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Effect of microstructure on tensile properties of Ti-17 alloys forged using a 1500-ton forging simulator

机译:微观结构对使用1500吨锻造模拟器锻造Ti-17合金拉伸性能的影响

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Microstructure dependence on mechanical properties were investigated for Ti-17 forged at temperatures between 700 and 850 'C with deformation ratio from 33 to 80 %, and solution-treated at 800°С for 4 hours and aged at 620 °C for 8 hours. The microstructure was observed after solution and aging treatments. The volume fraction and the size of the primary alpha phase was controlled by solution treatment temperature, not forging temperature and deformation ratio. Forging temperature affected the morphology of grain boundary (GB) alpha phase. Deformation ratio affected the grain size and the aspect ratio of the horizontal and vertical grain size of the prior beta phase. The tensile strength was investigated at room temperature. 450, and 600°С. Forging temperature and deformation ratio did not affect the tensile strength because there is no large difference of the volume fraction of the alphaphase. On the other hand, the elongation and the reduction of area increased with increase of the aspect ratio of the prior beta grains; that means, increase of the deformation ratio. Raising of forging temperature also increased elongation and reduction of area due to the film-like GB alphaphase.
机译:在700和850'c的温度下,在700和850'c的温度下,在700和850'c的温度下进行微观结构依赖性,其变形比为33至80%,并在800°С的溶液处理4小时,在620℃下老化8小时。在溶液和老化处理后观察到微观结构。通过溶液处理温度,不锻造温度和变形比来控制初级α相的体积分数和尺寸。锻造温度影响了晶界(GB)α相的形态。变形率影响了先前β相的水平和垂直粒度的晶粒尺寸和纵横比。在室温下研究拉伸强度。 450和600°С。锻造温度和变形比率不影响拉伸强度,因为没有大小的物质级分的差异。另一方面,随着先前β晶粒的纵横比的增加,伸长率和面积的减小增加;这意味着,变形率的增加。由于薄膜样GB Alphaphase,锻造温度的提高也增加了面积的伸长和降低。

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