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The role of microstructure of nickel-aluminium-bronze alloy on its cavitation corrosion behavior in natural seawater

机译:镍铝青铜合金的微观结构对其在天然海水中空化腐蚀行为的作用

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An investigation was carried out in our laboratory to study the effect of the microstructure of nickel-aluminum-bronze (NAB) alloy on its cavitation corrosion behaviour in seawater using a 20-kHz ultrasonic induced cavitation facility. Cavitation tests were made under free corrosion conditions as a function of exposure time in natural seawater. Optical and scanning electron microscopy showed NAB immersed in stagnant seawater suffered from selective corrosion of the copper-rich alpha phase at boundaries with intermetallic kappa: precipitates. The kappa precipitates and precipitate-free zones did not suffer corrosion. Cavitation made the surface of this alloy very rough, with large cavities or pits, ductile tearing and corrosion of the boundaries of the alpha columnar grains. In addition, the number of cavities and their size increased with exposure time. Microcracks 5-10 mu m long were observed in the alpha phase adjacent to kappa precipitates along the cross-section of the material. Selective phase corrosion and cavitation stresses were considered to be the cause of the cracks observed.
机译:在我们的实验室中进行了一项调查,以研究使用20 kHz超声感应空化设备对镍铝青铜(NAB)合金的微观结构对其在海水中的空化腐蚀行为的影响。气蚀试验是在自由腐蚀条件下进行的,它是天然海水中暴露时间的函数。光学和扫描电子显微镜显示,浸没在停滞海水中的NAB在与金属间κ的边界处遭受富铜α相的选择性腐蚀:沉淀。卡伯沉淀物和无沉淀物的区域没有受到腐蚀。空化使该合金的表面非常粗糙,具有大的孔洞或凹坑,韧性的撕裂和α柱状晶界的腐蚀。另外,腔的数量及其尺寸随着曝光时间的增加而增加。在沿材料横截面的kappa析出物附近的α相中观察到5-10微米长的微裂纹。选择性相腐蚀和空化应力被认为是观察到裂纹的原因。

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