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Processing map for a cast and homogenized near alpha titanium alloy

机译:铸造和均质近α钛合金的加工图

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摘要

The high temperature deformation behaviour of cast and homogenised near alpha titanium alloy Titan 29A (M/s MIDHANI, India), equivalent to IMI 834 (M/s TIMET, UK) was studied towards developing a processing map. The processing map is interpreted in terms of the microstructural changes occurring during deformation, based on the values of a dimensionless parameter eta which represents the energy dissipation through microstructural evolution processes. An instability criterion (xi < 0) is applied to demarcate the flow instability regions in the processing map. Both the parameters (eta and xi) were computed from the experimental data generated by hot isothermal compression tests conducted at various temperature (T) and strain rate (epsilon) combinations T = 850-1100 degrees C and epsilon= 3 x 10(-4) to 10 (0)/s. The deterministic domains observed in the investigated temperature and strain rate regime are attributed to continuous dynamic recrystallization of alpha lamella and dynamic recrystallization of beta grains.
机译:研究了铸造和均质化的近钛钛合金Titan 29A(M / s MIDHANI,印度)的高温变形行为,相当于IMI 834(M / s TIMET,英国),以绘制加工图。根据无量纲参数eta的值,根据变形过程中发生的微结构变化来解释加工图,该参数表示通过微结构演化过程的能量耗散。应用不稳定标准(xi <0)来划分处理图中的流动不稳定区域。这两个参数(η和xi)均由在各种温度(T)和应变率(ε)组合T = 850-1100摄氏度且epsilon = 3 x 10(-4)下进行的热等温压缩测试生成的实验数据计算得出)至10(0)/ s。在研究的温度和应变速率范围内观察到的确定性域归因于α薄片的连续动态再结晶和β晶粒的动态再结晶。

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