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Typical Properties of G-10 FR-4 Glass Epoxy Laminate Natural
Typical Properties of G-10 FR-4 Glass Epoxy Laminate Natural
Nylatron™ 66 SA FR PA66 Polyamide 66 Technical Data Sheet
Nylatron™ SA flame retardant (FR) polyamide PA66 profiles have been developed to fulfil the requirements of the flammability test for plastics, which determines the tendency of a material to either extinguish or spread a flame once ignited. The test procedure is described in UL 94, and this particular Nylatron™ grade meets the V-0 standard for 1 mm thickness, as well as the requirements of the EN 45545-2 regulation, which is specific to railway applications. For these reasons, Nylatron™ SA FR PA66 components are often the preferred solution for applications in the transport and railway markets, such as cable supports, clamps and channels, and connections/sockets.
Techtron™ GF40 PPS Polyphenylene Sulfide Technical Data Sheet
Techtron™ GF40 PPS is a 40% glass fiber-reinforced grade that exhibits higher stiffness and creep resistance than other PPS grades. Because of its improved dimensional stability, this grade excels in structural applications involving a high static load, even for long periods of time and at elevated temperatures. While the glass fiber reinforcement improves the dimensional stability of the material, this additive can abrade mating surfaces in sliding parts.
TECANAT GF30 natural Polycarbonate 30% glass fibre reinforced
TECANAT GF30 natural Polycarbonate 30% glass fibre reinforced Technical Data Sheet
Duratron™ T5530 PAI Polyamide-Imide technical data sheet
Duratron™ T5530 PAI is a compression-molded, 30% glass-reinforced material that offers high stiffness, strength and creep resistance. Although similar in composition to Duratron™ T5030 PAI, Duratron™ T5530 PAI comes in larger geometries, making it ideal for structural applications meant to support high static loads for extended periods of time, especially at high temperatures. Additionally, Duratron™ T5530 PAI exhibits superior dimensional stability up to 250°C (482°F), making it a favored solution for precision parts in the semiconductor and electronics industry.
Duratron™ T5030 PAI Polyamide-Imide Technical Data Sheet
Duratron™ T5030 PAI offers high rigidity, retention of stiffness, a low expansion rate and outstanding load-carrying capabilities. As a 30% glass-reinforced polyamideimide material, this grade is ideal for structural applications within the semiconductor and electronics and aerospace industries. It is well suited for structural applications supporting static loads for long periods of time at high temperatures. In addition, Duratron™ T5030 PAI exhibits superb dimensional stability up to 260°C (500°F) making it extremely popular for precision parts in the electronical and semiconductor industries. The suitability of Duratron™ T5030 PAI for sliding parts, however, is to be carefully examined since the glass fibers tend to abrade the mating surface.
Torlon 4203 Technical Data Sheet
Torlon® 4203 polyamide-imide offers excellent compressive strength and the highest elongation of the Torlon grades. Several manufacturers offer bearing grade versions by the tradenames Duratron® PAI, and Tecator®. It provides electrical insulation and exceptional impact strength. Torlon® 4203 is commonly used for electrical connectors and insulators due to its high dielectric strength. It is also an excellent choice for bearing and wear applications involving impact loading and abrasive environments. Its ability to carry high loads over a broad temperature range makes it ideal for structural components such as linkage bearings and seal rings.
Duratron™ T4301 PAI AE Polyamide-Imide Technical Data Sheet
Duratron™ T4301 PAI AE (aerospace) offers a very low expansion rate and coefficient of friction and also exhibits little to no slip-stick in use. The addition of PTFE and graphite provides higher wear resistance compared to the unfilled Duratron™ T4203 PAI grade and also gives Duratron™ T4301 PAI AE excellent dimensional stability capabilities over a wide temperature range. Duratron™ T4301 PAI AE's flexural modulus of elasticity is higher than most other advanced engineering plastics, which allows it to excel in severe service wear applications in aerospace engineering such as non-lubricated bearings, seals, bearing cages and reciprocating compressor parts.
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