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首页> 外文期刊>Materials Science and Engineering >Investigation of microstructural evolution in a selective laser melted Ti6A14V alloy induced by an ultrasonic surface rolling process
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Investigation of microstructural evolution in a selective laser melted Ti6A14V alloy induced by an ultrasonic surface rolling process

机译:超声表面轧制诱导选择性激光熔融Ti6A14V合金组织演变的研究

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Surface modification treatment was carried out on a selective laser melted Ti6A14V alloy using an ultrasonic surface rolling process (USRP). The results showed that a deformed layer with a gradient microstructure was produced near the surface, in which the microstructure changed from a coarse lamellar a structure to ultrafine lamellar grains, ultrafine equiaxed grains and nanograms. Moreover, there was a decrease in the intensity of the texture from the matrix to the surface. Furthermore, the dislocation density in the deformed layer first increased and then decreased from the matrix to the surface. The deformed layer exhibited a much higher hardness than the matrix, which was ascribed to grain boundary strengthening and dislocation strengthening.
机译:使用超声表面轧制工艺(USRP)对选择性激光熔融Ti6A14V合金进行了表面改性处理。结果表明,在表面附近产生了具有梯度微观结构的变形层,其中微观结构从粗的层状结构变为超细的层状晶粒,超细的等轴晶粒和纳克。此外,从基质到表面的纹理强度降低。此外,变形层中的位错密度首先从基体到表面增加,然后降低。变形层表现出比基体高得多的硬度,这归因于晶界强化和位错强化。

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