Jiajie Company was established in October 2003, located in Dongguan City, Guangdong Province, China, covering an area of more than 3,000 square meters, and established a branch in Phnom Penh, Cambodia. The company is mainly engaged in the design and manufacture of plastic molds and injection molding production. Years of experience in ordinary plastics, special engineering plastic molds and injection molding, such as PPS, PEEK, PES, LCP, PC, PA and other engineering plastic products, for large-scale injection products, we give priority to hot runner molds, which not only ensures product quality , and reduce the production cost. The company's products are mainly used in automobiles, instrumentation, headphones, construction machinery, intelligent terminals, etc.
The company has more than 20 technical personnel of various types, including 5 senior engineers. It has more than 30 sets of various mold processing and testing equipment such as CNC machining centers, mirror spark machines, slow wire walking machines, three-dimensional measuring tools, etc., and uses PRO-E, UG, CAD, CAE and other software for design and development work. The production department has two More than ten injection molding machines of different tonnages are dedicated to mass production, and are equipped with a complete set of injection molding production auxiliary systems, such as small robots, manipulators, video surveillance, automatic feeding systems, etc., to achieve fully automated production.
LCP (Liquid Crystal Polymer) plastic molds are widely used in the automotive industry for their high temperature resistance, dimensional stability, and chemical corrosion resistance. Some specific automotive applications using LCP plastic molds include:
Sensors: Sensors for automotive applications, including temperature sensors, pressure sensors, and fluid level sensors. These sensors require high accuracy and reliability to ensure accurate readings and proper functioning of the vehicle.
Actuators: Actuators for applications, including engine control systems, transmission systems, and suspension systems. These actuators require high precision and durability to withstand harsh operating conditions and ensure proper vehicle performance.
Connectors: Connectors for applications including engine control systems, lighting systems, and audio systems. These connectors need to be resistant to high temperatures and chemicals to ensure a reliable and long-lasting connection.
Fuel system parts: LCP plastic molds are used to produce fuel system parts, such as fuel pump parts and fuel injector parts. These components require high chemical resistance to withstand the harsh environment of the fuel system and ensure proper engine performance.
LCP plastic molds play a vital role in the production of high-quality automotive components that require high temperature resistance, dimensional stability and chemical resistance. By using LCP plastic molds, automakers can ensure their products are reliable, durable and meet the highest quality standards.
LCP plastic is typically molded using injection molding machines. The material is first melted and then injected into a mold cavity. The mold is then cooled, and the part is ejected from the mold once it has solidified.
LCP (Liquid Crystal Polymer) is a high-performance thermoplastic material that is used in injection molding for various applications, including electronic and automotive components.
LCP plastic molds have several advantages, including high strength, excellent dimensional stability, resistance to heat and chemicals, and the ability to produce intricate designs.
When designing LCP plastic molds, it is important to consider the potential for warpage due to the high shrinkage rate of the material. Mold temperature control and gate design are also critical to achieving good results.
Classified by molding (1) Injection molding is to first add plastic to the heating barrel of the injection machine. The plastic is heated and melted. Under the push of the injection machine screw or plunger, the nozzle and the mold casting system enter the mold cavity due to physical and chemical effects. The hardening is shaped into an injection molded product.
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The shape of the mold determines the appearance of these products, and the processing quality and precision of the mold also determine the quality of these products.