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The influence of pre-compression on the creep deformation and failure behaviour of Type 316H stainless steel

机译:预压缩对316H型不锈钢蠕变变形和破坏行为的影响

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The influence of pre-compression to 8% plastic strain at room temperature has been examined on the tensile properties, uniaxial creep deformation, creep crack initiation and growth behaviour of Type 316H stainless steel at 550 °G Uniaxial creep and crack growth tests have been performed on the pre-compressed (PC) material and the results compared to existing long term (>15,000 h) and short term test data on as-received (AR) (i.e. uncompressed) material. Pre-compression has been found to increase the materials subsequent yield stress in tension. Therefore the extent of non-linearity observed on the load-displacement curves of uniaxial creep rupture and crack growth tests on PC material is limited compared to AR material. In addition pre-compression causes a significant reduction in creep ductility and rupture time, although similar average and minimum creep strain rates are found in PC and AR materials. The creep crack growth (CCG) data on PC and AR materials have been characterised using the steady state creep C parameter employing appropriate validity criteria and geometry dependent fracture mechanics parameter solutions. The CCG results are compared to the creep crack growth prediction models. Based on the creep properties, creep ductility and metallurgical observations of the fracture behaviour of the AR and PC materials, it has been shown that short term creep crack growth tests on PC material may be used to predict long term creep crack initiation (CCI) and CCG behaviour of AR material at 550℃
机译:研究了室温下预压缩至8%塑性应变对316H不锈钢在550°G时的拉伸性能,单轴蠕变变形,蠕变裂纹萌生和扩展行为的影响。已经进行了单轴蠕变和裂纹扩展测试。在预压缩(PC)材料上进行比较,并将结果与​​现有(AR)(即未压缩)材料上的长期(> 15,000 h)和短期测试数据进行比较。已经发现预压缩会增加材料的后续屈服应力。因此,与AR材料相比,在PC材料的单轴蠕变断裂和裂纹扩展测试的载荷-位移曲线上观察到的非线性程度受到限制。另外,尽管在PC和AR材料中发现了相似的平均和最小蠕变应变率,但预压缩会导致蠕变延展性和断裂时间大大降低。 PC和AR材料上的蠕变裂纹扩展(CCG)数据已使用稳态蠕变C参数(采用适当的有效性标准)和与几何相关的断裂力学参数解进行了表征。将CCG结果与蠕变裂纹扩展预测模型进行比较。根据AR和PC材料的蠕变特性,蠕变延性和冶金观察,已表明,对PC材料进行的短期蠕变裂纹扩展测试可用于预测长期蠕变裂纹萌生(CCI)和550℃下AR材料的CCG行为

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