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Analysis of structures based on a characteristic-strain model of creep

机译:基于蠕变特征应变模型的结构分析

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A companion paper [Bolton J. In: A characteristic-strain model for creep, ECCC/I.Mech.E. conference on creep and fracture in high-temperature components, London, September 2005] describes a creep model based on a constant "characteristic strain" at any temperature. The present paper discusses the application of such a model, first to simple structures and then to engineering components of general form under steady loading. A basis is proposed for identifying the stress within a structure, or within the critical part of a structure, which can be considered to govern both its overall and local deformations. The concept is similar to skeletal-point stress but is more readily applied to components of any shape. The implementation of the concept of "structural stress" is discussed in the context of finite-element creep calculations. Consideration is given to the analysis of cracked structures, where very high strains at the crack tip must be accommodated.
机译:伴随论文[Bolton J. In:蠕变的特征应变模型,ECCC / I.Mech.E。高温部件蠕变和断裂会议,伦敦,2005年9月]描述了一个在任何温度下基于恒定“特征应变”的蠕变模型。本文讨论了这种模型的应用,首先是在稳定载荷下对简单结构然后是对一般形式的工程组件的应用。提出了一种用于识别结构内或结构关键部分内的应力的基础,该应力可被视为控制其整体变形和局部变形。该概念类似于骨骼点应力,但更容易应用于任何形状的组件。在有限元蠕变计算的背景下讨论了“结构应力”概念的实现。考虑到裂纹结构的分析,必须在裂纹尖端处承受很高的应变。

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