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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Effects of Residual Stress on the Hardness of Elastoplastic Material Under Spherical Indentation
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Effects of Residual Stress on the Hardness of Elastoplastic Material Under Spherical Indentation

机译:残余应力对球形压痕下弹塑性材料硬度的影响

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摘要

Residual stress can strongly affect the mechanical behaviors of engineering components. In this work, the authors revisit the role of equi-biaxial residual stress in the spherical indentation of elastoplastic solids by the finite element method. When specified residual stress remains in the body, the material hardness and the corresponding indentation depth at the inception of fully plastic deformation are examined for the first time. It is found that the hardness is remarkably dependent on the value of residual stress, especially for materials with a relatively small ratio of modulus to yield strength. Based on the dimensional analysis as well as numerical calculations, explicit expressions of the hardness and the critical indentation depth are generalized with respect to residual stress, indentation modulus, and yield strength. These results can be employed in the analysis and determination of residual stress by spherical indentation tests.
机译:残余应力会强烈影响工程部件的机械行为。 在这项工作中,作者通过有限元方法重新审视了Equi-Biaxial残余应力在弹性塑性固体的球形压痕中的作用。 当指定的残余应力保留在体内时,首次检查在完全塑性变形的成立时的材料硬度和相应的压痕深度。 发现硬度非常取决于残留应力的值,特别是对于具有相对较小的模量以屈服强度的材料。 基于尺寸分析以及数值计算,相对于残余应力,压痕模量和屈服强度,硬度和临界压痕深度的明确表达。 这些结果可用于分析和测定球形压痕试验的残余应力。

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