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Investigation into Heat Treatment and Residual Stress in Laser Clad AA7075 Powder on AA7075 Substrate.

机译:激光熔覆AA7075粉末在AA7075基板上的热处理和残余应力的研究。

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摘要

The laser cladding of AA7075 powder onto a AA7075 substrate was conducted to evaluate the effect of heat treatment and to measure residual stress between the clad layer and substrate to better understand the effect of laser cladding. The microstructure formed in the clad region was characteristic of a high cooling rate, which is typical for laser cladding. The heat-affected zone (HAZ) showed coarser precipitates when compared with the substrate and was attributed to the heating from the laser. A solution heat treatment followed by aging was employed to restore the strength in the HAZ. Nanohardness traverses of the clad and substrate was performed and it was shown the hardness in the 7075 clad layer was lower than the substrate both pre- and post-heat treatment and was attributed to the vaporization of zinc and magnesium. Neutron diffraction was employed to measure the residual stress both before and after heat treatment. The residual stresses formed in the clad layer were tensile and about 50 MPa in magnitude; heat treatment increased the stress level to approximately 100 MPa. © 2013, Springer.
机译:将AA7075粉末激光熔覆在AA7075基板上,以评估热处理效果并测量熔覆层和基板之间的残余应力,以更好地理解激光熔覆的效果。在包覆区域中形成的微观结构具有高冷却速率的特征,这是激光熔覆的典型特征。与基板相比,热影响区(HAZ)显示出较粗糙的析出物,并且归因于来自激光器的加热。固溶热处理后进行时效处理,以恢复热影响区的强度。进行了包覆层和基底的纳米硬度遍历,结果表明7075包覆层的硬度在热处理前后均低于基底,并且归因于锌和镁的汽化。中子衍射用于测量热处理前后的残余应力。在覆层中形成的残余应力为拉伸应力,强度约为50 MPa。热处理将应力水平提高到大约100 MPa。 ©2013,施普林格。

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