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// Yuyao City Yunpeng Plastic Mould Co., Ltd.

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YUYAO YUNPENG PLASTIC MOLD CO.,LTD.
A famous China Hot Runner Mould Manufacturers and medical plastic mould suppliers, with extensive experiences in the production of molds for power tool components and home appliances. We are conveniently located in Yuyao city of Zhejiang province, positioned 1 hour from Ningbo port, 1 hour from Hangzhou airport, and 2.5 hours from both Shanghai Hongqiao and Pudong airports. As a leading custom medical plastic mould factory, the foundation of our company is our experienced designers, engineers and technicians. We offer multiple options for all types of injection molds based on their expected production cycles and the warranties they carry. Vigorous quality standards, competitive prices, timely deliveries, and responsive post-sales services form the cornerstone of our business philosophy, which we follow closely in all our operations to ensure strong and confident relationships with our domestic and international clients.
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  • 10000

    Factory Area

  • 4000

    Daily Output

  • 600+

    Staff

  • 20+

    Creation Time

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  • Having home appliance plastic mould can be beneficial in many ways

    Having a plastic mould can be beneficial in many ways. For instance, it can help you make a variety of products, such as toys and a For example, you are probably familiar with the plastic moulds for blender containers. These are likely made using the injection molding process. Other applications for home appliance plastic moulds include the refrigerator mould, fan mould, computer mould and air conditioner mould. For dishwashers, the interior of the dishwasher is usually built from plastic moulds. These parts are made to withstand years of use. They are usually prioritized for dimensional accuracy and appearance. Other components that are made from plastic include the dishwasher racks and silverware caddies.When looking for a home appliance mould manufacturer, it is important to find a company that offers a variety of services. The company should have the experience in designing molds for different appliances. A good company should have a team that can work with you to ensure that your product has the best possible finish. During the design stage, the manufacturer can use a range of software to produce a good mold. The design can be customized to meet specific needs. The manufacturer can also provide overmolding services.Once the mould is complete, the parts are packaged and shipped to the customer. Depending on the customer's requirements, they can be sent by air freight, ocean shipment or express delivery.ppliances. It is also used in the medical industry, especially for making health care supplies.

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  • The Benefits of a Medical Plastic Mould

    Whether it's an expensive masterpiece or a simple piece of equipment, the use of a medical plastic mould makes it possible. This technique allows for intricate designs that would be impossible to create using other methods. It's also cost-effective and allows for high-volume production.The process of injection moulding produces durable components that meet precise specifications. It also allows for the reuse of excess material.When choosing a medical-grade plastic, consider the operating environment, resistance to chemicals, and strength. You also need to ensure that the plastic can withstand heat, liquid, and human body movements. Injection molded plastics have been used to produce high-quality medical products and to help combat infectious disease. The process is also cost-effective, eco-friendly, and robust. This has contributed to lower costs in the medical industry.When you're selecting a medical-grade plastic, consider its durability, resistance to chemicals, and tensile strength. These characteristics are important for bio-implants that need to withstand extreme environments. In addition, you need to be sure that the parts are compatible with biological tissues and are resistant to contaminates. The medical industry requires a high level of accuracy. Whether it's tracking back processes or manufacturing parts that meet FDA guidelines, a single failure could cause serious consequences.A professional injection molding company can ensure that the tool is configured correctly. This ensures a seamless product design. It also boosts the lifespan of the tool. The right configuration is essential to achieving consistent results.

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  • Safe use of household appliances.

    During the use of household appliances, when a short circuit, overload, or excessive contact resistance occurs, a great amount of heat may be generated in a very short period of time, causing the surrounding flammable and combustible substances to burn, resulting in a fire. Daily household electrical equipment should pay attention to: 1. Use period Household appliances have a service life requirement, not a "permanent card", which is easily overlooked by everyone. "Over-age" appliances may become a "time bomb" in the home, causing safety risks. 2. Safe placement Household appliances should be placed in a moisture-proof, sun-proof and ventilated place. Do not store inflammable and explosive materials around. All plugs and sockets should be kept away from fire sources. 3. Turn off the power when shutting down When the appliance is turned off using the remote control, its power transformer is always powered on, posing a safety risk. For household appliances that are not used for a long time, unplug the plug and cut off the power supply.

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  • The main process of forming household appliances

    The molding and processing methods of plastic products for household appliances mainly include injection molding, extrusion molding, thermoforming, hollow molding, lamination molding, compression molding, transfer molding, foam molding, casting molding, insert casting, encapsulation, etc. Mainly injection molding. 1. Precision injection molding High precision and repeatability in terms of size and weight can be guaranteed. Injection molding machines using this technology can achieve high-pressure, high-speed injection. Since its control method is usually open-loop or closed-loop control, it can achieve high-speed control of the desired process parameters. Usually, precision honey injection molding requires higher precision for Moxian. At present, China has been able to produce small and medium-sized precision injection molding machines. 2. Rapid prototyping technology It has developed rapidly with the diversified development of household appliances and continuous upgrading, and is mainly used to prepare plastic casings for household appliances. The advantage of this technology is that small batches of plastic parts can be produced without the need for molds. At present, the more mature rapid prototyping methods include laser scanning molding and liquid photocuring molding, among which the laser scanning molding method is widely used. Laser scanning equipment is composed of laser light source, scanning device, dusting device and computer. The processing process is that the laser head controlled by the computer scans according to a certain trajectory. At the position where the laser passes, the plastic micropowder is heated and melted and bonded together. After each scan, the micropowder device sprinkles a thin layer of powder, so that, After repeated scanning, a product with a certain shape and size is formed. 3. Melt core injection molding technology It is usually used to form special-shaped cavity products that require high cavity roughness and precision and cannot be processed by hollow molding or rotational molding methods. At present, the application of this technology in foreign countries is relatively mature, but it is still in a state of individual application in China. The processing principle of this technology is to form a core that forms a cavity first, and then use the core as an insert for injection molding. 4. Gas-assisted/water-assisted injection molding It has a wide range of uses and can form various types of injection molded parts, and its typical product is a TV casing. During injection molding, gas or superheated water can be injected into the cavity almost simultaneously with the plastic melt. 5. Electromagnetic dynamic injection molding technology This technology makes the screw vibrate back and forth in the axial direction through the action of electromagnetic force. Because the plastic is microplasticized in the pre-plasticizing stage, the structure of the plastic part in the pressure-holding stage is more compact, and the internal stress of the product is reduced. 6. Laminated injection molding technology When using this technology, a special printed decorative plastic film needs to be clamped in the mold before injection molding, and then injection molded. The printed film can be attached to the surface of the plastic part after being deformed by heat, which is not only beautiful and firm, but also saves the post-decoration step.

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  • What is the function of air fryer?

    1. Fried food The air fryer can be used to fry food, like fried chicken, french fries, fried meatballs, etc. can be made in the air fryer. We put the food to be fried into the air fryer and set the temperature and time. The air fryer can also be used to fry steaks, fry meats, and more. 2. Baked food The air fryer is equivalent to a small oven, which can be used to bake food. For example, we can use the air fryer to bake pizza, bake egg tarts, bake chicken wings, bake cakes, bake sweet potatoes, etc. 3. Heat food The air fryer can also be used to heat food, for example, the air fryer can be used to heat food such as bread, hamburgers, egg rolls, fried chicken, etc. When we use the air fryer to heat food, it should be noted that the air fryer usually cannot heat food with high water content such as leftovers, unless the product has a tender steam function.

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Industry Knowledge Extension

A hot runner mold is a type of injection molding system that is used to manufacture plastic parts. It is designed to keep the material in the runner system (the channels that deliver molten plastic to the mold cavities) at a controlled, elevated temperature, thus eliminating the need for a cold runner system where the material would solidify and be ejected as waste.
Here's how a hot runner mold works:
Injection: The molten plastic material is injected into the hot runner mold through the nozzle of an injection molding machine.
Runner System: Instead of a traditional cold runner system, the hot runner mold has a heated manifold and a network of heated channels, also known as runners. These runners distribute the molten plastic to multiple mold cavities.
Temperature Control: The hot runner system has heaters and temperature sensors to precisely control and maintain the temperature of the molten plastic in the runners. This ensures that the material remains in a molten state, ready to fill the mold cavities.
Mold Cavities: The hot runner mold contains multiple mold cavities, which are the voids where the plastic part is formed. These cavities are precisely designed to produce the desired shape and features of the final part.
Cooling: While the runner system is kept at an elevated temperature, the mold cavities are cooled to solidify the plastic and allow it to take the desired shape. Cooling channels or inserts help dissipate heat from the cavities, and coolant is circulated to maintain the desired temperature.
Part Ejection: Once the plastic in the mold cavities has solidified and cooled sufficiently, the mold opens, and the part is ejected using ejector pins or other mechanisms.
Repeat Cycle: The process is repeated for the next injection cycle, with the molten plastic flowing through the hot runner system, filling the mold cavities, cooling, and ejecting the parts.
Hot runner molds offer several advantages over cold runner molds, including reduced material waste, shorter cycle times, improved part quality, and increased design flexibility. However, they are typically more complex and expensive to implement and require specialized maintenance and troubleshooting procedures.

Using a hot runner mold provides several advantages over a cold runner mold in plastic injection molding. Here are some of the key benefits:
Reduced Material Waste: In a hot runner mold, the runner system is kept at an elevated temperature, preventing the plastic from solidifying. This eliminates the need for a cold runner, which would otherwise need to be removed and discarded as waste. As a result, hot runner molds significantly reduce material waste, leading to cost savings and more environmentally friendly production.
Shorter Cycle Times: Hot runner molds can achieve faster cycle times compared to cold runner molds. Since the plastic remains in a molten state within the heated runners, it can flow more easily and quickly into the mold cavities. This reduces the cooling time required for the part to solidify and allows for faster production cycles, increasing overall productivity.
Improved Part Quality: The controlled temperature in the hot runner system helps maintain consistent material flow and fill in the mold cavities. This results in improved part quality with fewer defects such as sink marks, warping, or short shots. Hot runner molds offer better control over gate placement and filling patterns, allowing for more precise and uniform part dimensions.
Increased Design Flexibility: Hot runner molds provide greater design flexibility compared to cold runner molds. With a hot runner system, it is possible to have multiple gates and fill points, enabling more complex part geometries and better distribution of material flow. This allows for the production of parts with intricate designs, thin walls, or multiple components without sacrificing quality or performance.
Cost Savings: Although the initial investment for a hot runner mold is higher than that of a cold runner mold, the long-term cost savings can be significant. Reduced material waste, shorter cycle times, and improved part quality lead to higher production efficiency, lower scrap rates, and decreased overall manufacturing costs. Additionally, the elimination of post-molding operations like runner trimming further contributes to cost savings.
It's important to note that the selection between hot runner and cold runner molds depends on various factors such as the specific project requirements, production volume, material characteristics, and cost considerations.

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