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Microstructure and texture of Al coating during kinetic spraying and heat treatment

机译:动态喷涂和热处理过程中铝涂层的组织和织构

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Microstructure and texture formation of an Al coating during kinetic spraying (or cold gas dynamic spraying) and heat treatment were investigated. Coating formation by kinetic spraying is based on super-sonic collision of in-flight micron-sized particles and their severe interfacial plastic deformation under ultra-high strain rates (1.0 × 106–0.5 × 109 s−1), which induces adiabatic shear instability. Shear texture, 45°-rotated Cube {001} 110, and static recovered microstructure were formed at the interface of Al during kinetic spraying because Al has the equivalent slip system {111} 110 of a face-centered cubic having high stacking fault energy (SFE). During heat treatment, discontinuous recrystallization and grain growth led to transformation of the shear texture into a strong Cube texture, {001} 100, and misorientation angle transition. Given the mechanical and physical properties of the Al, metallurgical mechanisms of microstructure and texture formation of kinetic-sprayed and heat-treated Al coatings were suggested based on transmission electron microscopy and electron backscatter diffraction analysis.
机译:研究了动态喷涂(或冷气动态喷涂)和热处理过程中铝涂层的组织和织构。动态喷涂形成的涂层是基于飞行中的微米级颗粒的超音速碰撞及其在超高应变速率(1.0×106 –0.5×109 s−下的严重界面塑性变形)形成的1 ),从而导致绝热剪切失稳。在动态喷涂过程中,Al的剪切纹理,45°旋转的立方体{001} <110>和静态恢复的微观结构在Al的界面处形成,因为Al具有与面心立方相同的滑移系统{111} <110>堆叠故障能量(SFE)。在热处理过程中,不连续的再结晶和晶粒长大导致剪切织构转变为强的立方织构{001} <100>,并发生了取向错误的角度转变。考虑到铝的机械和物理性能,基于透射电子显微镜和电子背散射衍射分析,提出了动态喷涂和热处理的铝涂层的微观结构和织构形成的冶金机理。

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