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Cavitation erosion and corrosion behaviour of laser surface alloyed MMC of SiC and Si3N4 on Al alloy AA6061

机译:铝合金表面SiC和Si3N4激光表面合金化MMC的空化腐蚀和腐蚀行为AA6061

摘要

Laser surface alloying of SiC/Si3N4 on AA6061 aluminium alloy was carried out using a 2-kW CW Nd-YAG laser. Different ratios of SiC and Si3N4 powders were mixed and the layers were preplaced by pasting. Subsequent laser surface melting of the layers gave a surface metal matrix composite (MMC). The microstructure, chemical compositions and phase identification of the modified layers were examined using scanning electron microscopy (SEM), energy disperse X-ray spectroscopy (EDX) and X-ray diffractometry (XRD), respectively. The laser surface alloyed MMCs of AA6061-SiC and AA6061-Si3N4 consisted of small amounts of Al4C3/Al4SiC4 and A1N, respectively. For specimens alloyed with 100% Si3N4 (AA6061-Si3N4), the cavitation erosion resistance R(e) was improved by three times as compared to the AA6061 alloy whereas there was no significant improvement in R(e) of the specimen alloyed with 100% SiC (AA6061-SiC). The surface hardness of the specimens alloyed with SiC/Si3N4 was increased seven times. All the laser alloyed specimens with SiC/Si3N4 showed a decrease in pitting resistance and absence of passivity owing to the aluminium-ceramic interfaces, which favour pit initiation or hindered passivity.
机译:使用2 kW CW Nd-YAG激光在Aa6061铝合金上进行SiC / Si3N4激光表面合金化。混合不同比例的SiC和Si3N4粉末,并通过粘贴预先放置各层。随后各层的激光表面熔化得到表面金属基质复合物(MMC)。分别使用扫描电子显微镜(SEM),能量分散X射线光谱仪(EDX)和X射线衍射仪(XRD)检查改性层的微观结构,化学成分和相识别。 AA6061-SiC和A6066-Si3N4的激光表面合金化MMC分别由少量的Al4C3 / Al4SiC4和AlN组成。对于用100%Si3N4(AA6061-Si3N4)合金化的试样,抗空蚀性R(e)是AA6061合金的三倍,而在100%Si3N4(AA6061-Si3N4)合金化的试样中,R(e)没有明显改善。 SiC(AA6061-SiC)。与SiC / Si3N4合金化的试样的表面硬度提高了7倍。由于铝-陶瓷界面的缘故,所有具有SiC / Si3N4的激光合金化试样均显示出抗点蚀性降低且无钝化,这有利于点蚀或钝化。

著录项

  • 作者

    Man HC; Kwok CT; Yue TM;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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