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- W2017635400 abstract "Elastic and plastic deformation energies during Vickers nanoindentation (penetration depth ht=0.3–1.0 μm) at room temperature (humidity 48%) of lanthanum phosphate glasses with different network structures (ultraphosphate 10La2O3·90P2O5 and metaphosphate 25La2O3·75P2O5 glasses (mol%)) were estimated. 10La2O3·90P2O5 glass has values of the Martens (universal) hardness MH=3.31±0.05 GPa, elastic recovery ER=0.60, elastic deformation energy Ue=130±5 kJ/mol and plastic deformation energy Up=88±5 kJ/mol at ht=1.0 μm. 25La2O3·75P2O5 glass shows MH=2.78±0.05 GPa, ER=0.56, Ue=102±5 kJ/mol and Up=79±5 kJ/mol. It is suggested that the metaphosphate glass with a two-dimensional network structure is more readily deformed during indenter loading compared with the ultraphosphate glass with a three-dimensional network structure. The main origin of plastic deformation at ht<1.0 μm is considered to be densification. It is proposed that the deformation energy at the nanoindentation level in the glass is closely related to the mean atomic volume of the glass." @default.
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- W2017635400 date "2004-02-01" @default.
- W2017635400 modified "2023-09-23" @default.
- W2017635400 title "Deformation energies and mechanism during Vickers nanoindentation in lanthanum ultra- and metaphosphate glasses" @default.
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- W2017635400 doi "https://doi.org/10.1016/s0925-8388(03)00589-9" @default.
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