首页> 外文期刊>Journal of Materials Science >Effect of alpha prime due to 475 °C aging on fracture behavior and corrosion resistance of DIN 1.4575 and MA 956 high performance ferritic stainless steels
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Effect of alpha prime due to 475 °C aging on fracture behavior and corrosion resistance of DIN 1.4575 and MA 956 high performance ferritic stainless steels

机译:475°C老化导致的α素对DIN 1.4575和MA 956高性能铁素体不锈钢的断裂行为和耐腐蚀性的影响

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摘要

The 475 °C embrittlement in stainless steels is a well-known phenomenon associated to alpha prime (α′) formed by precipitation or spinodal decomposition. Many doubts still remain on the mechanism of α′ formation and its consequence on deformation and fracture mechanisms and corrosion resistance. In this investigation, the fracture behavior and corrosion resistance of two high performance ferritic stainless steels were investigated: a superferritic DIN 1.4575 and MA 956 superalloy were evaluated. Samples of both stainless steels (SS) were aged at 475 °C for periods varying from 1 to 1,080 h. Their fracture surfaces were observed using scanning electron microscopy (SEM) and the cleavage planes were determined by electron backscattering diffraction (EBSD). Some samples were tested for corrosion resistance using electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization. Brittle and ductile fractures were observed in both ferritic stainless steels after aging at 475 °C. For aging periods longer than 500 h, the ductile fracture regions completely disappeared. The cleavage plane in the DIN 1.4575 samples aged at 475 °C for 1,080 h was mainly {110}, however the {102}, {314}, and {131} families of planes were also detected. The pitting corrosion resistance decreased with aging at 475 °C. The effect of alpha prime on the corrosion resistance was more significant in the DIN 1.4575 SS comparatively to the Incoloy MA 956.
机译:不锈钢中的475°C脆化是众所周知的现象,与沉淀或旋节线分解形成的α素(α')有关。对于α'形成的机理及其对变形和断裂机理以及耐腐蚀性的影响,仍然存在许多疑问。在这项研究中,研究了两种高性能铁素体不锈钢的断裂行为和耐腐蚀性:评估了超铁素体DIN 1.4575和MA 956超级合金。两种不锈钢(SS)的样品均在475°C的温度下老化1至1,080 h。使用扫描电子显微镜(SEM)观察其断裂表面,并通过电子反向散射衍射(EBSD)确定分裂平面。使用电化学阻抗谱(EIS)和电势极化测试了一些样品的耐腐蚀性。两种铁素体不锈钢在475°C时效后均观察到脆性和延性断裂。对于超过500小时的老化时间,韧性断裂区域完全消失。 DIN 1.4575样品在475°C下老化1,080 h的分裂平面主要为{110},但是也检测到{102},{314}和{131}平面族。在475°C时效时,耐点蚀性降低。与Incoloy MA 956相比,在DIN 1.4575 SS中,α素对耐蚀性的影响更为显着。

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