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Epitaxy and new stray grain formation mechanism during epitaxial laser melting deposition of Inconel 718 on directionally solidified nickel-based superalloys

机译:在方向凝固镍基超合金上外延718的外延激光沉积过程中的外延和新的杂散晶粒形成机制

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摘要

The epitaxy behavior and stray grains (SGs) formation in the deposit during epitaxial laser melting deposition (ELMD) of directionally solidified (DS) superalloys were investigated. Columnar dendritic structures were obtained by epitaxial solidification on the DS substrate. The deposit also remained the orientation of the substrate. The SGs at the fusion interface, which were hardly eliminated, were attributed to different SGs formation mechanisms. The SGs were divided into GB-SGs and MC-SGs by the distribution characteristics. The GB-SGs at the low-angle and high-angle grain boundaries with a new mechanism of dynamic recrystallization induced by accumulation of thermal strain and stress under repeated spatially variable heating and cooling. The MC-SGs around the carbides were related to the misoriented cellular crystal formation caused by the varied shape of the solid-liquid interface. The columnar to equiaxed transition (CET) was another mechanism of MC-SGs formation.
机译:研究了所外延凝固(DS)超合金的外延激光熔融沉积(ELMD)期间沉积物中的外延行为和杂散晶粒(SGS)形成。通过在DS底物上外延凝固获得柱状树突结构。沉积物还仍然是基材的取向。融合界面处的SGS难以消除,归因于不同的SGS形成机制。通过分布特性将SGS分为GB-SGS和MC-SGS。低角度和高角度晶界的GB-SGS具有通过在重复的空间可变加热和冷却下通过累积热应变和应力诱导的动态再结晶的新机制。碳化物周围的MC-SGS与由固体液体界面的变化形状引起的错心的细胞晶体形成有关。柱状到等轴转换(CET)是MC-SGS形成的另一种机制。

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