A Continual Model of Damaged Media for Describing the Creep Failure Process

I. Volkov, L. Igumnov, S. Litvinchuk
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Abstract

The main laws of deformation and degradation processes of the initial strength properties of structural materials (metals and their alloys) according to the long-term strength mech-anism were considered. From the viewpoint of the mechanics of damaged media (MDM), a mathematical model was created to describe inelastic deformation and damage accumulation during the creep process. An experimental and theoretical methodology for determining material parameters of the derived defining relations of MDM was developed. The material parameters and scalar functions of the MDM model, its reliability and the scope of its ap-plicability were determined based on the analysis of the processes of deformation and failure of laboratory specimens in the conditions of soft loading (controlled stresses). The results of the experimental study of short-term creep of the VZh-159 heat-resistant alloy were presented. The process of deformation and damage accumulation was numerically analyzed; the obtained numerical results were compared with the data of the full-scale experiments. Comparison of the numerical and experimental data shows that the introduced defining relations of MDM adequately describe the response of materials in the conditions of degradation of the initial strength properties of structural materials according to the long-term strength mechanism.
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描述蠕变破坏过程的损伤介质连续模型
根据长期强度机理,考虑了结构材料(金属及其合金)初始强度性能的主要变形规律和退化过程。从损伤介质力学的角度出发,建立了描述蠕变过程中非弹性变形和损伤积累的数学模型。开发了一种确定MDM派生定义关系的材料参数的实验和理论方法。通过分析实验室试件在软加载(控制应力)条件下的变形破坏过程,确定了MDM模型的材料参数和标量函数,确定了MDM模型的可靠性和适用范围。介绍了VZh-159耐热合金短期蠕变的试验研究结果。对变形和损伤积累过程进行了数值分析;所得数值结果与全尺寸实验数据进行了比较。数值与实验数据的对比表明,所引入的MDM定义关系能够根据长期强度机制,较好地描述材料在结构材料初始强度特性退化条件下的响应。
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审稿时长
17 weeks
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