the best results.
Customer satisfaction
Providing after-sales services can enhance customer satisfaction by ensuring that customers' needs are met even after the purchase. This can lead to increased customer loyalty and positive word-of-mouth referrals.
What Are the Types of Injection-Molding Machines
The main types of injection-molding machines are:
Horizontal Injection Molding Machines
These are the most common type of injection molding machines. The mold is oriented horizontally, and the parts are ejected horizontally.
Vertical Injection Molding Machines
In these machines, the mold is oriented vertically. This design is useful for molding parts that require a compact footprint or have unusual geometries.
Two-Shot/Multi-Shot Injection Molding Machines
These machines can inject two or more different materials into a single mold, allowing the creation of multi-material parts.
Micro-Injection Molding Machines
These specialized machines are designed to produce very small, precise parts, often used in medical, electronic, and other high-precision applications.
Electrical/Servo-Electric Injection Molding Machines
These machines use electric motors instead of hydraulic systems to provide the clamping and injection forces, offering improved energy efficiency and precision.
Gas-Assisted Injection Molding Machines
These machines inject a small amount of gas into the molten plastic, creating hollow parts that are lighter and use less material.
Large injection molding machines are versatile and can process a wide range of plastic materials. This versatility is crucial, as different applications require specific material properties. Common materials processed by these machines include thermoplastics such as polycarbonate, polypropylene, and ABS. These materials are favored for their strength, impact resistance, and versatility in achieving various finishes and colors, making them suitable for a broad spectrum of applications.
In some cases, large injection molding machines work with thermosetting plastics. These materials undergo a chemical reaction during the molding process, leading to a permanent molecular crosslinking that imparts exceptional heat resistance and dimensional stability. Thermosetting plastics like phenolic resins and polyurethanes are utilized for manufacturing components in industries where high-temperature performance and structural integrity are paramount, such as in the electrical and automotive sectors.
Large injection molding machines can process engineering plastics, which are known for their superior mechanical properties, chemical resistance, and dimensional stability. Materials like polyamide (nylon), polyetheretherketone (PEEK), and polybutylene terephthalate (PBT) fall under this category and are commonly employed in applications requiring robust and high-performance plastic components.
What Is the Application Scope of the Injection Molding Machine
Injection molding machines are widely used in the manufacturing of a diverse range of plastic products. The application scope of injection molding includes:
Consumer goods: Household items such as containers, utensils, toys, and consumer electronics casings.
Automotive industry: Interior and exterior automotive components like dashboards, door panels, bumpers, and mirror housings.
Packaging: Bottles, caps, lids, and other types of plastic packaging.
Medical and healthcare: Syringes, medical devices, and prosthetic components.
Electronics: Casings and housings for various electronic devices and appliances.
Furniture: Chairs, tables, and other furniture made from plastic.
Construction: Piping, window frames, and other building materials.
Toys and sports equipment: Action figures, game pieces, and sports equipment like helmets.
Appliances: Components for washing machines, refrigerators, and other home appliances.
Aerospace and defense: Lightweight, durable parts for aircraft, spacecraft, and military equipment.
The versatility of injection molding allows manufacturers to produce a wide array of complex, precision plastic parts cost-effectively and efficiently to meet the needs of diverse industries.
How To Select Large Plastic Injection Machines
To figure out your plastic injection product is the very first tip. The product sample, shape, weight, size and material are the basic information that you have to provide. Having a clear idea of your plastic injection product can simplify the process of selecting the appropriate large injection molding machine.If you want to develop a new product, it's best to discuss your ideas with the injection machine manufacturers.
The mold is a key part when designing the plastic large injection molding machine. It is important to consider not only the size, but also the design, structure, thickness, and cavity as they can all impact the performance of the machine. The size and thickness of the mold will determine the size of the machine needed. Moreover, the length, width and height of the mold need to match the platen size to ensure proper force during the molding process.
Customizing your plastic injection molding machine can help improve your production process and increase competitiveness in the market. Features such as shortening cycle times, increasing injection speed, saving energy, or facilitating mold changes can be customized to suit your needs. It's essential to list the features you desire and discuss them with your plastic injection molding machine manufacturer. According to our cases, clients with specific requirements have always received positive feedback from us. Besides, by listing your customization needs in the beginning of discussion, cost considerations can be more comprehensive, making your investment more valuable.
Understanding the Basic Components of Injection Molding Machines
Injection molding machines are complex pieces of machinery with a variety of components that work together to create high-quality plastic parts. Understanding the basic components of injection molding machines is essential for choosing the right machine for your application and for maintaining and troubleshooting your machine. Here are some of the basic components of injection molding machines:
Hopper
The hopper is the part of the injection molding machine where the plastic pellets are stored before they are melted and injected into the mold. The hopper is typically made of plastic or stainless steel and is equipped with a heater to help melt the plastic.
Screw
The screw is the component of the injection molding machine that moves the plastic pellets from the hopper to the heating chamber. The screw is usually made of steel and is driven by a motor.
Heating Chamber
The heating chamber is where the plastic pellets are melted by the heat generated from the heater bands around the chamber. The temperature in the heating chamber must be carefully controlled to ensure that the plastic is melted to the right temperature and viscosity.
Injection Unit
The injection unit is responsible for injecting the melted plastic into the mold. The injection unit consists of a barrel, nozzle, and mold clamp.
Clamping Unit
The clamping unit is responsible for holding the mold in place during the injection molding process. The clamping unit consists of two platens that close around the mold and hold it in place with a high amount of force.
Controller
The controller is the brain of the injection molding machine. It is responsible for controlling the various components of the machine, such as the heating chamber, injection unit, and clamping unit.
Understanding the basic components of injection molding machines is essential for choosing the right machine for your application and for maintaining and troubleshooting your machine. With this knowledge, you can ensure that your machine is operating efficiently and producing high-quality plastic parts.
What Are the Essential Tips for Maintaining My Injection Moulding Machine
To keep an injection moulding machine running smoothly, it's crucial to focus on maintaining its moving parts and moulds. Here are key areas and tips to ensure they operate effectively.
As with all pieces of equipment or machinery, prevention is very much better than cure. Drawing up a basic list of maintenance checks to be carried out before and after each use will help operators spot problems early. Issues can then be addressed and repairs carried out before things get too serious and the machine needs more significant attention. Make sure the shot counter is working correctly, as this will tell you when a more thorough service and maintenance is required. Creating checklists like this is also an essential part of keeping the operators safe and free from the risk of injury.
Always check the surfaces on the injection moulding machine before and after use, especially the mould cavities. Look for foreign objects and contaminants, such as dust, debris or bits of plastic materials that have not been cleaned out correctly. Dust and debris can interfere with the mechanisms of the injection moulding machine. Foreign objects can also mix in with the new plastic being added to the machine, compromising final quality. Leaving unwanted items on surfaces can also cause the new plastic to seep into the parting area during the mould injection part of the process.
As above, finding dust or debris on the surface of a finished injection moulded part can render that part unusable, thus wasting precious time, money and resources. Cleaning the mould cavity after every use prevents the build-up of contaminants like this. You can clean the moulds while in the machine or on the bench. Clearly, taking the party out of the machine completely will enable the operator to clean it more thoroughly. As a minimum, wipe the mould down with a standard degreasing agent or mild solvent. Use a cotton or other lint-free cloth to avoid leaving lint on the surface of the injection moulding machine.
If you have disassembled the parts in your injection moulding machine for a deeper clean, you can also use an ultrasonic bath (if appropriate) to get into harder-to-reach areas such as vents and cooling channels. You can also use compressed air to blow out dirt, dust and residual water. This should be done as soon as possible after cleaning to help dry the machine and avoid scale marks on polished surfaces. Pay particular attention to cooling channels when using compressed air, as water can get trapped inside very easily.
Make sure to pay extra attention to the injection moulding machine's moving or more intricate parts when cleaning or looking for damage etc. These include the mould runners, sprues, gates and vents. The plastic entry gate can be particularly susceptible to damage through wear and tear. Examine mould connectors and hardware, such as water hoses, pipes and threads to ensure there are no leaks. Look at the bolts to make sure they are properly fastened, and check all over for signs of warping or rust that could impede production.
If the injection moulding machine is being placed in storage for a while, making sure that it is totally dry is even more important. Moisture and residual water can cause rust and scale stains, as well as corrosion if the mould is sealed. Even if you are simply setting the machine up for the next job, take time to log the maintenance and cleaning that you have done, along with the date and time. This will help you and others understand the service history of a machine and pinpoint when any faults are discovered and fixed.
Our Factory
Yuyao Jinming Machinery Co., Ltd. was established in 2010, with products for a wide range of markets. The company focuses on the vertical injection molding machine, rubber injection machine and Bakelite, BMC and other high-precision injection molding equipment research and development and production, the introduction of advanced technology in Europe, Japan, quality is the key to business survival as the concept of enterprise development, continuous improvement and innovation, manufacturing a series of high-quality, high-precision vertical injection molding machine, the company's products are sold all over the world, excellent quality and perfect after-sales service by the Our products are sold all over the world, and our excellent quality and perfect after-sales service are well received by customers all over the world.

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| DESCRIPTION | UNIT | JM-1200R | JM-1600R | JM-2000R | JM-2500R | JM-3000R | JM-4000R | |||||||||||||
| INJECTION UNIT | Screw Diameter | mm | 25 | 28 | 32 | 30 | 35 | 40 | 35 | 40 | 45 | 40 | 45 | 50 | 45 | 50 | 55 | 60 | 65 | 70 |
| Injection Pressure | kg/cm² | 2509 | 2000 | 1531 | 2333 | 1714 | 1680 | 2468 | 1890 | 1493 | 2327 | 1839 | 1489 | 2212 | 1792 | 1480 | 2240 | 1908 | 1645 | |
| Theoretical Injection Volume | cm³ | 69 | 86 | 112 | 113 | 154 | 226 | 192 | 251 | 318 | 276 | 350 | 432 | 381 | 471 | 570 | 848 | 995 | 1154 | |
| Max. Shot Weight(PS) | g/oz | 67/2.4 | 84/3 | 109/4 | 110/4 | 150/5.4 | 220/8 | 187/6.8 | 245/8.8 | 310/11.2 | 269/9.7 | 341/12.3 | 421/15.2 | 372/13.4 | 459/16.6 | 556/20 | 827/30 | 970/35 | 1125/40 | |
| Injection Rate | cm³/sec | 117 | 147 | 192 | 160 | 218 | 222 | 151 | 197 | 250 | 180 | 228 | 281 | 211 | 260 | 315 | 260 | 305 | 354 | |
| Screw Stroke | mm | 140 | 160 | 180 | 200 | 220 | 240 | 300 | ||||||||||||
| Screw Rotation Speed | rpm | 0-370 | 0-235 | 0-220 | 0-240 | 0-240 | 0-240 | |||||||||||||
| CLAMPING UNIT | Clamping Force | ton | 120 | 160 | 200 | 250 | 300 | 400 | ||||||||||||
| Min. Mold Height | mm | 300 | 350 | 400 | 400 | 450 | 450 | |||||||||||||
| Opening Stroke | mm | 300 | 300 | 350 | 350 | 400 | 400 | |||||||||||||
| Max. Opening Distance | mm | 600 | 650 | 750 | 750 | 850 | 850 | |||||||||||||
| Diameter Of Rotary Table | mm | 1200 | 1400 | 1400 | 1600 | 1600 | 1800 | |||||||||||||
| Ejector Stroke | mm | 100 | 150 | 150 | 150 | 150 | 150 | |||||||||||||
| Ejector Force | ton | 4 | 7 | 11 | 11 | 11 | 11 | |||||||||||||
| OTHERS | Max. Hydraulic Pressure | kg/cm² | 140 | 140 | 140 | 140 | 140 | 140 | ||||||||||||
| Oil Tank Capacity | L | 400 | 500 | 600 | 700 | 750 | 700 | |||||||||||||
| Pump Motor Power | kW | 15 | 18.5 | 22 | 30 | 30 | 37 | |||||||||||||
| Barrel Heating Power | kW | 10 | 12 | 14 | 17 | 20 | 22 | |||||||||||||
| Worktable Height | mm | 930 | 960 | 1000 | 1000 | 1100 | 1100 | |||||||||||||
| Machine Weight | kg | 9000 | 10000 | 12000 | 15000 | 17000 | 24000 | |||||||||||||
| Machine Dimensions | m | / | / | / | / | / | / | |||||||||||||















