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Influence of Severe Plastic Deformation on Physicomechanical Properties of Ti-40 mas Nb Alloy

机译:严重塑性变形对Ti-40mas%Nb合金物理机械性能的影响

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The changes of the phase composition, structure and physicomechanical properties of Ti-40 mas % Nb after severe plastic deformation are investigated in this paper. By the methods of microstructural, X-ray diffraction analysis and scanning electron microscopy it is determined that phase and structural transformations occur simultaneously in the alloy after severe plastic deformation. The martensitic structure formed after tempering disappears. The inverse α"→β transformation occurs. The structure consisting of oriented refined grains is formed. The alloy is hardened due to the cold working. The Young modulus is equal to 79 GPa and it is less than that of initial alloy and close to the value obtained after tempering. It is possible that Young modulus is reduced by additional annealing.
机译:本文研究了Ti-40MAs%NB的相位成分,结构和物理机械性能的变化。通过微观结构,X射线衍射分析和扫描电子显微镜的方法确定,在严重的塑性变形后,在合金中同时发生相位和结构变换。回火后形成的马氏体结构消失。发生逆α“→β转化。形成由取向的精制晶粒组成的结构。由于冷的工作,合金变硬。幼体模量等于79GPa,它小于初始合金,而且靠近回火后获得的值。通过额外的退火可能降低了杨氏模量。

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