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The Role Of Anisotropy In The Response Of The Titanium Alloy Ti-6al-4v To Shock Loading

机译:各向异性在钛合金Ti-6al-4v对冲击载荷响应中的作用

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摘要

Manganin stress gauges in lateral orientation have been used to monitor the shock response of Ti-6Al-4V when loaded either parallel to or radial to the long axis of the original bar stock studied in this investigation. Materials characterization has shown that the c-axis of the hexagonal unit cell is preferentially orientated radially to the axis of the bar. Shear strengths measured along the long axis of the bar were found to be in agreement with previous data in the literature, while strength in the radial direction was found to be significantly lower. It was also noted that the lateral stress, when measured in the radial direction, displayed a pronounced drop in the lateral stress after reaching the peak shock stress unlike the longitudinal orientation. This decrease is indicative of an increase in shear strength behind the shock front. In both instances, it is postulated that extensive deformation twinning during the early stages of deformation in the shock and thereafter c+a slip and dislocation tangling builds up over a longer time period, resulting in the higher degree of hardening noted.
机译:横向研究中的锰应力计已用于监测Ti-6Al-4V在与本研究中研究的原始棒料的长轴平行或径向加载时的冲击响应。材料表征表明,六角形晶胞的c轴优先沿径向定向于钢筋的轴。发现沿钢筋的长轴测量的抗剪强度与文献中的先前数据相符,而沿径向的强度则明显较低。还应注意,与径向方向不同,当在径向方向上测量时,横向应力在达到峰值冲击应力后显示出明显的横向应力下降。该降低表明冲击前部后面的剪切强度增加。在这两种情况下,都假设在激波变形的早期,随后的c + a滑移和位错缠结会在较长的时间内形成大范围的变形孪生,从而导致较高的硬化度。

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