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首页> 外文期刊>Journal of Materials Processing Technology >Microstructure evolution in the local loading forming of TA15 titanium alloy under non-isothermal condition
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Microstructure evolution in the local loading forming of TA15 titanium alloy under non-isothermal condition

机译:非等温条件下TA15钛合金局部加载成形的组织演变

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In this paper, the microstructure evolution and processing-microstructure relationship in the non-isothermal local loading forming of TA15 titanium alloy were studied through an analog experiment. Some new microstructural mechanisms are found, which are different from those under isothermal local loading forming. In the non-isothermal local loading forming, the tri-modal microstructure consisted of equiaxed primary α, lamellar α and β transformed matrix is achieved. The lamellar α, not produced under isothermal condition, is generated by β → α transformation due to the decrease of component temperature. With the same processing parameters, the volume fraction and grain size of primary α are both greater than those processed isothermally. The content of lamellar α decreases with heating temperature decreasing and little lamellar α can be found when the heating temperature drops to 930℃. Under small deformation degree, the lamellar α distributes randomly in each feature region. As deformation increases, the lamellar α in transitional region and second-loading region present a preferred orientation perpendicular to the compression direction. The primary α content almost decreases linearly with heating temperature, which is different from the regular that under isothermal condition. Non-isothermal local loading forming with a higher heating temperature (near-β region) offers a cost-efficient way for the manufacture of TA15 titanium alloy large-scale integral components.
机译:通过模拟实验研究了TA15钛合金非等温局部加载成形过程中的组织演变和加工组织关系。发现了一些新的微观结构机制,这些机制不同于等温局部载荷形成下的机制。在非等温局部加载成形中,实现了由等轴初级α,层状α和β相变基体组成的三峰微观结构。在等温条件下不产生的层状α,是由于成分温度降低而通过β→α转变而产生的。在相同的加工参数下,初生α的体积分数和晶粒尺寸均大于等温加工的α。层状α的含量随着加热温度的降低而降低,当加热温度降至930℃时,层状α的含量很少。在较小的变形度下,层状α随机分布在每个特征区域。随着变形的增加,在过渡区域和第二加载区域中的层状α呈现出垂直于压缩方向的优选方向。初生α含量几乎随加热温度呈线性下降,这与等温条件下的常规变化不同。具有较高加热温度(靠近β区域)的非等温局部载荷成形为制造TA15钛合金大型整体部件提供了一种经济高效的方法。

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