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Investigation of Microstructural Uniformity During Isothermal Forging of Ti-6Al-4V

机译:Ti-6Al-4V等温锻造过程中组织均匀性的研究

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摘要

The effect of strain on microstructural changes and the primary alpha (alpha(P)) volume fraction as well as the workability of Ti-6Al-4V are studied by isothermal compression of wedge-shaped specimens at the initial temperatures of 850, 900, and 950 A degrees C and platen velocities of 2.5, 25, and 250 mm/min in combination with finite element method. The results show that higher platen velocity leads to a lesser alpha(P) volume fraction at all of the temperatures. Higher temperature reduces the alpha(P) volume fraction, but increases the impact of strain and platen velocity on the microstructure through the specimen. A more uniform distribution of the primary alpha volume fraction can be achieved by decreasing the initial temperature and/or platen velocity. All of the specimens were free from any defects and can withstand a compression with the normalized Cockcroft-Latham damage value of 0.61.
机译:通过在初始温度850、900和900°C下对楔形试样进行等温压缩,研究了应变对显微组织变化和主要α(α(P))体积分数以及Ti-6Al-4V的可加工性的影响。 950 A摄氏度,压板速度为2.5、25和250 mm / min,结合有限元方法。结果表明,在所有温度下,较高的压板速度会导致较小的alpha(P)体积分数。较高的温度会降低alpha(P)的体积分数,但会增加应变和压板速度对通过样品的微结构的影响。可以通过降低初始温度和/或压板速度来实现主要α体积分数的更​​均匀分布。所有标本均无任何缺陷,并能承受归一化的Cockcroft-Latham损伤值为0.61的压缩。

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