Capabilities and products
- PEEK advanced engineering-plastic screws
- PI advanced engineering-plastic screws
- PBI advanced engineering-plastic screws
- PFA advanced engineering-plastic screws
- PPS advanced engineering-plastic screws
- PVDF advanced engineering-plastic screws
- PEI advanced engineering-plastic screws
- RENY advanced engineering-plastic screws
- PTFE advanced engineering-plastic screws
- PC engineering-plastic screws
- POM engineering-plastic screws
- PA6 engineering-plastic screws
- PA66 engineering-plastic screws
- PP engineering-plastic screws
- PPGF engineering-plastic screws
- advanced engineering-plastic screws for semiconductors
- advanced engineering-plastic screws for optoelectronics
Exhibits
PEEK is specified for high-temperature and chemical-solvent process applications, with a long-term use temperature of 240℃ and properties including toughness, rigidity, creep resistance, light resistance, and resistance to multiple kinds of radiation. PEEK components are described for semiconductor equipment, aerospace, automotive electronics and electrical systems, medical equipment, and food-production equipment, and PEEK is also presented as a representative material for advanced engineering-plastic screws in precision industry. The material range also lists PI, PBI, PFA, PPS, PVDF, PEI, RENY, and PTFE for advanced engineering-plastic screws, with PBI described as one of the engineering plastics at the highest levels of temperature limit and reliability. PFA is described as an injection-moldable PTFE-grade material combining PTFE-level chemical resistance with thermoplastic processing advantages, and is identified for high-purity fluid systems. PPS is presented for electrical and electronic fields because of heat resistance and electrical insulation, while the company's production technology focuses on improving PPS processability and stability for harsh environments. PVDF is described with strong chemical resistance, higher tensile, compressive, and impact strength than comparable fluorinated materials, high strength and toughness at low temperature, self-extinguishing behavior, and stability against chlorides, bromides, and energy radiation. PEI is described as an amber transparent solid with high-temperature stability plus mechanical strength, electrical insulation, radiation resistance, high- and low-temperature resistance, wear resistance, and microwave transmission. RENY MXD6 nylon is presented with low water absorption, high heat-deflection temperature, high tensile and bending strength, low molding shrinkage, and good O2 and CO2 gas-barrier performance, with uses in packaging, metal-replacement structures, magnetic plastics, and transparent adhesives. PTFE is described as a non-stick coating material with acid, alkali, and organic-solvent resistance, high-temperature performance, and a very low friction coefficient that supports lubrication and coating applications. The engineering-plastic range further includes PC, POM, PA6, PA66, PP, and PPGF, covering transparent heat- and impact-resistant PC, strong low-water-absorption POM, lightweight and wear-resistant PA6, higher-melting PA66, formulation-flexible PP, and PPGF combining light weight, low cost, and structural strength. PA6 is specifically associated with bearings, gears, cams, rollers, pulleys, pump impellers, fan blades, worm gears, gaskets, high-pressure seals, oil-resistant sealing gaskets, and daily-use products. PA66 is described for automotive applications, instrument housings, and other products requiring impact resistance and high strength, while retaining relatively strong strength and stiffness at higher temperatures. Advanced engineering-plastic screws are presented for semiconductor applications where heat resistance, chemical resistance, insulation, and mechanical strength are required. For optoelectronics, the same screw category is linked to optical components, display panels, LED modules, sensor housings, lens structures, and light-guiding transmission components, with heat resistance, dimensional stability, yellowing resistance, flame retardancy, and electrical insulation among the described requirements. Medical applications are described around biocompatibility, chemical resistance, sterilizability, mechanical strength, transparency, and machinability for diagnostic equipment, surgical instruments, and laboratory supplies. Food-industry applications include processing equipment, conveying systems, packaging equipment, storage equipment, and machine components that may face high-temperature steam, low-temperature freezing, frequent cleaning, and chemical disinfection while meeting food-contact requirements. For ICT equipment serving cloud computing, 5G communications, data centers, and high-speed transmission, the company highlights heat resistance, electrical insulation, and long-term reliability as important material characteristics. Automation applications involving precision machinery, robots, automated conveying, and sensing systems are linked to high wear resistance, low friction, dimensional stability, antistatic or conductive behavior, chemical-corrosion resistance, and high-temperature resistance for high-speed and long-duration operation. The company also compares PVDF and PTFE fasteners for acid and alkali corrosion environments and notes that even 316 stainless steel can suffer pitting and stress-corrosion cracking in some extreme conditions.
Company profile
PLASTIC AUTOMATION CO., LTD. (PLASAUTO) was established in 2010 and is committed to the research and development of highly functional engineering plastics for the future development of the plastics industry. Its R&D focus includes PEEK, RENY, and PPS materials designed for demanding conditions involving high temperature, corrosion, and long-term wear. The company also describes more than 20 years of professional experience in plastic injection molding and customized production through the related enterprise 駿弘富, with an R&D team that combines product innovation and production technology. PLASAUTO presents this combination of materials knowledge, injection-molding experience, customization, and R&D as the basis for producing high-end materials and related plastic products.