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Dip-Test Internal Stress and the Composite Model of Creep Deformation

机译:浸渍测试内应力和蠕变变形的复合模型

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The composite model of plastic deformation is regarded as a realistic approximation of creep behaviour at elevated temperatures in a well-developed substructure consisting of dislocation-dense subgrain boundaries (hard regions) and subgrain interiors (soft regions) with relatively low dislocation density. In the present contribution, the model is applied for an estimation of internal stresses that are experimentally measured by the dip-test technique. Two situations are considered within the model: (i) the density of moving dislocations is the same in both hard and soft regions and (ii) the density of moving dislocations is proportional to the local density in the respective region. The model enables to express the internal stress in terms of microstmctural variables found by independent microscopic observations. It is shown that the magnitude of volume fraction of hard and soft region in the composite model has only a small effect on the value of internal stress.
机译:塑性变形的复合模型被认为是由具有相对低位密度的脱位 - 致密的粒度(硬区域)和粒区域(软区)组成的升高温度下的蠕变性能的蠕变行为的现实近似。在本贡献中,该模型用于通过DIP-Test技术实验测量的内部应力的估计。在模型中考虑了两个情况:(i)在硬质且软的区域中移动脱位的密度是相同的,并且(ii)移动脱位的密度与各个区域中的局部密度成比例。该模型能够以独立的微观观察发现的微观变量来表达内部应力。结果表明,复合模型中硬质和软区域的体积分数的大小仅对内应力的值效果。

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