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9 Products found on Quantum Composites in
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Lytex® 9063-E
Functions:
Molding Compound
Chemical Family:
Epoxy & Epoxy Derivatives
Reinforcement Material:
Glass Fibers
Processing Methods:
Compression Molding
Lytex® 9063-E is an epoxy high performance, fiberglass reinforced ESC® molding compound designed for military and aerospace structural applications requiring excellent mechanical properties, retention of properties at elevated temperatures, good chemical resistance and excellent electrical properties. It meets the requirements of MIL-M-46069 and MIL-M-46892.
Lytex® 4149
Functions:
Molding Compound
Chemical Family:
Epoxy & Epoxy Derivatives
Reinforcement Material:
Carbon Fibers
Processing Methods:
Compression Molding
Lytex® 4149 is a chopped carbon fiber reinforced ESC® molding compound. It is easily moldable and provides parts that are high strength, fatigue resistant, with high heat resistance and a low density. The carbon fiber is standard modulus PAN based 3K tow.
AMC® 2593
Functions:
Molding Compound
Chemical Family:
Phenols & Phenolics
Reinforcement Material:
Carbon Fibers
Processing Methods:
Compression Molding
End Uses:
Tanks
AMC® 2593 is a chopped carbon fiber reinforced ESC® phenolic molding compound. It is easily moldable and provides parts that are high strength, with high heat resistance, low density and it exhibits low flammability characteristics. The carbon fiber is standard modulus PAN based 3K tow.
HTC™ 9593
Functions:
Molding Compound
Chemical Family:
Polyimides (PI)
Reinforcement Material:
Carbon Fibers
Processing Methods:
Compression Molding
End Uses:
Tanks
HTC™ 9593 is a chopped carbon fiber reinforced ESC® molding compound. It is easily moldable and provides parts that are high strength, fatigue resistant, with high heat resistance and a low density. The carbon fiber is standard modulus PAN based 3K tow.
Lytex® 4197
Functions:
Molding Compound
Chemical Family:
Epoxy & Epoxy Derivatives
Reinforcement Material:
Carbon Fibers
Processing Methods:
Compression Molding
Lytex® 4197 is a chopped carbon fiber reinforced ESC® molding compound. It is easily moldable and provides parts that are high strength, fatigue resistant, with high heat resistance and a low density. The carbon fiber is standard modulus PAN based 3K tow.
Lytex® 4181
Functions:
Molding Compound
Chemical Family:
Epoxy & Epoxy Derivatives
Reinforcement Material:
Carbon Fibers
Processing Methods:
Compression Molding
Lytex® 4181 is a chopped carbon fiber reinforced ESC® molding compound. It is easily moldable and provides parts that are high strength, fatigue resistant, with high heat resistance and a low density. The carbon fiber is standard modulus PAN based 12K tow.
Quantum Composites QC-2150LD
Functions:
Molding Compound
Chemical Family:
Phenols & Phenolics
Reinforcement Material:
Glass Fibers
Processing Methods:
Compression Molding
End Uses:
Tanks
Quantum Composites QC-2150LD is a chopped E-glass fiber reinforced ESC® molding compound. It exhibits outstanding low flammability characteristics. It is recommended for applications such as aircraft interiors and public transportation components requiring composite materials having very low flammability, low smoke, and minimal generation of toxic gasses.
HTC™ 9510
Functions:
Molding Compound
Chemical Family:
Polyimides (PI)
Reinforcement Material:
Glass Fibers
Processing Methods:
Compression Molding
End Uses:
Tanks
HTC™ 9510 is an E-Glass Fiber reinforced Bismaleimide (BMI) ESC® molding compound. It exhibits outstanding elevated temperature characteristics providing greatly extended service temperature range versus epoxy compounds for compression molding applications.
Quantum Composites QC-2550
Functions:
Molding Compound
Chemical Family:
Phenols & Phenolics
Reinforcement Material:
Glass Fibers
Processing Methods:
Compression Molding
End Uses:
Tanks
Quantum Composites QC-2550 is a chopped E-glass fiber reinforced ESC® molding compound. It exhibits outstanding low flammability characteristics. It is recommended for applications such as aircraft interiors and public transportation components requiring composite materials having very low flammability, low smoke, and minimal generation of toxic gasses.