Thermal Properties | Metric | English | Comments |
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CTE, linear | 1.00 µm/m-°C | 0.556 µin/in-°F | ASTM D696 |
Palm Labs Adhesives TURBO FUSE METHYL FOR METALS (75-95 Viscosity) Rapid Bonding Adhesive Palm Lab's Methyl Cyanoacrylate is a one component rapid bonding adhesive ideal for metal surfaces. TURBO FUSE METHYL’s advanced formula is designed to polymerize instantly by absorbing surface moi.. |
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CTE, linear | 1.00 - 510 µm/m-°C | 0.556 - 283 µin/in-°F | Average value: 161 µm/m-°C Grade Count:43 |
Overview of materials for Thermoset Polyurethane, Adhesive This property data is a summary of similar materials in the MatWeb database for the category "Thermoset Polyurethane, Adhesive". Each property range of values reported is minimum and maximum values .. |
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CTE, linear | 1.00 - 23.0 µm/m-°C | 0.556 - 12.8 µin/in-°F | Average value: 5.74 µm/m-°C Grade Count:31 |
Overview of materials for Liquid Crystal Polymer (LCP), 40% Glass Fiber Filled This property data is a summary of similar materials in the MatWeb database for the category "Liquid Crystal Polymer (LCP), 40% Glass Fiber Filled". Specific grades with glass content between 35% an.. |
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CTE, linear | 1.00 - 10.0 µm/m-°C | 0.556 - 5.56 µin/in-°F | Average value: 5.67 µm/m-°C Grade Count:3 |
Overview of materials for Phenolic, Carbon Fiber Composite This property data is a summary of similar materials in the MatWeb database for the category "Phenolic, Carbon Fiber Composite". Each property range of values reported is minimum and maximum values .. |
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CTE, linear | <= 1.00 µm/m-°C | <= 0.556 µin/in-°F | adjustable |
MarkeTech MC-LD and MC-MD Ultra High Temperature Machinable Ceramics For very high temperatures or where thermal conductivity or thermal shock is important, these machinable alkaline/alkaline earth zirconium phosphate ceramics (NaZr2P3O12 or BaZr4P6O24) are recommend.. |
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CTE, linear | 1.00 - 5.00 µm/m-°C | 0.556 - 2.78 µin/in-°F | (x-y) |
GrafTech GRAFCELL® FFP-100 SERIES Flow Field Plate Graphite Manufactured from expanded natural graphite, GRAFCELL® Flow Field Plate (FFP) components retain a continuous graphitic phase. This phase continuity, combined with a low contact resistance, provid.. |
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CTE, linear | 1.00 - 5.00 µm/m-°C | 0.556 - 2.78 µin/in-°F | (x-y) |
GrafTech GRAFCELL® FFP-200 SERIES Flow Field Plate Graphite Manufactured from expanded natural graphite, GRAFCELL® Flow Field Plate (FFP) components retain a continuous graphitic phase. This phase continuity, combined with a low contact resistance, provid.. |
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CTE, linear | 1.00 - 5.00 µm/m-°C | 0.556 - 2.78 µin/in-°F | (x-y) |
GrafTech GRAFCELL® FFP-300 SERIES Flow Field Plate Graphite Manufactured from expanded natural graphite, GRAFCELL® Flow Field Plate (FFP) components retain a continuous graphitic phase. This phase continuity, combined with a low contact resistance, provid.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT110 Boron Nitride (BN) Powder Fine Hexagonal BN PowderWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic comp.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT120 Boron Nitride (BN) Powder Fine Hexagonal BN PowderWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic comp.. |
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CTE, linear | 1.00 µm/m-°C @Temperature -30.0 - 70.0 °C |
0.556 µin/in-°F @Temperature -22.0 - 158 °F |
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Schott GM31684 Dental Glass Remarks: High refractive index glass ceramicApplication: CompositeAdvantagesGreater variety of composition and refractive indiciesOutstanding transparencyBest radiopacitiesInformation Provided by SC.. |
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CTE, linear | 1.00 µm/m-°C @Temperature -30.0 - 70.0 °C |
0.556 µin/in-°F @Temperature -22.0 - 158 °F |
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Schott GM31685 Dental Glass Remarks: Low refractive index glass ceramicApplication: CompositeAdvantagesGreater variety of composition and refractive indiciesOutstanding transparencyBest radiopacitiesInformation Provided by SCH.. |
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CTE, linear | 1.00 µm/m-°C @Temperature 20.0 - 750 °C |
0.556 µin/in-°F @Temperature 68.0 - 1380 °F |
BSÂ 1902: section 5.3: 1990 |
Skamol Group ISOPERLOR 550P Perlite Insulating Brick & Block ISOPERLOR perlite insulating bricks & blocks have the following characteristics: Max. service temperature 900°C (1652°F)Back-up insulation onlyExcellent insulating propertiesVery lightweight a.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 - 600 °C |
<= 0.556 µin/in-°F @Temperature 68.0 - 1110 °F |
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CeramTec ALUTIT® S Aluminum Titanate (Strength Optimized) ALUTIT®, which is produced in a special reaction-sintering process, consists of high-purity aluminum oxide and titanium oxide. It offers excellent resistance to sudden changes in temperature, good .. |
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CTE, linear | 1.00 µm/m-°C @Temperature 23.0 - 1500 °C |
0.556 µin/in-°F @Temperature 73.4 - 2730 °F |
Secant Value |
Carlisle 201HD Carbon-Carbon Composite Carbon-Carbon Composite manufactured as sheets from 4mm to 125mm thick this material is essentially a fracture tough, fiber reinforced graphite often referred to as a “CFC”. Good for use in air t.. |
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CTE, linear | 1.00 µm/m-°C @Temperature 23.0 - 1500 °C |
0.556 µin/in-°F @Temperature 73.4 - 2730 °F |
Secant Value |
Carlisle 201HL Carbon-Carbon Composite Carbon-Carbon Composite manufactured as sheets from 4mm to 125mm thick this material is essentially a fracture tough, fiber reinforced graphite often referred to as a “CFC”. Good for use in air t.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT140 Boron Nitride (BN) Powder Fine Hexagonal BN PowderWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic componen.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT160 Boron Nitride (BN) Powder Fine Hexagonal BN PowderWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic componen.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT180 Boron Nitride (BN) Powder Fine Hexagonal BN PowderWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic componen.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT350 Boron Nitride (BN) Powder Low Density BN AgglomerateWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic compon.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT370 Boron Nitride (BN) Powder Low Density BN AgglomerateWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic compon.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT620 Boron Nitride (BN) Powder High Density BN AgglomerateWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic comp.. |
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CTE, linear | <= 1.00 µm/m-°C @Temperature 20.0 °C |
<= 0.556 µin/in-°F @Temperature 68.0 °F |
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Momentive Performance Materials PolarTherm® PT670 Boron Nitride (BN) Powder High Density BN AgglomerateWhen used in a variety of polymeric materials, PolarTherm™'s heat dissipating capability helps extend the service life and enhance the reliability of electronic comp.. |