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首页> 外文期刊>Journal of Materials Science >Strain-rate sensitivity of scratch hardness and deformation mechanism in nanocrystalline Ni under micro-scratch testing
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Strain-rate sensitivity of scratch hardness and deformation mechanism in nanocrystalline Ni under micro-scratch testing

机译:微划痕试验下纳米晶Ni划痕硬度的应变率敏感性和变形机理

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摘要

To investigate the strain-rate sensitivity in nanocrystalline (NC) materials using a single experimental technique over a wide range of strain rate, the micro-scratch testing technique was selected to obtain consistent and systematic data of the strain-rate sensitivity in a fully dense, high purity, and well-characterized electrodeposited NC Ni sample. The scratch characterizations and mechanical properties of the sample under the different scratch velocities were discussed in details. First, some critical parameters under the micro-scratch testing, such as strain rates, scratch ditch widths, were confirmed. Then, the scratch hardness under the different scratch velocity was investigated. From the results, the sample exhibits strain-rate sensitive mechanical properties. Further, the average values of strain-rate sensitivity of the sample were calculated. The values increase with increasing scratch velocity, and exhibit higher values that are of the order of 0.03-0.1. The greater strain-rate sensitivity exponents indicate that the NC Ni samples have different fundamental physical deformation mechanisms. Finally, the fundamental physical deformation mechanism under scratch testing was inspected using SEM and TEM technique. From the SEM and TEM morphologies, the grain boundary dislocation pile-ups should be a carrier of plastic flow under scratch testing in the NC Ni sample.
机译:为了使用单一实验技术在较宽的应变率范围内研究纳米晶(NC)材料的应变率敏感性,选择了微划痕测试技术以获得在完全致密的情况下一致且系统的应变率敏感性数据,高纯度且特性良好的电沉积NC Ni样品。详细讨论了在不同刮擦速度下样品的刮擦特征和机械性能。首先,确定了在微划痕测试下的一些关键参数,例如应变率,划痕沟渠宽度。然后,研究了不同刮擦速度下的刮擦硬度。根据结果​​,样品表现出应变率敏感的机械性能。此外,计算样品的应变速率敏感性的平均值。该值随着划痕速度的增加而增加,并显示较高的值,约为0.03-0.1。较大的应变速率敏感性指数表明,NC Ni样品具有不同的基本物理变形机制。最后,使用SEM和TEM技术检查了划痕测试下的基本物理变形机理。从SEM和TEM形貌来看,在NC Ni样品的刮擦测试下,晶界位错堆积物应该是塑性流动的载体。

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