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首页> 外文期刊>Journal of Materials Science >Application of the work of indentation approach for the characterization of aluminium 2024-Т351 and Al cladding by nanoindentation
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Application of the work of indentation approach for the characterization of aluminium 2024-Т351 and Al cladding by nanoindentation

机译:压痕法在纳米压痕表征铝2024-Т351和铝包层中的应用

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摘要

Nanoindentation has been used to characterize the mechanical properties of aerospace-grade А12024-Т351 with and without a clad layer of pure aluminium. The clad layer is introduced by means of a roll-bonding process which can cause significant work-hardening of the material in the clad layer. The hardness and Young's modulus of the pure aluminium and the Al2024 have been determined by a number of methods, including the traditional Oliver and Pharr method, and a number of other methods, including direct measurement of the indentation by atomic force microscopy, and evaluation of the work of indentation. The Oliver and Pharr method was found to underestimate the area of contact as it did not include the area of piled-up material around the indentation periphery. This gave a corresponding overestimation of both hardness and mod_ulus. The area of the indentation measured by atomic force microscopy was similarly found to underestimate the contact area owing to relaxation of material around the indent between indentation and imaging. The work of indentation approach was found to give good agreement between the hardness calculated by nanoindentation and those found in the literature.
机译:纳米压痕技术已被用于表征航空级А12024-Т351的机械性能(有或没有纯铝包覆层)。包覆层是通过辊压结合工艺引入的,这会导致包覆层中材料的明显加工硬化。纯铝和Al2024的硬度和杨氏模量已通过多种方法确定,包括传统的Oliver和Pharr方法,以及多种其他方法,包括通过原子力显微镜直接测量压痕以及评估压痕的工作。发现Oliver和Pharr方法低估了接触面积,因为它不包括压痕外围周围堆积的材料的面积。这给出了硬度和模量的相应高估。类似地发现通过原子力显微镜测量的压痕区域由于在压痕和成像之间的压痕周围的材料松弛而低估了接触面积。发现压痕方法的工作使通过纳米压痕计算的硬度与文献中发现的硬度之间具有良好的一致性。

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