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The role of alloying elements in commercial alloys for corrosion resistance in oxidizing-chloridizing atmospheres

机译:商业合金中合金元素在氧化-氯化气氛中的抗腐蚀作用

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In an extensive study the role of the alloying elements in commercial alloys for corrosion resistance was studied in air without and with 0.1 and 2 vol.%Cl{sub}2, respectively. In the first part of this paper [1] the thermodynamic fundamentals were discussed on the basis of the new concept of the quasi-stability diagrams. The second part which is presented here reports the results from investigations at 650, 800 and 1000℃ and testing times up to 1000 hrs where 14 commercial alloys were tested with regard to their corrosion behavior. The materials were selected so that the role of the alloying elements Mo, C, Si, Al, N, Fe, Ni and Cr would be evident from the results. The exposure tests were followed by extensive microstructural analyses of the corrosion scales and the metal subsurface zones so that type, mechanism and extent of corrosion could be characterized in great detail. At the end a ranking was possible of the different materials and with regard to the detrimental or beneficial role of the different alloying elements. The present results thus provide a much deeper insight into materials resistance in oxidizing-chloridizing environments at high temperatures.
机译:在广泛的研究中,研究了在没有和有0.1和2 vol。%Cl {sub} 2的空气中,合金元素在商用合金中对于耐腐蚀的作用。在本文的第一部分[1]中,在准稳定性图的新概念的基础上讨论了热力学基础。本文的第二部分报告了在650、800和1000℃下进行的研究结果以及长达1000小时的测试时间,其中对14种商用合金的腐蚀行为进行了测试。选择材料以使合金元素Mo,C,Si,Al,N,Fe,Ni和Cr的作用从结果中显而易见。在暴露测试之后,对腐蚀垢和金属亚表面区域进行了广泛的微观结构分析,以便可以详细描述腐蚀的类型,机理和程度。最后,可以对不同材料以及不同合金元素的有害或有益作用进行排名。因此,本发明的结果提供了对高温下氧化-氯化环境中的材料电阻的更深入的了解。

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