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Identification of the optimal (α + β) forging process parameters of Ti–6.5Al–3.5Mo–1.5Zr–0.3Si based on processing-maps

机译:基于加工图确定Ti–6.5Al–3.5Mo–1.5Zr–0.3Si的最佳(α+β)锻造工艺参数

摘要

The deformation behavior of Ti–6.5Al–3.5Mo–1.5Zr–0.3Si at the deformation temperature of 780–990 °C and the strain rate between 0.001 and 70.0 s−1 was systematically investigated for the identification of the optimal process parameters and the control of microstructure in (α + β) forging process. The processing-maps (P-maps) of the Ti-alloy in the above-mentioned deformation conditions were first constructed based on the experimental data of isothermal compression test. The experimental results show that the flow stress of the alloy is affected by the deformation temperature, strain rate and strain in the deformation process. The flow stress curves generated based on the experiments exhibit a steady-state characteristic and the flow softening behavior at the higher temperature and the lower strain rate. The suitable process parameters in (α + β) forging region are identified to be 855–920 °C, 0.001–0.005 s−1 for the strain less than 0.7. Under this process parameter configuration, the optimum deformation condition is 890 °C, 0.001 s−1. When the strain is greater than 0.7, the process parameter configurations for superplasticity deformation identified based on P-maps, microstructure observation and verified by the physical experiment of superplasticity deformation are 785–810 °C, 0.001–0.002 s−1; 875–925 °C, 0.001–0.005 s−1 and 945–990 °C, 0.001–0.016 s−1. The optimum (α + β) forging process parameters are 810 °C, 0.001 s−1; 900 °C, 0.001 s−1 and 960 °C, 0.001 s−1.
机译:为了确定最佳工艺参数,系统研究了Ti–6.5Al–3.5Mo–1.5Zr–0.3Si在780–990°C的变形温度和0.001至70.0 s-1的应变速率下的变形行为。 (α+β)锻造过程中的组织控制。首先基于等温压缩试验的实验数据,建立了上述变形条件下钛合金的加工图(P图)。实验结果表明,合金的流动应力受变形过程中的变形温度,应变速率和应变的影响。根据实验生成的流动应力曲线在较高温度和较低应变速率下表现出稳态特性和流动软化行为。 (α+β)锻造区域的合适工艺参数确定为855–920°C,应变小于0.7时为0.001–0.005 s-1。在此工艺参数配置下,最佳变形条件为890°C,0.001 s-1。当应变大于0.7时,基于P-maps,微观观察和超塑性变形物理实验验证的超塑性变形过程参数配置为785–810°C,0.001–0.002 s-1; 875-925°C,0.001-0.005 s-1和945-990°C,0.001-0.016 s-1。最佳(α+β)锻造工艺参数为810°C,0.001 s-1; 900°C,0.001 s-1和960°C,0.001 s-1。

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