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Determination of Phase Transformation for TC21 Ti-Alloy by Dilatometry Method

机译:膨胀法测定TC21钛合金的相变

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The α + β ? β phase transformation kinetics of TC21 Ti-alloy during continuous heating and cooling were studied using a dilatometric technique. Dilatometric heating curve exhibited that two characteristic reflection points can be observed with increasing the heating temperature. T_(s) referred to the initial transformation temperature of α + β → β and T_(f) referred to the final transformation temperature of α + β → β . T_(s) was reported at 720°C, whereas the corresponding T_(f) was obtained at 950°C. The initial and final transforming temperatures by the first derivative curve were reported at 730°C and 955°C, respectively, which are close to the values obtained in the dilatometric heating curve. Dilatometric cooling curve showed that the starting temperature of β → β + α phase transformation was 880°C; however, the corresponding finishing temperature was 670°C. The starting and finishing temperatures using the first derivative curve were obtained at 665°C and 885°C, respectively. The first derivative for the studied dilatometric heating and cooling curves showed that the starting and finishing temperatures of α + β ? β phase transformation were more accurate and objective. Results show the α + β → β transformation heating curve exhibits a typical S-shaped pattern.
机译:α+ β?使用膨胀法研究了TC21钛合金在连续加热和冷却期间的β相变动力学。膨胀热曲线表明,随着加热温度的升高,可以观察到两个特征反射点。 T_(s)指α+ β→β的初始转变温度,T_(f)指α+ β→的终转变温度。据报道T_(s)是在720℃下,而相应的T_(f)是在950℃下获得的。通过一阶导数曲线得出的初始和最终转变温度分别在730°C和955°C处报道,这与在膨胀热曲线中获得的值接近。膨胀冷却曲线表明,β→β→α相转变的起始温度为880℃。然而,相应的最终温度为670℃。使用一阶导数曲线的起始和终止温度分别在665°C和885°C下获得。研究的沿对角线的加热和冷却曲线的一阶导数表明α+ β? β相变更加准确和客观。结果表明,α+ β→β相变加热曲线显示出典型的S形图案。

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