What are heat-resistant materials? An introduction focusing on polymers and resins.
PBI coating - PI coating
We will introduce heat-resistant materials with high thermal resistance among polymer, resin, and plastic.
Heat-resistant materials refer to those that possess stability against high temperatures and experience little to no degradation. - Polyimide (PI) A resin with very high heat resistance, usable over an extremely wide temperature range. It is widely used in electronics, aerospace, and the automotive industry, particularly where performance at high temperatures is required. - Polybenzimidazole (PBI) PBI has very high heat resistance and remains stable even under high-temperature conditions exceeding 500°C, depending on the circumstances. It is used in aerospace and fire-resistant applications. - Polyetheretherketone (PEEK) With high heat resistance and excellent durability in high-temperature environments, PEEK is utilized in various fields, including aerospace, the automotive industry, and medical devices, due to its outstanding chemical resistance and mechanical properties. - Polyethersulfone (PES) A resin with high heat resistance and chemical resistance, PES is used in the automotive industry, medical devices, and electronic components. - Silicone Resin Known for its excellent heat resistance and usability over a wide temperature range, silicone resin also possesses weather resistance, chemical resistance, and excellent electrical insulation properties. It is widely used in electronic components, waterproof coatings, and high-temperature sealing materials.
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basic information
Fluoropolymers are a general term for polymers that contain fluorine, including PTFE, PFA, FEP, and ETFE. They possess very high heat resistance and non-stick properties, and also excel in electrical insulation and chemical resistance.
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Applications/Examples of results
These resins are developed for various industries and components that require use under high temperatures and harsh conditions. In addition to being heat-resistant, each has different properties, so it is important to select the appropriate resin according to the application.
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To maximize the performance of manufacturing equipment and machine parts, Yoshida SKT derives the "optimal solution" tailored to our customers from hundreds of surface treatment technologies. - Decreased productivity due to adhesive troubles - Instability in product quality due to friction - Early deterioration of equipment due to corrosion We respond to these challenges in the manufacturing field with our extensive track record and reliable technical expertise. In 1963, we began fluoropolymer processing. In 1968, we signed a licensing agreement with DuPont (now Chemours), supporting manufacturing innovations for over 2,000 customers across various industries, from automotive to medical and aerospace. Furthermore, in 2024, we are focusing on the development of next-generation products, such as PFAS-free coatings, contributing to the advancement of sustainable manufacturing. With a three-base system in Nagoya, Tokyo, and Yamaguchi, we flexibly respond to both mass production and custom orders. Our consistent quality management system ensures that we deliver reliable quality. For solving challenges in the manufacturing field, trust the surface treatment experts at Yoshida SKT.