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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Temperature effects on the mechanical properties of candidate SNS target container materials after proton and neutron irradiation
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Temperature effects on the mechanical properties of candidate SNS target container materials after proton and neutron irradiation

机译:温度对质子和中子辐照后候选SNS目标容器材料力学性能的影响

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This report presents the tensile properties of EC316LN austenitic stainless steel and 9Cr-2WVTa ferritic/martensitic steel after 800 MeV proton and spallation neutron irradiation to doses in the range 0.54-2.53 dpa at 30-100 degreesC. Tensile testing was performed at room temperature (20 degreesC) and 164 degreesC. The EC316LN stainless steel maintained notable strain-hardening capability after irradiation, while the 9Cr-2WVTa ferritic/martensitic steel posted negative hardening in the engineering stress-strain curves, In the EC316LN stainless steel, increasing the test temperature from 20 to 164 degreesC decreased the strength by 13-18% and the ductility by 8-36%. The effect of test temperature for the 9Cr-2WVTa ferritic/martensitic steel was less significant than for the EC316LN stainless steel. In addition, strain-hardening behaviors were analyzed for EC316LN and 316L stainless steels. The strain-hardening rate of the 316 stainless steels was largely dependent on test temperature. A calculation using reduction of area measurements and stress-strain data predicted positive strain hardening during plastic instability.. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 28]
机译:该报告介绍了在30-100℃下800 MeV质子和散裂中子辐照剂量范围为0.54-2.53 dpa时EC316LN奥氏体不锈钢和9Cr-2WVTa铁素体/马氏体钢的拉伸性能。在室温(20℃)和164℃下进行拉伸试验。 EC316LN不锈钢在辐照后仍保持显着的应变硬化能力,而9Cr-2WVTa铁素体/马氏体钢在工程应力-应变曲线中表现出负性硬化。在EC316LN不锈钢中,将测试温度从20升高到164℃会降低强度提高13-18%,延展性提高8-66%。 9Cr-2WVTa铁素体/马氏体钢的测试温度影响不如EC316LN不锈钢显着。此外,还对EC316LN和316L不锈钢的应变硬化行为进行了分析。 316不锈钢的应变硬化率在很大程度上取决于测试温度。使用面积测量值的减少和应力应变数据进行的计算可预测塑性不稳定性期间的正应变硬化。(C)2002 Elsevier Science B.V.保留所有权利。 [参考:28]

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