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Essential refinements of spherical nanoindentation protocols for the reliable determination of mechanical flow curves

机译:球形纳米压痕规程的基本改进,可可靠地确定机械流动曲线

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摘要

Understanding and linking mechanical properties obtained by spherical indentation experiments to uniaxial data is extremely challenging. Since the first attempts in the early 20th century numerous advances gradually allowed to expand the output of indentation tests. Still, the extraction of flow curves from spherical nanoindentation has not yet been fully established, as tip shape problems and size effects impede a straight-forward implementation. Within this study, we show new calibration procedures originating from fundamental geometrical considerations to account for tip shape imperfections. This sets the base for strain-rate controlled tests, which in turn enables us to measure rate-dependent material properties either with constant strain-rate or by strain-rate jump tests. Finally, experimental evaluation of the constraint factor in consideration of the mechanical properties and induced strain enables the extraction of flow curves. Testing materials with refined microstructures ensures the absence of possible size-effects. This study contributes to a significant improvement of current experimental protocols and allows to move flow curve measurements from single spherical imprints one step closer to its implementation as a standard characterization technique for modern materials. (c) 2018 The Authors. Published by Elsevier Ltd.
机译:理解和将通过球形压痕实验获得的机械性能与单轴数据联系起来非常具有挑战性。自20世纪初进行首次尝试以来,无数的进步逐渐扩大了压痕测试的输出范围。然而,由于尖端形状问题和尺寸影响阻碍了直接实现,因此尚未完全确定从球形纳米压痕提取流动曲线的方法。在这项研究中,我们展示了新的校准程序,这些程序源自基本的几何考虑因素,以解决针尖形状的缺陷。这为应变率受控测试奠定了基础,这又使我们能够通过恒定应变率或通过应变率跳变测试来测量与速率相关的材料性能。最后,在考虑机械性能和诱发应变的情况下对约束因素进行的实验评估可以提取流量曲线。测试具有精细微结构的材料可确保没有可能的尺寸影响。这项研究为当前实验方案的重大改进做出了贡献,并使流动曲线测量值从单个球形印记移到了更近一步,成为现代材料的标准表征技术。 (c)2018作者。由Elsevier Ltd.发布

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