Low cycle fatigue - strain control test data for AISI 304L ar material at 300 °C (specimen identifier EDF_REP_6) (doi:10.5290/2240007
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Uniaxial tensile test data for 15-15 Ti cw material at 23 °C (specimen identifier 46CW_01_023) (doi:10.5290/1710004
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Uniaxial tensile test data for 15-15 Ti cw material at 23 °C (specimen identifier 46CW_02_023) (doi:10.5290/1710005
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Uniaxial tensile test data for 15-15 Ti cw material at 21 °C (specimen identifier 46CW_16_021) (doi:10.5290/1710006
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Low cycle fatigue - strain control test data for AISI 304L ar material at 300 °C (specimen identifier SC-8) (doi:10.5290/2210004
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Low cycle fatigue - strain control test data for AISI 304L ar material at 300 °C (specimen identifier PSIair7) (doi:10.5290/2250016
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Small punch tensile/fracture test data for 15-15 Ti cw material at 20 °C and a displacement rate of .005 mm/s (specimen identifier AV-001) (doi:10.5290/1700115
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Small punch tensile/fracture test data for 15-15 Ti cw material at 20 °C and a displacement rate of .005 mm/s (specimen identifier AV-002) (doi:10.5290/1700116
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Small punch tensile/fracture test data for 15-15 Ti cw material at 20 °C and a displacement rate of .005 mm/s (specimen identifier AV-003) (doi:10.5290/1700117
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Small punch tensile/fracture test data for 15-15 Ti cw material at 400 °C and a displacement rate of .005 mm/s (specimen identifier AV-004) (doi:10.5290/1700118
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Small punch tensile/fracture test data for 15-15 Ti cw material at 550 °C and a displacement rate of .005 mm/s (specimen identifier AV-006) (doi:10.5290/1700119
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Small punch tensile/fracture test data for 15-15 Ti cw material at 600 °C and a displacement rate of .005 mm/s (specimen identifier AV-007) (doi:10.5290/1700120
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Small punch tensile/fracture test data for 15-15 Ti cw material at 650 °C and a displacement rate of .005 mm/s (specimen identifier AV-009) (doi:10.5290/1700121
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Small punch tensile/fracture test data for 15-15 Ti cw material at 425 °C and a displacement rate of .005 mm/s (specimen identifier AV-010) (doi:10.5290/1700122
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.003 mN (ninetieth nominally repeat test) (doi:10.5290/1200225
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.004 mN (third nominally repeat test) (doi:10.5290/1200018
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.003 mN (sixth nominally repeat test) (doi:10.5290/1200020
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.003 mN (ninth nominally repeat test) (doi:10.5290/1200023
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.004 mN (fourth nominally repeat test) (doi:10.5290/1200025
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2 mN (doi:10.5290/1200028
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Nanoindentation (single cycle) test data for Model Alloy (Fe-9Cr) material at 23 °C and maximum indenter force of 2.003 mN (tenth nominally repeat test) (doi:10.5290/1200029
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