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Analysis of the tip roundness effects on the micro- and macroindentation response of elastic-plastic materials

机译:尖端圆度对弹塑性材料的微观和宏观压痕响应的影响分析

摘要

In this work, the effects of indenter tip roundness oil the load-depth indentation curves were analyzed using finite element modeling. The tip roundness level was Studied based on the ratio between tip radius and maximum penetration depth (R/h(max)), which varied from 0.02 to 1. The proportional Curvature constant (C), the exponent of depth during loading (alpha), the initial unloading slope (S), the correction factor (beta), the level of piling-up or sinking-in (h(c)/h(max)), and the ratio h(max)/h(f) are shown to be strongly influenced by the ratio R/h(max). The hardness (H) was found to be independent of R/h(max) in the range studied. The Oliver and Pharr method was successful in following the variation of h(c)/h(max) with the ratio R/h(max) through the variation of S with the ratio R/h(max). However, this work confirmed the differences between the hardness values calculated using the Oliver-Pharr method and those obtained directly from finite element calculations; differences which derive from the error in area calculation that Occurs when given combinations of indented material properties are present. The ratio of plastic work to total work (W(p)/W(t)) was found to be independent of the ratio R/h(max), which demonstrates that the methods for the Calculation of mechanical properties based on the *indentation energy are potentially not Susceptible to errors caused by tip roundness.
机译:在这项工作中,使用有限元建模分析了压头尖端圆度对载荷深度压痕曲线的影响。根据尖端半径与最大穿透深度(R / h(max))之间的比率(从0.02到1)来研究尖端的圆度。比例曲率常数(C),加载过程中的深度指数(alpha) ,初始卸载斜率(S),校正系数(beta),堆积或下沉的水平(h(c)/ h(max))以及比率h(max)/ h(f) R / h(max)被强烈影响。发现硬度(H)在研究范围内与R / h(max)无关。 Oliver和Pharr方法成功地遵循了以R / h(max)为比的h(c)/ h(max)的变化通过以R / h(max)为比的S的变化进行了跟踪。但是,这项工作证实了使用Oliver-Pharr方法计算的硬度值与直接从有限元计算获得的硬度值之间的差异。当存在凹进材料特性的给定组合时,由面积计算误差引起的差异。发现塑性功与总功的比(W(p)/ W(t))与R / h(max)的比例无关,这表明基于*压痕的机械性能计算方法能量可能不易受尖端圆度造成的误差影响。

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