Thermal Properties | Metric | English | Comments |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 °C |
10.3 µin/in-°F @Temperature 68.0 °F |
ASTM D696 |
Covestro Petlon® 8535 Semi-Crystalline PET, 35% Mineral/Glass Fiber
(discontinued **) Characteristics: Impact Modified: Excellent Electrical Properties, High Heat ResistanceApplications: Automotive (Under Hood), Appliances, Casings and HousingsProcessing: Injection Molding (Melt Temp.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 °C |
10.3 µin/in-°F @Temperature 68.0 °F |
ASTM D696 |
Covestro Petlon® 4835 Semi-Crystalline PET, 35% Mineral/Glass Fiber
(discontinued **) Characteristics: Flame Retardant: Good Processability, Low Warpage, High RigidityApplications: Appliance, Telecommunication and Electrical HousingsProcessing: Injection Molding (Melt Temperature: 49.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 °C |
10.3 µin/in-°F @Temperature 68.0 °F |
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Cookson Group Plaskon® S-7S Epoxy Encapsulant
(discontinued **) Test specimens were transfer molded and post cured 4 hours at 175°C.A low stress, low viscosity epoxy encapsulant designed for packaging stress-sensitive semiconductor devices. It is specifically .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, 1/2 Hardened The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, 1/4 Hardened The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, 1/8 Hardened The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, 3/4 Hardened The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, Annealed The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316 Austenitic Stainless Steel, Full Hardened The Mo addition increases general corrosion resistance to pitting from chloride ion solutions, and provides increased strength at elevated temperatures. Properties are similar to those of Type 304 .. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, 1/2 Hardened Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, 1/4 Hardened Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, 1/8 Hardened Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, 3/4 Hardened Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, Annealed Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 20.0 - 649 °C |
10.3 µin/in-°F @Temperature 68.0 - 1200 °F |
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Eagle Brass 316L Austenitic Stainless Steel, Full Hardened Type 316L is an extra-low carbon version of Type 316 that minimizes carbide precipitation. Typical uses include exhaust manifolds, furnace parts, heat exchangers, jet engine parts, pharmaceutical a.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
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Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 35% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
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Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 48% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
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Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 52% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
|
Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 60% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
|
Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 70% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
|
Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, 90% Cold Worked Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |
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CTE, linear | 18.5 µm/m-°C @Temperature 0.000 - 649 °C |
10.3 µin/in-°F @Temperature 32.0 - 1200 °F |
|
Carpenter BioDur™ 316LS Stainless Medical Implant Alloy, Annealed Data provided by Carpenter Technology Corporation.Medical Implant Alloy. Vacuum arc remelted (VAR), low carbon version of Type 316 stainless. The secondary premium melting step (VAR) imparts impro.. |