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A UNIFIED ENGINEERING INELASTIC MODEL FOR 316H STAINLESS STEEL

机译:316H不锈钢的统一工程弹性模型。

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Section Ⅲ, Division 5 of the ASME Boiler & Pressure Vessel Code provides rules for designing high temperature nuclear components using inelastic analysis. However, the current Code does not provide guidance on suitable inelastic constitutive models to use with this design method nor does it provide Code qualified constitutive models for any of the high temperature Class A materials. This paper describes the development of an inelastic constitutive model for 316H steel, suitable for use with the Division 5 design procedures. The model captures the average response of all Code permissible 316 material as described by a large set of experimental data collected from the literature. The model uses a unified model to describe creep and rate dependent plasticity at high temperature that accounts for the experimentally-observed coupling of these deformation mechanisms. The goal is to incorporate the inelastic model developed here for 316H along with similar models for the other Class A, high temperature materials into Section III, Division 5 to facilitate the use of the design by inelastic analysis method.
机译:《 ASME锅炉和压力容器规范》第5部分第Ⅲ节提供了使用非弹性分析设计高温核组件的规则。但是,当前规范未提供适用于此设计方法的合适的非弹性本构模型的指南,也未提供任何适用于A类高温材料的规范合格本构模型。本文介绍了适用于Division 5设计程序的316H钢非弹性本构模型的开发。如从文献中收集的大量实验数据所描述的,该模型捕获了所有Code允许的316材料的平均响应。该模型使用统一模型描述高温下蠕变和速率相关的可塑性,这是这些变形机制在实验上观察到的耦合。目标是将此处针对316H开发的非弹性模型与其他A类高温材料的相似模型合并到第三部分,第5部分中,以利于通过非弹性分析方法进行设计。

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