首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Chloride stress corrosion cracking resistnace of 6% Mo stainless steel alloy (UNS U08367)
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Chloride stress corrosion cracking resistnace of 6% Mo stainless steel alloy (UNS U08367)

机译:6%Mo不锈钢合金的耐氯化物应力腐蚀开裂性(UNS U08367)

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摘要

The UNS NO8367 (AL-6XN) alloy was designed to be a seawater resistant alloy and has been successfully used in a multitude of marine and offshore applications including process piping systems, heat exchanger equipment, drilling platforms, and desalination systems. Although the NO8367 alloy has improved resistance to chloride stress corrosion cracking (CSCC) it is not completely immune to this mode of failure. This investigation exposed U-bend specimens to various chloride bearing solutions to better define cracking threshold oftbe NO8367 alloy. Samples were exposed in an autoclave using static solutions and no effort was made to either aerate or dearate test solutions. Measurements in solutions with chloride concentrations of 0.02 to 2.0 wt% mixed from ASTM D-1141-52 sea salt, readily produced cracking at temperatures of 260°C. The threshold temperature for the onset CSCC in straight NaCI solutions was found to increase as the chloride concentration decreased. In the range of 0.02 to 15.8 wf!'/0 chlorides the threshold temperature in oC for the onset of cracking can be defined as follows. T s::c = 190.05 -47.421og [CI]. The results of this testing indicate that it is unlikely to stress corrosion crack this alloy in presence of chlorides at temperatures in the range of atmospheric boiling (zIOO°C). At temperatures greater than 120°C cracking can be initiated depending on the chloride content of the environment.
机译:UNS NO8367(AL-6XN)合金设计为耐海水合金,已成功用于多种海洋和海上应用,包括工艺管道系统,热交换器设备,钻井平台和脱盐系统。尽管NO8367合金具有更好的抗氯化物应力腐蚀开裂(CSCC)的性能,但仍不能完全避免这种失效模式。这项研究将U形弯曲试样暴露于各种含氯溶液中,以更好地定义NO8367合金的开裂阈值。使用静态溶液将样品置于高压釜中,不加气或脱气测试溶液。在ASTM D-1141-52海盐中混合氯化物浓度为0.02至2.0 wt%的溶液中进行的测量,在260°C的温度下容易产生龟裂。发现在纯NaCl溶液中起始CSCC的阈值温度随着氯化物浓度的降低而升高。在0.02至15.8 wf!'/ 0氯化物的范围内,可将开裂的临界温度(以℃为单位)定义如下。 T s :: c = 190.05 -47.421og [CI]。该测试的结果表明,在常压沸腾(z100°C)范围内的温度下,在存在氯化物的情况下,不太可能应力腐蚀该合金。在高于120°C的温度下,取决于环境中的氯化物含量,可能会引发裂纹。

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