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- W2014829074 abstract "The temperature dependence of the flow stress of molybdenum, deduced by means of two independent methods from tensile tests and stress-relaxation measurements on ultrapure single crystals (residual resistivity ratio 4×105, Schmid factor of the [111](1̄01) slip system μ=0.5) in the temperature range 4 K≤T≤460 K, is shown to agree with that obtained by the cyclic-deformation technique. The analysis in terms of the kink-pair theory of screw-dislocation mobility gives the following results. Below T̆=60K the elementary slip steps take place on (1̄10) planes (Peierls stress of the a0〈111〉/2 screw dislocations σP{110}= (870±10)MPa, formation energy of a pair of isolated kinks 2Hk{110}=(0.63±0.03)eV). At T>T̆ slip proceeds by cross slip on (2̄11and1̄1̄2) planes (σp{112}=(690±20)MPa,2Hk{112}=(1.27±0.03)eV)." @default.
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- W2014829074 date "2001-12-01" @default.
- W2014829074 modified "2023-10-13" @default.
- W2014829074 title "Work hardening and flow stress of ultrapure molybdenum single crystals" @default.
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- W2014829074 doi "https://doi.org/10.1016/s0921-5093(01)01002-4" @default.
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