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Texture Development in a Model Al-Li Alloy Subjected to Severe Plastic Deformation

机译:纹理开发在型号Al-Li合金中进行严重塑性变形

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The texture of Al-0.7 wt.% Li alloy processed by two different methods of severe plastic deformation (SPD) has been investigated by X-ray diffraction, and analyzed in terms of the orientation distribution function (ODF). It was found that severe plastic deformation by both Equal Channel Angular extrusion (ECAE) and Hydrostatic Extrusion (HE) resulted in an ultrafine grained structure in an Al-0.7 wt.% Li alloy. The microstructure, grain shape and size, of materials produced by SPD strongly depend on the technological parameters and methods applied. The texture of the investigated alloy differed because of the different modes of deformation. In the initial state the alloy exhibited a very strong texture consisting of {111} fibre component. A similar fibrous texture characteristic was also found after HE whereas after the ECAE the initial texture was completely changed.
机译:通过X射线衍射研究了通过两种不同的严重塑性变形(SPD)处理的al-0.7重量%的肌肉。通过X射线衍射研究,并根据取向分布函数(ODF)分析。发现,通过等沟道角挤出(ECAE)和静压挤出(HE)的严重塑性变形导致AL-0.7重量%的超细晶粒结构。%锂合金。由SPD产生的材料的微观结构,晶粒形状和尺寸强烈取决于所施加的技术参数和方法。所研究的合金的质地因不同的变形模式而不同。在初始状态下,合金表现出非常强的质地,包括{111}纤维组分。在他之后也发现了类似的纤维状纹理特征,而ECAE在ECAE之后初始纹理完全改变。

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