Yue Anyu, Cao Yong, Zhang Yi, Zhou Shenggang
Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Kunming 650093, China.
Materials (Basel). 2023 Aug 8;16(16):5511. doi: 10.3390/ma16165511.
The Mg-Li alloy stands as the lightest metallic structural material known to date, finding a wide range of applications. However, its development has been hindered by its susceptibility to oxidation and corrosion. In this study, we aimed to address this issue by employing electroless deposition to form a protective zinc layer on the surface of a magnesium-lithium alloy. The optimization of the zinc layer was achieved through varying parameters such as the zinc dipping time (110 min), temperature (2070 °C), and zinc content (20~200 g/L). Surface characterization was performed using scanning electron microscopy (SEM) and X-ray diffraction, while electrochemical tests and scratch tests were conducted to evaluate corrosion resistance and coating adhesion. The results demonstrated the successful formation of a uniform and dense pure zinc layer on the surface of the Mg-Li alloy when the zinc-dipping time was set at 5 min, the temperature was at 30 °C, and the zinc content was at 50 g/L. Under these conditions, the corrosion potential of the Mg-Li alloy experienced the greatest positive shift, reaching as high as -1.38 V. Additionally, the corrosion current was minimized, measuring at 2.78 × 10 A/cm. Furthermore, the maximum arc tolerance radius was observed. Consequently, the electroless deposition of zinc onto Mg-Li alloys significantly improves their corrosion resistance and bonding, opening up new prospects for the application of zinc-plated Mg-Li alloys.
镁锂合金是迄今为止已知的最轻的金属结构材料,具有广泛的应用。然而,其易氧化和腐蚀的特性阻碍了它的发展。在本研究中,我们旨在通过化学镀在镁锂合金表面形成一层保护性锌层来解决这一问题。通过改变诸如浸锌时间(110分钟)、温度(2070°C)和锌含量(20~200克/升)等参数来优化锌层。使用扫描电子显微镜(SEM)和X射线衍射进行表面表征,同时进行电化学测试和划痕测试以评估耐腐蚀性和涂层附着力。结果表明,当浸锌时间设定为5分钟、温度为30°C且锌含量为50克/升时,在镁锂合金表面成功形成了均匀致密的纯锌层。在这些条件下,镁锂合金的腐蚀电位正向偏移最大,高达-1.38V。此外,腐蚀电流最小化,测量值为2.78×10A/cm。此外,还观察到了最大电弧耐受半径。因此,在镁锂合金上化学镀锌显著提高了它们的耐腐蚀性和结合力,为镀锌镁锂合金的应用开辟了新前景。