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Tension-Compression Asymmetry in gamma-TiAl Single Crystals

机译:γ-TiAl单晶中的拉伸压缩不对称性

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Single crystalline microsamples of Ti-55.5percentAl have been tested in tension at temperatures ranging from 873K to 1173K. The results of these tensile experiments have been compared with previously reported values of the compressive strength of this material, and a tension-compression (T/C) asymmetry has been observed for three different orientations. This T/C asymmetry has been related to the dissociation and motion of superdislocations and it has been shown that the flow strength is a maximum when the superdislocations are led by the SISF dissociated superpartial and a minimum when they move with a leading CSF superpartial. This finding and further consideration of the crystal geometry suggest that the formation of roof-type barriers is most favorable when the applied stress promotes cross-slip of the trailing CSF dissociated superpartial dislocation.
机译:Ti-55.5%Al的单晶微样品已在873K至1173K的温度范围内进行了拉伸测试。这些拉伸实验的结果已经与以前报道的这种材料的抗压强度值进行了比较,并且在三个不同的方向上观察到了拉伸-压缩(T / C)不对称性。这种T / C不对称性与超位错的解离和运动有关,并且已经表明,当超位错由SISF离解的超部分主导时,流动强度最大,而当超位错与前导的CSF超部分一起运动时,流动强度最小。这一发现和对晶体几何形状的进一步考虑表明,当施加的应力促进尾随CSF离解的超部分位错的横向滑动时,形成屋顶型势垒最为有利。

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