Cold Dwell Behaviour of Ti6Al Alloy: Understanding Load Shedding Using Digital Image Correlation and Crystal Plasticity Simulations

Y. Xiong, N. Grilli, Phani S. Karamched, B. Li, E. Tarleton, A. Wilkinson
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Abstract

Digital image correlation (DIC) and crystal plasticity simulation were utilised to study cold dwell behaviour in a coarse grain Ti-6Al alloy at 3 different temperatures up to 230 °C. Strains extracted from large volume grains were measured during creep by DIC and were used to calibrate the crystal plasticity model. The values of critical resolved shear stresses (CRSS) of the two main slip systems (basal and prismatic) were determined as a function of temperature. Stress along paths across the boundaries of two grain pairs, (1) a `rogue' grain pair and (2) a `non-rogue' grain pair, were determined at different temperatures. Load shedding was observed in the `rogue' grain pair, where a stress increment during the creep period was found in the `hard' grain. At elevated temperatures, 120 °C was found to be the worst case scenario as the stress difference at the grain boundaries of these two grain pairs were found to be the largest among the three temperatures. This can be attributed to the fact that the strain rate sensitivity of both prismatic and basal slip systems is at its greatest in this worst case scenario temperature.
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Ti6Al合金的冷居住行为:利用数字图像相关和晶体塑性模拟来理解负载脱落
采用数字图像相关(DIC)和晶体塑性模拟技术研究了粗晶Ti-6Al合金在高达230℃的3种不同温度下的冷居行为。从大体积晶粒中提取的应变在蠕变过程中进行了DIC测量,并用于校准晶体塑性模型。确定了两种主要滑移体系(基滑移体系和柱滑移体系)的临界分解剪应力(CRSS)随温度的变化规律。在不同的温度下,沿着穿过两个晶粒对(1)“流氓”晶粒对和(2)“非流氓”晶粒对边界的路径的应力被确定。在“流氓”晶粒对中观察到负载脱落,其中在蠕变期间在“硬”晶粒中发现应力增量。在高温下,120℃是最坏的情况,因为这两种晶对晶界处的应力差在三个温度中最大。这可以归因于这样一个事实,即在最坏的情况下,棱柱滑移体系和基滑移体系的应变率敏感性都是最大的。
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