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Cyclic plasticity experiments and polycrystal plasticity modeling of three distinct Ti alloy microstructures

机译:三种不同Ti合金微观结构的循环塑性实验和多晶塑性建模

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摘要

AbstractCyclic deformation experiments have been performed on three titanium alloy microstructures to facilitate calibration of two distinct simplified polycrystal plasticity model frameworks. These microstructures include Ti–6Al–4Vβ-annealed, Ti-18 in a solution-treated, age-hardened (STA) condition (), and Ti-18 with a beta-annealed, slow-cooled, age-hardened (BASCA) treatment. Experimental results suggest that superior uniaxial yield strength, ultimate strength and tensile ductility are achieved through the STA processing for the Ti-18 material. This processing route produces a fine bi-modal microstructure. In contrast, corresponding measured properties of the Widmanst?tten morphology generated via the BASCA heat treatment were lower. The constitutive frameworks for the two different simplified polycrystal plasticity models and associated flow rules have been outlined and the model parameters have been estimated for cyclic loading such that the simulated stress–strain response is consistent with experimental results for each of the titanium microstructures investigated. In view of envisioned application to fatigue, focus is placed on cyclic behavior after the initial loading cycle(s). Certain estimated parameters differ for each model among microstructures, mainly related to elasticity, threshold for slip system yielding, and work hardening; this suggests limits on a simplified model framework and the need for in situ studies of dislocation-interface reactions and the relative role ofβ-phase fraction.展开▼
机译:<![cdata [ 抽象 在三个钛合金微结构上进行了循环变形实验,以促进两个不同简化的多晶塑性模型框架的校准。这些微观结构包括Ti-6Al-4V β - 脉冲,Ti-18在治疗的溶液治疗的年龄 - 硬化(STA)条件()和TI-18中,具有β-退火,冷却缓慢,年龄硬化(Basca)治疗。实验结果表明,通过Ti-18材料的STA处理实现了卓越的单轴屈服强度,极限强度和拉伸延展性。该处理路线产生精细双模态微结构。相反,通过Basca热处理产生的Widmmmst的相应测量性质Δtron形态较低。已经概述了两种不同简化的多晶塑性模型和相关流量规则的组成型框架,并且已经估计了循环加载的模型参数,使得模拟应力 - 应变响应与所研究的每种钛微观结构的实验结果一致。鉴于设想的疲劳应用,在初始装载周期后,重点放置在循环行为上。一定的估计参数对于微结构之间的每个模型不同,主要与弹性有关,滑动系统的阈值屈服,加工硬化;这表明对简化模型框架的限制以及对脱位界面反应的原位研究以及β - 相位分数的相对作用。 < / ce:abstract-sec>

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