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A simple model for indentation creep

机译:压痕蠕变的简单模型

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A simple model for indentation creep is developed that allows one to directly convert creep parameters measured in indentation tests to those observed in uniaxial tests through simple closed-form relationships. The model is based on the expansion of a spherical cavity in a power law creeping material modified to account for indentation loading in a manner similar to that developed by Johnson for elastic-plastic indentation (Johnson, 1970). Although only approximate in nature, the simple mathematical form of the new model makes it useful for general estimation purposes or in the development of other deformation models in which a simple closed-form expression for the indentation creep rate is desirable. Comparison to a more rigorous analysis which uses finite element simulation for numerical evaluation shows that the new model predicts uniaxial creep rates within a factor of 2.5, and usually much better than this, for materials creeping with stress exponents in the range 1 ≤ n ≤ 7. The predictive capabilities of the model are evaluated by comparing it to the more rigorous analysis and several sets of experimental data in which both the indentation and uniaxial creep behavior have been measured independently.
机译:开发了一种简单的压痕蠕变模型,该模型可以通过简单的闭合形式关系将压痕测试中测量的蠕变参数直接转换为单轴测试中观察到的蠕变参数。该模型基于幂律蠕变材料中球形腔的膨胀,该蠕变材料经过修改以考虑到压痕载荷,其方式类似于Johnson为弹塑性压痕开发的方法(Johnson,1970年)。尽管本质上仅是近似的,但新模型的简单数学形式使其可用于一般估算目的或用于其他变形模型的开发,在这些变形模型中,需要用于压痕蠕变率的简单闭合形式的表达式。与使用有限元模拟进行更严格的分析进行数值评估的比较表明,对于应力指数在1≤n≤7范围内的材料蠕变,新模型预测的单轴蠕变速率在2.5倍之内,并且通常要好得多。通过将模型与更严格的分析和几组实验数据进行比较,评估了模型的预测能力,在这些实验数据中,分别测量了压痕和单轴蠕变行为。

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