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Effects of process parameters on the microstructure during the hot compression of a TC6 titanium alloy

机译:工艺参数对TC6钛合金热压缩过程中组织的影响

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The effects of process parameters on the microstructural evolution, including grain size and volume traction of the a phase during hot forming of a TC6 alloy were investigated using compression tests. Experiments were conducted on the material with (α + β) phases at deformation temperatures of 800, 860, 920, and 950℃, strain rates of 0.001, 0.01, 1, and 50 s~(-1), and height direction reductions of 30%, 40%, and 50%. After reaching a peak value near 920℃, the grain size and volume fraction decrease with further increase of deformation temperature. The strain rate affects the morphologies and grain size of α phase of the TC6 titanium alloy. At a lower strain rate, the effect of the strain rate on the volume fraction is greater than that at a higher strain rate under the experimental conditions. The effects of the strain rate on the microstructure also result from deformation heating. The grain size of the α phase increases with an increase in height direction reduction after an early drop. The effect of height direction reduction on the volume fraction is similar to that of the grain size. All of the optical micrographs and quantitative metallography show that deformation process parameters affect the microstructure during hot forming of the TC6 alloy, and a correlation between the temperature, strain, and strain rate appears to be a significant fuzzy characteristic.
机译:使用压缩试验研究了工艺参数对TC6合金热成型过程中微观结构演变的影响,包括晶粒尺寸和a相的体积牵引。对具有(α+β)相的材料进行了实验,其变形温度为800、860、920和950℃,应变速率为0.001、0.01、1和50 s〜(-1),高度方向减小了30%,40%和50%。达到920℃附近的峰值后,随着变形温度的进一步升高,晶粒尺寸和体积分数减小。应变速率影响TC6钛合金的α相的形态和晶粒尺寸。在较低的应变速率下,在实验条件下,应变速率对体积分数的影响大于在较高的应变速率下。应变速率对微观结构的影响也来自变形加热。在早期下降之后,α相的晶粒尺寸随着高度方向减小的增加而增加。高度方向减小对体积分数的影响与晶粒尺寸的影响相似。所有的光学显微照片和定量金相照片均显示,变形工艺参数会影响TC6合金热成型过程中的显微组织,并且温度,应变和应变率之间的相关性似乎是明显的模糊特性。

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