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Influence of Microstructure and Shot Peening Treatment on Corrosion Resistance of AISI F55-UNS S32760 Super Duplex Stainless Steel

机译:显微组织和喷丸处理对AISI F55-UNS S32760超级双相不锈钢耐蚀性的影响

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Shot peening is a surface process commonly used in the aeronautic and automotive industries to improve fatigue resistance. Shot peening is proven to be beneficial in the fatigue behavior of components, but rarely has its influence on wear and pitting corrosion resistance been evaluated. In this work, shot peening was performed on AISI F55-UNS S32760 super-duplex stainless steel samples previously submitted to various thermal treatments, to obtain different initial microstructures and properties. Samples have been characterized in terms of microstructure morphology, local chemical composition, microhardness of each constituent phase, and energy dissipation modes. The enhanced properties provided by shot peening has been evaluated through residual stress depth profiles and Full Width at Half Maximum (FWHM) using X-ray diffraction (XRD), surface hardness, surface roughness, and corrosion resistance through salt spray fog tests. The 1400 °C solution thermal treatment was identified as the optimum initial condition, which maximizes the advantages of the shot peening treatment, even pitting corrosion resistance. These results are related to the uniformity of austenite and ferrite in terms of microstructure morphology, micromechanical properties, and alloying elements distribution.
机译:喷丸处理是航空和汽车工业中通常用于改善耐疲劳性的表面处理。喷丸处理被证明对部件的疲劳性能有益,但很少评估其对耐磨性和耐点蚀性的影响。在这项工作中,对预先进行了各种热处理的AISI F55-UNS S32760超双相不锈钢样品进行了喷丸处理,以获得不同的初始显微组织和性能。样品已根据微观结构形态,局部化学成分,每个组成相的显微硬度和能量耗散模式进行了表征。通过使用X射线衍射(XRD)的残余应力深度分布和半峰全宽(FWHM),表面硬度,表面粗糙度和耐盐雾性测试来评估喷丸强化所提供的增强性能。 1400°C的固溶热处理被确定为最佳的初始条件,这使喷丸处理的优势最大化,甚至具有抗点蚀的能力。这些结果与奥氏体和铁素体在微观组织形态,微观力学性能和合金元素分布方面的均匀性有关。

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