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Strengthening of a Ti-6A1-4V titanium alloy by means of hydrostatic extrusion and other methods

机译:通过静液压挤压和其他方法强化Ti-6A1-4V钛合金

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摘要

The mechanical properties of Ti-6Al-4V titanium alloy with four different microstructures were studied: a submicrocrystalline structure of grain size about 0.4 μm, produced by multiaxial forging in stages at temperatures decreasing from 700 to 550 ℃; a cold-worked submicrocrystalline structure produced by cold rolling after multiaxial forging; a mixed lamellar and submicrocrystalline globular structure produced by hydrostatic extrusion at 600 ℃ and a microcrystalline structure produced by conventional heat treatment after multiaxial forging at 930 ℃. The highest strength, about 1500 MPa, was found for both the cold-worked submicrocrystalline and the hydrostatically extruded materials, but the extruded material had a higher ductility, i.e., higher total elongation and elongation before necking. The submicrocrystalline and the microcrystalline materials exhibited moderate strength of 1300 and 1050 MPa, respectively, with an elongation to failure of about 9%. The results were interpreted in terms of the microstructural features and the strengthening mechanisms resulting from the production processes.
机译:研究了具有四种不同微观结构的Ti-6Al-4V钛合金的力学性能:在700至550℃的温度下通过多轴锻造分阶段产生的晶粒尺寸约为0.4μm的亚微晶结构;通过多轴锻造后的冷轧产生的冷加工亚微晶结构; 600℃静压挤压产生的层状和亚微晶混合球状结构,930℃多轴锻造后,通过常规热处理产生的微晶结构。对于冷加工的亚微晶材料和静液压挤出材料,发现最高强度约为1500MPa,但是挤出材料具有较高的延展性,即较高的总伸长率和颈缩前的伸长率。亚微晶和微晶材料分别表现出1300和1050MPa的中等强度,断裂伸长率约为9%。根据生产过程中产生的微观结构特征和强化机理解释了结果。

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