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The use of a vickers indenter in depth sensing indentation for measuring elastic modulus and vickers hardness

机译:在深度感应压痕中使用维氏压头测量弹性模量和维氏硬度

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Depth sensing indentation is a powerful experimental technique for determining mechanical properties of materials. In this work a computational routine was developed based on Oliver-Pharr method for measuring a more precise values of elastic modulus using a Fischerscope H100 depth sensing indentation apparatus, with a Vickers indenter. This computational routine aims also to measure Vickers hardness, as the equipment does not have software for this purpose. From indentation data it was possible to determine initial unloading stiffness, contact depth, projected contact area, reduced modulus, elastic modulus and Vickers hardness of materials. The validity of the routine was verified analyzing two coatings and nine bulk specimens with different elastic-plastic behaviors. It was verified that the elastic moduli determined through the software of the equipment resulted in great discrepancies when low loads were applied. A good estimate of the elastic moduli of the tested materials is given by the developed routine. For several testing loads, the diagonals determined by means of analytical procedure were compared with the same diagonals measured by image analysis. A good estimate of the Vickers hardness of the above-mentioned materials is given by the developed routine using different testing loads.
机译:深度感应压痕是一种确定材料机械性能的强大实验技术。在这项工作中,基于Oliver-Pharr方法开发了一种计算程序,以使用带有维氏压头的Fischerscope H100深度感应压痕仪测量更精确的弹性模量值。该计算例程还旨在测量维氏硬度,因为该设备没有用于此目的的软件。从压痕数据可以确定材料的初始卸载刚度,接触深度,投影接触面积,降低的模量,弹性模量和维氏硬度。通过分析两个具有不同弹塑性行为的涂层和九个大块标本,验证了该程序的有效性。经验证,当施加低载荷时,通过设备软件确定的弹性模量会导致很大的差异。通过开发的程序可以很好地估计被测材料的弹性模量。对于几个测试负载,将通过分析程序确定的对角线与通过图像分析测量的相同对角线进行比较。通过使用不同的测试负荷制定的程序可以很好地估计上述材料的维氏硬度。

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