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首页> 外文期刊>Journal of the European Ceramic Society >Mechanical and elastic properties of fine-grained polycrystalline scandia and erbia as determined by indentation techniques
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Mechanical and elastic properties of fine-grained polycrystalline scandia and erbia as determined by indentation techniques

机译:通过压痕技术确定的细晶粒多晶scan和塞尔维亚的机械和弹性性能

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摘要

The Young's moduli, E, and nanoindentation, NI, stress-strain curves of fine-grained scandia, Sc_2O_3, and erbia, Er_2O_3, were determined using spherical indenters with radii of 1.4 ìm and 5 ìm. The Young's moduli measured with the spherical indenters, were comparable to those measured by a Berkovich tip, and by ultrasound. This work further validates the use of S vs. a plots to measure the Young's moduli of polycrystalline ceramics. A major advantage of using this technique is the possibility of determining NI stress-strain curves and concomitant yield points, apparent strain hardening rates, etc. for the first time. Both the elastic moduli and the yield stresses were affected by the degree of surface polishing and tip size. The most reproducible and reliable results were obtained with the sharper nanoindenter and the best surface finish. The Vickers hardness and indentation fracture toughness values extracted from the Vickers indentations are comparable to the literature results.
机译:使用半径为1.4μm和5μm的球形压头确定了细晶粒的scan的Sc_2O_3和erbia的Er_2O_3的杨氏模量E和纳米压痕NI的应力应变曲线。用球形压头测得的杨氏模量,与用贝尔科维奇尖端和超声测得的杨氏模量相当。这项工作进一步验证了使用S与曲线来测量多晶陶瓷的杨氏模量。使用该技术的主要优点是可以首次确定NI应力-应变曲线和随之而来的屈服点,表观应变硬化率等。弹性模量和屈服应力均受表面抛光程度和尖端尺寸的影响。尖锐的纳米压头和最佳的表面光洁度可获得最可重复和可靠的结果。从维氏压痕提取的维氏硬度和压痕断裂韧性值与文献结果相当。

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