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Investigation of the Microstructure and Corrosion Properties of Friction Stir Processed Cast NiAl Bronze

机译:搅拌摩擦铸造NiAl青铜的显微组织和腐蚀性能研究

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摘要

NiAl bronze (NAB) was produced using the friction stir processing (FSP) technique at various tool rotation rates (omega) and traverse speeds (upsilon). Optical microstructure (OM) observation results indicated that inhomogeneous microstructures were produced from top to bottom in the stir zone (SZ), cavity defects were found in the retreating side (RS) area due to inadequate fill of NAB material flow during FSP. Results indicate that FSP processing parameters have a significant influence on the microstructure of NAB alloy. An optimized FSP processing map was obtained from the analysis of the pseudo heat index omega(2)/upsilon. Five optimum processing parameters were selected from the processing map, which were used to investigate the effect of FSP parameters on the corrosion properties of NAB by the salt fogging corrosion test. It was determined that the corrosion properties were improved by decreasing the rotation rate at a constant traverse speed, and the grain size and the volume fraction of retained beta phases were reduced by using the optimum FSP parameters. These results could optimize the microstructure and deepen the understanding of the corrosion behavior of FSP NAB.
机译:NiAl青铜(NAB)是使用摩擦搅拌处理(FSP)技术以各种工具转速(ω)和横向速度(upsilon)生产的。光学显微组织(OM)的观察结果表明,在搅拌区(SZ)的顶部到底部产生了不均匀的显微组织,由于FSP期间NAB材料的填充不足,在后退侧(RS)区域发现了空腔缺陷。结果表明,FSP加工参数对NAB合金的显微组织有重要影响。通过分析拟热指数omega(2)/ upsilon获得了优化的FSP处理图。从工艺图中选择了五个最佳工艺参数,通过盐雾腐蚀试验研究了FSP参数对NAB腐蚀性能的影响。可以确定的是,通过以恒定的移动速度降低转速可以改善腐蚀性能,并且可以通过使用最佳的FSP参数来降低晶粒尺寸和保留的β相的体积分数。这些结果可以优化微观结构,加深对FSP NAB腐蚀行为的了解。

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