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首页> 外文期刊>Journal of Materials Processing Technology >Role of processing parameters in the development of tri-modal microstructure during isothermal local loading forming of TA15 titanium alloy
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Role of processing parameters in the development of tri-modal microstructure during isothermal local loading forming of TA15 titanium alloy

机译:TA15钛合金等温局部载荷成形过程中工艺参数在三峰组织发展中的作用

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摘要

It is critical to precisely control the tri-modal microstructure during the isothermal local loading forming of titanium alloy to obtain high-performance components. To this end, the effect of local loading processing parameters on the development of tri-modal microstructure were experimentally investigated. The key influence factors and laws are revealed as follows. In the first loading step, the deformation temperature plays a decisive role in the volume fraction of equiaxed alpha, which decreases with the increase of temperature. While, the deformation amount and cooling mode present little effects on the microstructure evolution. In the second loading step, the deformation temperature and amount mainly influence the volume fraction, spatial orientation distribution and globularization of lamellar alpha. The volume fraction of lamellar alpha increses with the temperature decreasing. The spatial orientation distribution of lamellar alpha gradually changes from homogeneous distribution to concentrated distribution with the increase of deformation amount. Besides, the dynamic globularization fraction of lamellar alpha producing in the second loading step increases with the deformation amount, and their relationship can be well fitted by Avrami type equation. Moreover, higher temperature in the second loading step is beneficial to decrease the critical strain for the initiation of dynamic globularization and promote the kinetic rate of dynamic globularization. On the other hand, the deformation amount of the second loading step has after-effects on the static globularization of lamellar alpha in the annealing treatment. If the deformation amount exceeded the critical strain for the initiation of dynamic globularization, the static globularization of lamellar alpha would produce in the annealing, and the static globularization fraction increases with the deformation amount of the second loading step. (C) 2016 Elsevier B.V. All rights reserved.
机译:至关重要的是,在钛合金的等温局部载荷成形过程中,精确控制三峰组织,以获得高性能部件。为此,实验研究了局部加载工艺参数对三峰微结构发展的影响。主要影响因素和规律如下。在第一个加载步骤中,变形温度在等轴α的体积分数中起着决定性的作用,该等分数随温度的升高而降低。而变形量和冷却方式对显微组织的发展影响很小。在第二个加载步骤中,变形温度和变形量主要影响层状α的体积分数,空间取向分布和球状化。层状α的体积分数随温度降低而增加。随着变形量的增加,层状α的空间取向分布逐渐从均匀分布变为集中分布。此外,第二载荷阶段产生的层状α的动态球化率随变形量的增加而增加,它们的关系可以通过Avrami型方程很好地拟合。此外,在第二加载步骤中较高的温度有利于减小用于动态球化的开始的临界应变并提高动态球化的动力学速率。另一方面,第二加载步骤的变形量对退火处理中的层状α的静态球化具有后影响。如果变形量超过启动动态球化的临界应变,则在退火过程中会产生层状α的静态球化,并且静态球化率随第二次加载步骤的变形量而增加。 (C)2016 Elsevier B.V.保留所有权利。

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