>To evaluate the influence of liquid propert'/> Evaluation of cavitation erosion resistance of copper alloy in different liquid media
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Evaluation of cavitation erosion resistance of copper alloy in different liquid media

机译:不同液体介质中铜合金空化蚀阻的评价

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>To evaluate the influence of liquid property on cavitation erosion resistance of the copper alloy, an experimental investigation is performed with the ultrasonic vibratory apparatus. Liquid media of deionized water, tap water, and 3.5?wt.% NaCl solution are selected. The cumulative mass loss rate and microhardness are measured and surface morphology observed at different erosion time. The results show that the cumulative mass loss increases consistently with the erosion time, and the highest cumulative mass loss rate is witnessed in tap water. The erosion time at which the maximum cumulative mass loss rate is reached is the shortest with the 3.5?wt.% NaCl solution. Surface morphology testifies the rapid evolution of small cavitation erosion pits into large eroded area in the specimen surface submerged in the deionized water and tap water. In comparison, the specimen surface in the 3.5?wt.% NaCl solution is featured by insignificant cavitation erosion, and plastic deformation remains predominant for a long erosion time. The initiation and development of micro‐cracks are remarkable in tap water. In the 3.5?wt.% NaCl solution, the progression of cavitation erosion is mitigated relative to the other two cases, and cavitation erosion pits remain the predominant constituents of the erosion pattern as the erosion time increases. The hardening layer is found beneath the specimen surface, and the 3.5?wt.% NaCl solution is responsible for the thickest hardening layer. As cavitation erosion develops, the softening phenomenon is salient with consistent flaking off of surface layers.
机译: <第XML:ID =“Maco201709880-SEC-0001”编号=“否”> 为了评价液体性质对铜合金的空化腐蚀性的影响,用超声波振动装置进行实验研究。去离子水的液体介质,自来水和3.5·wt。选择%NaCl溶液。测量累积质量损失率和显微硬度和在不同侵蚀时间观察到的表面形态。结果表明,累积质量损失随着侵蚀时间始终增加,累积最高的质量损失率在自来水中得到了见证。达到最大累积质量损失率的侵蚀时间是3.5〜wt。%NaCl溶液的最短。表面形态学证明了小空化腐蚀坑的快速演变在浸没在去离子水中的标本表面的大型侵蚀区域中。相比之下,在3.5中的样品表面在3.5?重量%中。%NaCl溶液采用微不足道的空化腐蚀为特征,塑性变形仍然是长腐蚀时间的主导。微裂纹的启动和发展在自来水中是显着的。在3.5?wt。%NaCl溶液中,相对于其他两种情况减轻了空化腐蚀的进展,并且由于腐蚀时间增加,空化腐蚀坑仍然是腐蚀模式的主要成分。在样品表面下方发现硬化层,3.5·wt。%NaCl溶液负责最厚的硬化层。随着空化腐蚀的发展,软化现象是突出的,表面层的一致剥落。

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