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Real indentation hardness of nano-polycrystalline cBN synthesized by direct conversion sintering under HPHT

机译:HPHT直接转化烧结合成纳米多晶cBN的真实压痕硬度

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摘要

The hardness characteristic of nano-polycrystalline cBN synthesized by direct conversion sintering was thoroughly investigated using Vickers and Knoop indenters. It was found that nano-polycrystals consisting of smaller cBN grains increase the elastic recovery of indentations during unloading of the indenters and the diagonal of Vickers indentations and the minor diagonal of Knoop indentations significantly decrease in length. Thus, if a Vickers indenter is used, the apparent hardness value increases, making it impossible to perform an accurate evaluation, e.g. incorrect Vickers hardness values in excess of 80 GPa were obtained from nano-polycrystalline cBN with a grain size of 50 nm or less. On the other hand, it was verified that a Knoop indenter ensures an accurate hardness evaluation even if the constituent grains are fine because its major diagonal length which is used for measurement is less susceptible to elastic recovery. In an accurate evaluation of the hardness of different types of nano-polycrystalline cBN using a Knoop indenter, the hardness of each type of cBN was around 45 GPa, and there was no clear Hall-Petch relationship between hardness and grain size without a slight bell-like correlation. These results suggest that reported hardness values higher than 80 GPa of similar nano-polycrystalline cBN evaluated using a Vickers indenter are incorrect values caused by elastic recovery occurring at the indentation.
机译:使用维氏和努氏压头对直接转化烧结合成的纳米多晶立方氮化硼的硬度特性进行了深入研究。发现由较小cBN晶粒组成的纳米多晶体在压头卸载过程中增加了压痕的弹性恢复,并且维氏压痕的对角线和努氏压痕的次要对角线的长度显着减小。因此,如果使用维氏压头,则表观硬度值增加,使得无法进行准确的评价,例如,硬度计。从晶粒尺寸为50 nm或更小的纳米多晶cBN获得了超过80 GPa的不正确的维氏硬度值。另一方面,证实了努氏压头即使组成晶粒细小也确保了准确的硬度评估,这是因为用于测量的其主要对角线长度较不易恢复弹性。在使用努氏压头准确评估不同类型的纳米多晶cBN的硬度时,每种类型的cBN的硬度约为45 GPa,并且在没有轻微振铃的情况下,硬度与晶粒尺寸之间没有明确的Hall-Petch关系。类相关。这些结果表明,使用维氏压头评估的报告的硬度值高于类似的纳米多晶cBN的80 GPa,是由压痕处发生的弹性恢复引起的不正确的值。

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