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Techniques for Determining Mechanical Properties of Power-Law Materials by Instrumented Indentation Tests

机译:通过仪表压痕试验确定电力法材料的机械性能的技术

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A novel optimization approach is proposed to extract mechanical properties of a power law material from its given experimental nano-indentation P-h curves. A set of equations have been established to relate the P-h curve to mechanical properties, E, σ_y and n, of a material. Using the proposed optimization approach, convergence studies were carried out for the determination of the mechanical properties of materials. It was found that the mechanical properties of an elastic-plastic material usually cannot be uniquely determined using a single loading and unloading P-h curve. Thus a technique has also been developed to determine the material properties from indentation p-h curves using indenters with two different angles. This enables the mechanical properties of materials to be uniquely determined.
机译:提出了一种新颖的优化方法,以从给定的实验纳米缩进P-H曲线提取电力法材料的机械性能。已经建立了一组方程,以将P-H曲线与材料的机械性质,E,σ_y和N相关联。利用所提出的优化方法,进行收敛研究,用于测定材料的机械性能。发现弹性塑料材料的机械性能通常不能使用单个装载和卸载P-H曲线唯一确定。因此,还开发了一种技术以使用具有两种不同角度的压痕来确定从压痕P-H曲线的材料特性。这使得能够唯一地确定材料的机械性能。

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