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首页> 外文期刊>Journal of Magnesium and Alloys >A review on ignition mechanisms and characteristics of magnesium alloys
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A review on ignition mechanisms and characteristics of magnesium alloys

机译:镁合金点火机制及特征综述

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摘要

Magnesium alloys have become more attractive because of their low density and electromagnetic shielding effectiveness in the aerospace industry. However, some unpredictable situation may lead to the ignition of magnesium alloys. In this review, the thermodynamic conditions and transfer processes of magnesium alloys ignition are analyzed from the point of mechanisms. The criteria of ignition are emphasized. In addition, ignitability and flammability test systems are compared. And a more suitable method to assess the potential ignition and flammability risks of magnesium alloys in extreme environments is recommended. Furthermore, the ignition characteristics of magnesium alloys are discussed in detail. It was found that the ignition of magnesium alloys is a complex process determined by internal properties such as thermo-physical properties, oxide film properties, chemical compositions and geometrical parameters, as well as the external environment such as gas species, oxygen concentration and oxygen pressure. Ignition temperature is not physical constants of materials. It is not simply assumed that ignition may occur when the temperature of Mg alloys reaches a certain ignition point. Finally, the unsolved issues in the ignition of magnesium alloys are pointed out and the future investigation are suggested for improving the safety and reliability of magnesium alloys in the aerospace applications.
机译:由于它们在航空航天行业的低密度和电磁屏蔽效果低,镁合金变得更具吸引力。然而,一些不可预测的情况可能导致镁合金的点火。在本文中,从机制点分析了镁合金点火的热力学条件和转移过程。强调点火标准。此外,比较可燃性和易燃性测试系统。建议使用更合适的方法来评估极端环境中镁合金的潜在点火和易燃性风险。此外,详细讨论了镁合金的点火特性。结果发现,镁合金的点火是由诸如热物理性质,氧化物膜性质,化学组成和几何参数等内部性质确定的复杂方法,以及诸如气体物种,氧浓度和氧气压力的外部环境。点火温度不是材料的物理常数。当Mg合金的温度达到一定点火点时,不简单地假设点火可能发生点火。最后,指出了镁合金点火中的未解决问题,并建议改善航空航天应用中镁合金的安全性和可靠性的未来调查。

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