高压液体射流对马氏体不锈钢sus420j2和SUS440C空化腐蚀行为的影响

Haisong Xu, Q. Dong
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引用次数: 0

摘要

根据ASTM标准G134-95,采用高压空化液体射流实验装置研究了SUS420J2和SUS440C的高压空化侵蚀(CE)行为。采用x射线衍射和扫描电镜对其微观组织进行了研究,确定了相和析出物。质量损失与暴露时间的关系表明,SUS440C的培养时间较长,腐蚀速率逐渐降低。研究了侵蚀的地形演变,表明SUS420J2的空化蚀起始于晶界,SUS440C的空化蚀起始于M3C沉淀或氧化铁夹杂。影响CE行为的主导因素在不同的空化阶段有所不同。微点蚀和晶界或析出相的初始损伤是孕育阶段的主要侵蚀形式;而在析出相被撕裂或晶界损伤消失后,基体硬度开始占主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cavitation Erosion Behaviour of Martensitic Stainless Steels SUS 420J2 and SUS440C by High Pressure Liquid Jet
The high-pressure cavitation erosion (CE) behavior of SUS420J2 and SUS440C were studied by a high pressure cavitating liquid jet experiment apparatus, according to ASTM Standard G134-95. The microstructures were investigated by X-ray diffraction and scanning electron microscopy to determine the phases and precipitates. The mass loss vs. exposure time relations indicated that SUS440C had longer incubation time and a decreasing erosion rate. The eroded topographical evolution was investigated, indicating that the initiation of cavitation erosion was accumulated from grain boundaries for SUS420J2, and from M3C precipitates or ferric oxide inclusions for SUS440C. The dominant factors that influenced CE behaviors changed in different cavitation stages. Micro-pitting and initial damage induced by grain boundaries or precipitates were the dominant erosion forms during the incubation stage; however, the matrix hardness started to prevail as the dominant factor after the precipitates had been torn off, or grain boundaries damage disappeared.
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