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Slip transfer across phase boundaries in dual phase titanium alloys and the effect on strain rate sensitivity

机译:双相钛合金中相边界的滑移传递及对应变率灵敏度的影响

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摘要

Dislocation transmission through alpha/beta phase boundaries in titanium alloys is studied using integrated crystal plasticity (CP) and discrete dislocation plasticity (DDP) modelling techniques, combined with experimental micro-pillar compression test results. Direct dislocation transmission together with the nucleation of new dislocations ahead of a pile-up at an alpha/beta interface, termed indirect slip transfer, are both assessed and their role in controlling microstructure-dependent strain rate sensitivity considered. A critical shear stress criterion for direct slip transfer across an alpha/beta interface in Ti-6242 has been established by capturing the local slip penetration through the phase boundary using CP and DDP comparisons with experimental two phase micro-pillar compression. The competition between direct and indirect slip transfer has been investigated using a single Frank-Read source DDP model. Direct slip transfer is found to occur only under specific conditions which have been quantified. The strain rate sensitivity of dual phase titanium alloys is demonstrated to depend on average pile-up size which is significantly influenced by alpha/beta morphology.
机译:使用集成晶体塑性(CP)和离散位错塑性(DDP)建模技术研究了钛合金中α/β相界限的偏移传递,与实验微柱压缩测试结果相结合。在α/β界面的堆积之前,直接位错传递与在α/β接口的堆叠之前,称为间接滑移转移,均评估,并且它们在控制考虑微观结构依赖性应变率敏感度方面的作用。通过使用CP和DDP比较,通过使用CP和DDP比较,通过使用CP和DDP比较,建立了在TI-6242中的直接滑动在TI-6242中的α/β接口进行直接滑动转移的临界剪切应力标准。使用单一坦率读取源DDP模型调查了直接和间接滑动转移之间的竞争。发现直接滑动转移仅在已经量化的特定条件下发生。对双相钛合金的应变速率敏感性被证明依赖于平均堆积大小,这是受α/β形态学影响的显着影响。

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