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镁粉及铝镁合金吸湿机理研究

Study on Hygroscopic Mechanism of Magnesium Powder and Aluminum Magnesium Alloy
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摘要 为了探究Mg粉及Al-Mg合金的吸湿机理,将1种铣削Mg粉、1种铣削Al-Mg合金和3种雾化Al-Mg合金进行加速吸湿试验,对吸湿前后金属粉末的形貌、物相、吸湿性、化学成分、氧化层结构及热分解机理进行了表征与分析。结果表明:Al-Mg合金的吸湿率(<1%)远小于Mg粉(8.72%),Al-Mg合金耐吸湿性随组分中Al含量上升而提高。Mg粉吸湿后成分中的Mg(OH)_(2)和MgO吸收峰显著增强,Al-Mg合金吸湿前后的XRD谱图无明显变化。耐吸湿性最好的雾化Al-Mg合金(wAl∶wMg=60∶40)吸湿过程中,合金表层Mg先氧化、Al后氧化,形成了双层核壳结构,吸湿后合金的氧化层平均厚度由14.3nm上升至212.0nm,氧含量由18.3%上升至38.2%。3种雾化Al-Mg合金吸湿后的放热量均有所下降,样品吸湿率越低,能量损失幅度越小。 In order to investigate the hygroscopic mechanism of Mg powder and Al-Mg alloy,accelerated hygroscopic tests were conducted on one milled Mg powder,one milled Al-Mg alloy,and three atomized Al-Mg alloys.The morphology,phase,hygroscopicity,chemical composition,oxide layer structure,and thermal decomposition mechanism of the metal powder before and after hygroscopic tests were characterized and analyzed.The results show that the hygroscopic rate of Al-Mg alloy(<1%)is much lower than that of Mg powder(8.72%),and the hygroscopic resistance of Al-Mg alloy increases with the increase of Al content in the compositions.After hygroscopic test,the absorption peaks of Mg(OH)_(2) and MgO in the composition of Mg powder are significantly enhanced,while the XRD spectra of Al-Mg alloy before and after hygroscopic test show no significant changes.During the hygroscopic process of the atomized Al-Mg alloy(wAl∶wMg=60∶40)with the best hygroscopic resistance,the surface Mg of the alloy oxidizes first and Al oxidizes later,forming a double-layer core-shell structure.After hygroscopic test,the average thickness of the oxide layer of the alloy increases from 14.3 nm to 212.0 nm,and the oxygen content increases from 18.3%to 38.2%.The heat release of three types of atomized Al-Mg alloys after moisture absorption has decreased,and the lower the hygroscopic rate of the sample,the smaller the energy loss amplitude.
作者 柏志力 倪德彬 于国强 陈丽 付东晓 杨安民 BAI Zhi-li;NI De-bin;YU Guo-qiang;CHEN Li;FU Dong-xiao;YANG An-min(Shaanxi Applied Physics and Chemistry Research Institute,Xi’an,710061)
出处 《火工品》 北大核心 2025年第2期1-10,共10页 Initiators & Pyrotechnics
基金 国家自然科学基金(No.22305147)。
关键词 吸湿性 Mg粉 Al-Mg合金粉 元素分析 氧化层 反应热 Hygroscopicity Mg powder Al-Mg alloy powder Elemental analysis Oxide layer Reaction heat
作者简介 柏志力(1995-),男,在读硕士研究生,主要从事先进火工药剂技术研究;通讯作者:倪德彬(1987-),男,高级工程师,主要从事先进火工药剂技术研究。
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