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Effect of Forging Temperature on Microstructure Evolution and Tensile Properties of Ti-17 Alloys

机译:锻造温度对Ti-17合金微观结构演化和拉伸性能的影响

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摘要

In this study, the microstructure, tensile strength, elongation, and reduction of area of near-beta Ti alloys (Ti-17) were investigated after being subjected to solution and aging treatments. Ti-17 was forged at temperatures between 700 and 850 degrees C followed by air cooling. Then, the forged Ti-17 was subjected to solution treatment at 800 degrees C for 4 h followed by water quenching and aging treatment at 620 degrees C for 8 h followed by air cooling. Tensile tests were performed at room temperature, 450 degrees C, and 600 degrees C. The change in microstructure at different forging temperatures was exhibited by only the volume fraction and morphology of the grain boundary (GB) alpha phase. That is, a granular GB alpha phase was formed in the samples forged at 700 and 750 degrees C. Moreover, a film-like GB alpha phase was formed in the samples forged at 800 and 850 degrees C. The tensile strength was the same for all the tested samples, indicating that the microstructure has little effect on the tensile strength. The elongation and reduction of area increased with decreasing volume fraction in the GB alpha phase. It is considered that the film-like morphology slightly improves ductility.
机译:在该研究中,在进行溶液和老化处理后,研究了近βTi合金(Ti-17)的微观结构,拉伸强度,伸长率和减少。 TI-17在700至850摄氏度之间的温度下锻造,然后通过空气冷却。然后,将锻造的Ti-17在800℃下进行溶液处理4小时,然后在620℃下进行水猝灭和老化处理8小时,然后是空气冷却。拉伸试验在室温下进行450℃和600℃。仅通过晶界(GB)α相的体积分数和形态表现出不同锻造温度的微观结构变化。也就是说,在700和750℃下锻造的样品中形成粒状GBα相。此外,在800和850℃的样品中形成膜状GBα相。拉伸强度相同所有测试的样品,表明微观结构对拉伸强度几乎没有影响。面积的伸长和减小随着GBα相中的减小体积分数而增加。认为薄膜形态略微改善延展性。

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