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Characterization of solution annealing behaviour in titanium alloys by ultrasonic velocity measurements

机译:超声速度测量表征钛合金中钛合金的退火行为

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Ultrasonic velocity measurements have been carried out in two titanium alloys, Ti-6Al-4V and Ti-4.5Al-3Mo-1V (VT14), solution annealed at different temperatures starting from 923 K to 1323 K at an interval of 50 K for 1 h followed by water quenching.In both the Ti-alloys, ultrasonic longitudinal and shear wave velocities have been found to decrease with increase in solutionizing temperature up to about 1123 K, and beyond that it is found to increase. Ultrasonic velocities have been found to be constant in the VT14 alloy specimens solution annealed at above 1223 K (β transus temperature) and in Ti-6Al-4V alloy above 1273 K (β transus temperature). The present study revealed for the first time that ultrasonic velocity measurements can be used not only for the characterization of microstructural features but also for the identification of β transus temperature in Titanium alloys. Further, it has been found that ultrasonic shear wave velocity is a better parameter for microstructural characterizations in titanium alloys.
机译:在两种钛合金,Ti-6Al-4V和Ti-4.5A-3M-1V(VT14)中进行了超声速度测量,在不同温度下在923k至1323k的不同温度下以50k为1的间隔退火H随后是水淬火。在溶液温度增加到约1123k的情况下,已经发现Ti-合金,超声波纵向和剪切速度降​​低,并且可以在发现其增加时降低。已经发现超声速度在VT14合金标本溶液中是恒定的,在1223k(β转移温度)和1273k(β转移温度)上的Ti-6Al-4V合金中退火。本研究首次揭示了超声速度测量,不仅可以用于微观结构特征的表征,而且可以用于识别钛合金中的β转移温度。此外,已经发现超声剪切波速是钛合金微观结构表征的更好参数。

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