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Analysis of indentation loading curves obtained using conical indenters

机译:使用锥形压头获得的压痕载荷曲线的分析

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Using dimensional analysis and finite-element calculations we determine the functional form of indentation loading curves for a rigid conical indenter indenting into elastic-perfectly plastic solids. The new results are compared with the existing theories of indentation using conical indenters, including the slip-line theory for rigid-plastic solids, Sneddon's result for elastic solids, and Johnson's model for elastic-perfectly plastic solids. In the limit of small ratio of yield strength (Y) to Young's modulus (E), both the new results and Johnson's model approach that predicted by slip-line theory for rigid-plastic solids. In the limit of large Y/E, the new results agree with that for elastic solids. For a wide range of Y/E, some difference is found between Johnson's model and the present result. This study also demonstrates the possibilities and limitations of using indentation loading curves to extract fundamental mechanical properties of solids.
机译:通过尺寸分析和有限元计算,我们确定了压入载荷曲线的功能形式,该载荷曲线用于将刚性圆锥形压头压入具有弹性的可塑性固体中。将新结果与使用锥形压头的压痕理论进行了比较,包括硬塑料实体的滑移线理论,弹性实体的Sneddon结果以及弹性完全塑性固体的Johnson模型。在屈服强度(Y)与杨氏模量(E)的比值较小的范围内,新结果和约翰逊模型方法均采用滑移线理论预测了硬塑料固体。在较大的Y / E范围内,新结果与弹性固体的结果一致。对于广泛的Y / E,Johnson模型与当前结果之间存在一些差异。这项研究还证明了使用压痕载荷曲线提取固体基本力学性能的可能性和局限性。

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