Mechanical Properties | Metric | English | Comments |
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Tensile Modulus | 210 GPa | 30500 ksi | |
International Mold Steel Daido DRM1 Matrix High-Speed Steel This tough matrix type high speed tool steel features high hardness and high tough Matrix type high speed tool steel vastly surpasses hot work die steels. DRM1 improves hot and warm die life by its .. |
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Tensile Modulus | 210 GPa | 30500 ksi | |
International Mold Steel Daido DRM2 Matrix High-Speed Steel This matrix type high speed tool steel is available for warm and cold forging tools where critical performance is required. DRM2 prolongs service life due to its higher hardness and toughness than t.. |
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Tensile Modulus | 210 GPa | 30500 ksi | |
International Mold Steel Daido DRM3 Matrix High-Speed Steel This conventional grade MH88 has been improved to DRM3. High hardness and tough DRM3 with excellent hardenability is suitable for high precision cold working tools.Information provided by Internatio.. |
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Tensile Modulus | 210 GPa | 30500 ksi | Young's; DINV ENV 843-2 |
CeramTec MZ 111 HIP Zirconia, ZrO2-Y2O3 MZ 111 HIP is a yttria-stabilized tetragonal zirconia ceramic. |
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Tensile Modulus | 210 GPa | 30500 ksi | Young's; DINV ENV 843-2 |
CeramTec MZ 111 Zirconia, ZrO2-Y2O3 MZ 111 is a yttria-stabilized tetragonal zirconia used in dental applications. |
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Tensile Modulus | 210 GPa | 30500 ksi | Young's; DINV ENV 843-2 |
CeramTec MZ 429 Zirconia, ZrO2-Y2O3 MZ 429 is a yttria-stabilized zirconia ceramic. |
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Tensile Modulus | 210 GPa | 30500 ksi | Young's; DINV ENV 843-2 |
CeramTec ZN 40 Zirconia, ZrO2-MgO ZN 40 is a zirconium oxide ceramic with an excellent surface finish and a higher strength than aluminum oxide. Its good crack resistance and anti-friction properties, combined with steel-like therma.. |
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Tensile Modulus | 210 GPa | 30500 ksi | 0° |
Hexcel® HexPly® EH 84 120°C Curing Epoxy Matrix, High Modulus 12k carbon UD tape 110 g/m2 Information provided by HexCel |
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Tensile Modulus | 210 GPa | 30500 ksi | |
COI Ceramics Nicalon™ CG SiCO Ceramic Fiber Description: The fiber is homogeneously composed of ultra-fine beta-SiC crystallites and an amorphous mixture of silicon, carbon, and oxygen. The fiber has excellent strength and modulus properties .. |