首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Nanoindentation as a Strength Probe-a Study on the Hardness Dependence of Indent Size for Fine-Grained and Coarse-Grained Ferritic Steel
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Nanoindentation as a Strength Probe-a Study on the Hardness Dependence of Indent Size for Fine-Grained and Coarse-Grained Ferritic Steel

机译:纳米压痕作为强度探针-细晶粒和粗晶粒铁素体钢凹痕尺寸的硬度依赖性研究

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摘要

A nanoindentation hardness testing system, including an atomic-force microscope (AFM)-based nanoindentation tester and a calibration method using electrolytically polished single-crystal metals as references, was proposed. This was applied to a study of the mechanical properties of fine-grained ferritic steel (grain size of 1.2 #mu#m) and coarse-grained ferritic steel (30 #mu#m). An empirical function giving the macroscopic hardness for all four reference metals from the nanoindentation force curves was established. The converted Vickers hardness (HV*) of the coarse-grained steel is almost independent of the indent size. The fine-grained steel shows only HV* 130 with an indent of only 100 nm, compared with a macroscopic hardness of HV 210. The difference, HV 80, is considered to reflect the amount of grain-boundary strengthening. The critical indent size for the hardness transition seems to be around 1 #mu#m, comparable to the grain size of the specimen. This result supports the explanation of grain-boundary strengthening. It is also consistent with Pickering's work on low-carbon steel, as the estimated locking parameter (k of 2.6 X 10~5 N/m~(3/2)) in the Hall-Petch relationship is in good agreement with his value of 2.4 X 10~5 N/m~(3/2).
机译:提出了一种纳米压痕硬度测试系统,包括基于原子力显微镜(AFM)的纳米压痕测试仪和以电解抛光的单晶金属为基准的校准方法。这被用于研究细晶粒铁素体钢(晶粒尺寸为1.2#μm)和粗晶粒铁素体钢(30μμm)的机械性能。建立了从纳米压痕力曲线给出所有四种参考金属的宏观硬度的经验函数。粗晶粒钢的维氏硬度(HV *)换算值几乎与压痕尺寸无关。与宏观硬度HV 210相比,细晶粒钢仅显示HV * 130,压痕仅为100 nm。差异HV 80被认为反映了晶界强化量。硬度转变的临界压痕尺寸似乎约为1#μm,与试样的晶粒尺寸相当。这一结果支持了晶界强化的解释。这也与Pickering在低碳钢上的工作相一致,因为霍尔-皮奇关系中的估计锁紧参数(k为2.6 X 10〜5 N / m〜(3/2))与他的值(Pr。 2.4 X 10〜5 N / m〜(3/2)。

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