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首页> 外文期刊>材料と環境 >Study on the Mechanism of Intergranular Stress Corrosion Cracking of Alloy 600 in High Temperature Acidic Solution
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Study on the Mechanism of Intergranular Stress Corrosion Cracking of Alloy 600 in High Temperature Acidic Solution

机译:高温酸性溶液中合金600晶体应力腐蚀裂纹的机理研究

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摘要

To clarify the acidic Intergranular Stress CorrosionCracking (IGSCC) mechanism of alloy 600, some metallurgicalfactors were extracted from the various IGSCC contributingfactors, and several kinds of experimental studies were conducted.Acidic IGSCC susceptibilities of mill-annealed, sensitized andthermally treated (TT) alloy 600 which have different grainboundary characteristics were examined using C-ring and SSRTtests. Grain boundary characteristics, such as chromium depletion,intergranular slipping behavior and electrochemical dissolution,were examined in detail using a modified Huey test, aTransmission Electron Microscope (TEM) study, and anelectrochemical measurement, respectively. The C-ring and SSRTresults showed that the IGSCC resistance of the sensitized materialwhich had the chromium depletion zone was the least, and the TTmaterial was the most resistant. TEM analysis showed that theslips at the grain boundary were easy to detect in the mill-annealedand sensitized materials. In the TT materials, however, slips weresuppressed by its interacted dislocation morphology.Electrochemical study showed that the preferential dissolution ofnickel tended to occur with an increase in temperature anddecrease in pH under the acidic condition. From thesemetallurgical and electrochemical test results, it was concludedthat the slipping behavior and the nickel dissolution at thechromium depletion zone worked together as the influencingfactor to acidic IGSCC.
机译:为了阐明合金600的酸性晶间应激腐蚀(IGSCC)机理,一些冶金Factors从各种IGSCC贡献物中提取,进行了几种实验研究。探测磨削的磨削,敏化和蒸发治疗(TT)合金600的兴趣分析使用C形环和SSRTTES检查具有不同的粒度特性。使用改性的Huey试验,Atransission电子显微镜(TEM)研究和一种电化学测量,详细研究了晶界特性,例如铬耗尽,晶间滑动行为和电化学溶解。 C形环和SSRTResults表明,铬耗尽区的致敏材料的IGSCC电阻最小,TTMaterial是最抗性的。 TEM分析表明,在磨削的和敏化材料中易于检测晶粒边界的混合物。然而,在TT材料中,通过其相互作用的脱位形态进行抑制的滑动。电化学研究表明,在酸性条件下,Nickel的优先溶解在pH下的温度和pH值中的温度升高。从葡萄糖和电化学测试结果中,得出结论,耗水区的滑动行为和镍溶解在一起作为酸性IGSCC的影响物质。

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