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Formation Process of an LDHs Coating on Magnesium Alloy by a CO 2 Pressurization Method

机译:CO 2加压法在镁合金上形成LDHs涂层的工艺

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The formation process of LDHs (layered double hydroxides) coating on magnesium alloy by the CO 2 pressurization method was studied. The micro-structure was observed by OM, SEM and GAXRD. The weighted gain curve, apparent activation energy, and CO 2 solubility curve were all calculated by equations. The potentiodynamic polarization curve, hydrogen evolution data, and immersion were analyzed by an electrochemical method. The results show that the LDHs coating was formed layer-by-layer. The formation positions were initially on the α-Mg phase, and then on the β-Mg 17 Al 12 phase. It was found to be the most compact after 30 min. The LDHs coating began to appear to have severe cracks and holes over time. The formation process of the LDHs coating can be divided into three stages: a rapid growth stage (0–10 min), slow growth stage (10–20 min), and periodic growth stage (30 min, 1 h). The apparent activation energies in each of the three stages are 21.78, 31.86 and 34.92 kJ mol ?1 , respectively. The LDHs coating has a compact micro-structure and better anti-corrosion at a pressure of 3 MPa, a temperature of 50 °C and a time of 30 min. The CO 2 pressurization promotes a formation reaction rate and achieves a high formation efficiency and good formation stability under the condition of zero pollution.
机译:研究了用CO 2加压法在镁合金上形成LDHs(层状双氢氧化物)的过程。通过OM,SEM和GAXRD观察其微观结构。加权增益曲线,表观活化能和CO 2溶解度曲线均通过方程式计算。通过电化学方法分析了电位动力学极化曲线,氢释放数据和浸没。结果表明,LDHs涂层是逐层形成的。形成位置最初在α-Mg相上,然后在β-Mg17 Al 12相上。 30分钟后发现它是最紧凑的。随着时间的流逝,LDHs涂层开始出现严重的裂纹和孔洞。 LDHs涂层的形成过程可分为三个阶段:快速生长阶段(0-10分钟),缓慢生长阶段(10-20分钟)和周期性生长阶段(30分钟,1小时)。在这三个阶段的每一个中,表观活化能分别为21.78、31.86和34.92 kJ mol?1。 LDHs涂层在3 MPa的压力,50°C的温度和30分钟的时间下具有致密的微观结构和更好的抗腐蚀性能。在零污染的条件下,CO 2的加压促进了地层反应速率并实现了高地层效率和良好的地层稳定性。

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