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Numerical comparison between Berkovich and conical nano-indentations: mechanical behaviour and micro-texture evolution

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posted on 2024-11-15, 09:34 authored by Mao Liu, Cheng LuCheng Lu, Anh TieuAnh Tieu, Hailiang YuHailiang Yu
A crystal plasticity finite element method (CPFEM) model has been developed to investigate the influence of indenter geometry on the mechanical behaviour and micro-texture evolution during nano-indentation of single crystal aluminium. The developed model has been validated by comparison with experimental observations. The numerical results show that indenter geometry influences the load-indentation depth curve, hardness and elastic modulus significantly. The surface profile, equivalent plastic strain distribution and micro-texture evolution during nano-indentation have been analysed in detail.

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Citation

Liu, M., Lu, C., Tieu, K. & Yu, H. (2014). Numerical comparison between Berkovich and conical nano-indentations: mechanical behaviour and micro-texture evolution. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 619 57-65.

Journal title

Materials Science and Engineering: A

Volume

619

Pagination

57-65

Language

English

RIS ID

94780

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