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Momentive fluorosilicone elastomers are an excellent choice for applications that require chemical, fuel, or solvent resistance under a wide range of temperatures. They are also unaffected by ozone, UV and gamma radiation, and harsh weather conditions, like rain, frost, and snow.
• Excellent resistance in automotive fluids, such as engine and hydraulic oils, fuels, and various mixtures
• High thermal stability
• Lowest temperature flexibility of all fluoroelastomers
• Constant modulus over a wide temperature range
• Low hardness without the addition of plasticizers
• Good tear strength
• Low compression set
Momentive fluorosilicones are the top choice for fuel systems. They offer a combination of high thermal stability up to 177°C (350°F) and superior resistance to petroleum fuels and hydrocarbon fluids. This makes them excellent for use in an array of applications, such as:
Over the last several years, the marketplace for molded silicone rubber parts has moved toward using liquid silicone rubber (LSR) due to its ease of processability, design versatility, excellent quality, and high productivity.
Liquid silicone rubbers offer intermediate fuel and solvent resistance; however, in very harsh environments, heat-cured fluorosilicones are still the material of choice due to their higher fluorine content, thermal stability, and superior solvent resistance. Fluorosilicone elastomers are available in two primary forms:
FSE Heat-Cured Elastomers: These can be processed with conventional high-consistency rubber processes, including injection molding, transfer or compression molding, extrusion, and calendering molding.
FSL Liquid Silicone Rubber: This range of products is excellent for use in conventional LSR injection molding applications.
VMQ silicones offer good flexibility, insulation, and heat resistance. However, fluorosilicones (FVMQ) have fluorinated side chains that provide superior resistance to oils, fuels, and hydrocarbon fluids.
Momentive fluorosilicone elastomers remain almost unaffected and provide long-lasting performance in contact with mineral and synthetic engine oils.
Momentive performance fluorosilicones provide low-volume swelling, making them excellent for use in static and dynamic seals around fuel systems.
It is essential for membrane and diaphragm parts to have high resistance to blow-by-gas mixtures and combustion byproducts.
Momentive fluoroelastomers provide excellent properties and remain flexible for long periods when exposed to elevated temperatures. They also offer superior performance at temperatures as low as −55°C and are useful at a wide temperature range of up to 200°C. Thermal conductivity of 0.25 W/m·K can also be modified by compounding. (Coefficient of thermal expansion 2 x 10-4 K-1).
It can be challenging to reach low hardness with various elastomers. Momentive fluorosilicone elastomers enable low hardness down to 20 Shore without the need for plasticizers. They also show excellent dielectric strength, arc resistance, and low compression for sealing applications such as O-rings and gaskets with complex designs.
Momentive fluorosilicone elastomers are used in almost all industries ranging from automotive and aerospace to chemical processing to O&G explorations. Applications include:
• O-rings and gaskets
• Membranes and diaphragms
• Seals in contact with fuel and oil
• Check valves
• Turbocharger hoses
Product |
Appearance |
Density g/ cm3 |
Hardness/ Durometer Shore A |
Tensile Strength, MPa |
Elongation, % |
Tear Strength, Die B N/mm |
Compression Set, % (Post-cured) |
---|---|---|---|---|---|---|---|
FSE7520 | White | 1.36 | 26 | 7.7 | 550 | 16 | 15 |
FSE7540 | White | 1.39 | 44 | 8.3 | 380 | 13 | 8 |
FSE7560 | White | 1.42 | 62 | 9.2 | 290 | 18 | 10 |
FSE7340 | Pale yellow | 1.43 | 43 | 11.2 | 500 | 42 | 8 |
FSE7360 | Pale yellow | 1.47 | 62 | 10.5 | 400 | 38 | 12 |
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