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Using the ultrasound and instrumented indentation techniques to measure the elastic modulus of engineering materials

机译:使用超声波和仪表压痕技术来测量工程材料的弹性模量

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摘要

Currently, the acoustic and nanoindentation techniques are two of the most used techniques for material elastic modulus measurement. In this article fundamental principles and limitations of both techniques are shown and discussed. Last advances in nanoindentation technique are also reviewed. An experimental study in ceramic, metallic, composite and single crystals was also done. Results shown that ultrasonic technique is capable to provide results in agreement with those reported in literature. However, ultrasonic technique does not allow measuring the elastic modulus of some small samples and single crystals. On the other hand, the nanoindentation technique estimates the elastic modulus values in reasonable agreement with those measured by acoustic methods, particularly in amorphous materials, while in some policristaline materials some deviation from expected values was obtained.
机译:目前,声学和纳米凸缘技术是用于材料弹性模量测量的最多的两个技术。在本文中,显示和讨论了两种技术的基本原则和局限性。还审查了纳米狭窄技术的最后进步。还进行了陶瓷,金属,复合材料和单晶的实验研究。结果表明,超声波技术能够与文学报告的人一致地提供结果。然而,超声波技术不允许测量一些小样品和单晶的弹性模量。另一方面,纳米endentation技术估计合理协议的弹性模量值与声学方法测量的那些,特别是在非晶材料中,同时在一些中苯甲酸盐材料中获得了一些与预期值的偏差。

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