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The behavior of structures based on the characteristic strain model of creep

机译:基于蠕变特征应变模型的结构行为

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摘要

There has been much work over the past two decades to aid the design and assessment engineer in the selection of a suitable material model of creep for high temperature applications. The model needs to be simple to implement as well as being able to describe material response over long times. Familiar creep models, as implemented in the majority of nonlinear finite element analysis systems, are still widely used although not always accurate in modeling creep behavior at the end of the secondary phase. The Characteristic Strain Model (CSM) has been shown to be able to effectively model creep behavior at long times; it is simple to implement and requires a minimum of creep data. This paper examines the ability of the CSM to model the recognized behavior of the steady state creep of simple structures under multiaxial stress.
机译:在过去的二十年中,已经进行了很多工作来帮助设计和评估工程师选择适合高温应用的蠕变材料模型。该模型必须易于实现,并且能够描述长时间的物质响应。大多数非线性有限元分析系统都采用了熟悉的蠕变模型,尽管在第二阶段结束时对蠕变行为的建模并不总是准确的。研究表明,特性应变模型(CSM)能够长时间有效地模拟蠕变行为。它易于实现,并且所需的蠕变数据最少。本文研究了CSM建模简单结构在多轴应力下的稳态蠕变行为的能力。

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