1. 华东理工大学机械与动力工程学院承压系统与安全教育部重点实验室
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沈孝鹏, 轩福贞. 应力多轴效应对316不锈钢蠕变设计准则的影响[J]. 机械强度, 2016,38(5):1087-1092.
SHEN XiaoPeng, XUAN FuZhen. IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN[J]. 2016,38(5):1087-1092.
沈孝鹏, 轩福贞. 应力多轴效应对316不锈钢蠕变设计准则的影响[J]. 机械强度, 2016,38(5):1087-1092. DOI: 10.16579/j.issn.1001.9669.2016.05.032.
SHEN XiaoPeng, XUAN FuZhen. IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN[J]. 2016,38(5):1087-1092. DOI: 10.16579/j.issn.1001.9669.2016.05.032.
ASME NH高温结构设计标准中对结构的非弹性应变提出了限值,但该应变限值存在诸多争议,如未考虑应力多轴效应的影响,且对所有材料设定统一的设计容限值等。对550℃下承受内压的316不锈钢弯头进行了蠕变模拟,主要研究应力多轴效应对蠕变设计中应变容限的影响。使用含有损伤参量的本构方程,并根据延性耗竭模型定义了新的损伤参量。当弯头的薄膜应变和弯曲应变达到ASME NH中相应限值时,考察各损伤参量是否达到相应的临界值,以确定该应变限值是否保守。结果显示,当弯头的薄膜应变达到1%的限值时,弯头中的各损伤参量远小于相应的临界值。这说明对于316不锈钢,ASME NH中的非弹性应变的限值在多轴效应存在的情况下仍然是保守的,可以用于该温度下含多轴应力状态结构的设计和校核。
ASME NH high-temperature design code put limits on inelastic strain. However,there are several arguments about this provision. For instance,the multi-axial effect and different design margins for different materials were not considered.In this paper,a 316 stainless steel 90°elbow at 550℃ was simulated to study impact of multi-axial effect on creep design strain margin. A continuum damage constitutive model was used,also new damage variables were defined based on multi-axial creep ductility theory. These damage variables were investigated when strains of the elbow reached corresponding limits in order to judge whether ASME NH strain limits are conservative. It is shown that all the damage variables are well below unity when the membrane strain of the elbow reaches the strain limits of 1%. It is thus concluded that ASME NH strain limits is still conservative when multi-axial effect is considered in a 316 stainless steel structure and can be used for design and verification at this temperature.
316不锈钢ASME NH应力多轴度应变线性化蠕变延性
316 stainless steelASME NHMulti-axial effectStrain linerizationCreep ductility
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