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A nano-indentation model for spherical indenters

机译:球形压头的纳米压痕模型

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摘要

A model is developed for nano-indentation with spherical indenters. It is based on the Taylor dislocation model and is an extension of Qu et al's (2006 Int. J. Plast. 22 1265-86) micro-indentation model for spherical indenters to nano-indentation. For relatively large indenters (e.g. radii on the order of 100 mu m), the present model degenerates to Qu et al (2006 Int. J. Plast. 22 1265-86). For small indenters (e.g. radii on the order of 10 mu m), the maximum allowable geometrically necessary dislocation (GND) density is introduced to cap the GND density such that the latter does not become unrealistically high for small indenters. The present nano-indentation model agrees well with the indentation hardness data of iridium for both nano- and micro-indentation.
机译:开发了一种用于球形压头纳米压痕的模型。它基于泰勒位错模型,是Qu等人(2006 Int。J. Plast。22 1265-86)的微压痕模型的扩展,该模型用于球形压头到纳米压痕。对于相对较大的压头(例如,半径为100μm的半径),本模型退化为Qu等人(2006 Int.J.Plast.22 1265-86)。对于小压头(例如半径约为10微米),引入了最大允许的几何必要位错(GND)密度以限制GND的密度,这样对于小压头来说GND不会变得不切实际地高。本发明的纳米压痕模型与铱对于纳米压痕和微压痕的压痕硬度数据非常吻合。

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