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Effect of the Elastic Deformation of a Point-Sharp Indenter on Nanoindentation Behavior

机译:尖头压头的弹性变形对纳米压痕行为的影响

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摘要

The effect of the elastic deformation of a point-sharp indenter on the relationship between the indentation load P and penetration depth h (P-h curve) is examined through the numerical analysis of conical indentations simulated with the finite element method. The elastic deformation appears as a decrease in the inclined face angle β, which is determined as a function of the elastic modulus of the indenter, the parabolic coefficient of the P-h loading curve and relative residual depth, regardless of h. This indicates that nominal indentations made using an elastic indenter are physically equivalent to indentations made using a rigid indenter with the decreased β. The P-h curves for a rigid indenter with the decreased β can be estimated from the nominal P-h curves obtained with an elastic indenter by using a procedure proposed in this study. The elastic modulus, yield stress, and indentation hardness can be correctly derived from the estimated P-h curves.
机译:通过用有限元法模拟的锥形压痕的数值分析,研究了尖锐压头的弹性变形对压痕载荷P和穿透深度h(P-h曲线)之间关系的影响。弹性变形表现为倾斜面角β的减小,而倾斜角β取决于压头的弹性模量,P-h载荷曲线的抛物线系数和相对残余深度而与h无关。这表明使用弹性压头制成的名义压痕在物理上等同于使用具有减小的β的刚性压头制成的压痕。可以使用本研究中提出的程序,通过使用弹性压头获得的标称P-h曲线来估算β值减小的刚性压头的P-h曲线。弹性模量,屈服应力和压痕硬度可以从估算的P-h曲线正确得出。

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