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Spatial phase structure and oxidation process of Al-W alloy powder with high sphericity 被引量:1
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作者 Aobo Hu Shuizhou Cai 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第19期62-72,共11页
In this study,Al-30W(wt.%)alloy powder was prepared by Aluminothermic reduction and hightemperature gas atomization.We then studied the phase composition,surface morphology,spatial phase structure,and thermal oxidatio... In this study,Al-30W(wt.%)alloy powder was prepared by Aluminothermic reduction and hightemperature gas atomization.We then studied the phase composition,surface morphology,spatial phase structure,and thermal oxidation process using XRD,SEM/EDS,TEM,DSC,and DTA/TG analysis.The results showed that the Al-30W alloy powder exhibited high sphericity,and the interior presented a special spatial phase structure in which the Al/W amorphous alloy phase and the metastable Al/W intermetallic compound phase were distributed in the pure Al matrix.When the Al-30W alloy powder was stabilized in a vacuum tube furnace,the spatial phase structure of the alloy powder changed,and a small amount of pure Al was embedded in the Al_(12)W matrix.The resulting Al-30W alloy powder products,treated in air at different temperatures,were collected in situ and characterized.The results presented that with an increase in temperature,the types and morphologies of the Al/W intermetallic compounds in the Al-30W alloy powder changed.Furthermore,the Al-30W alloy powder began to undergo intense oxidation reactions at about 900℃,accompanied by a concentrated energy release and rapid weight gain.The volatilization of WO_(3)produced in the oxidation process promoted the complete oxidation of the Al-30W alloy powder,and the Al-30W alloy powder was completely oxidized at 1300℃.At this stage,all W atoms were transformed into gaseous WO_(3),and only a large number of small Al_(2)O_(3)fragments remained in the oxidation product.Thus,the Al-30W alloy powder exhibited excellent thermal reactivity and oxidation integrity,and may offer excellent application prospects in the field of energetic materials. 展开更多
关键词 Aluminothermic reduction High-temperature gas atomization Al/W amorphous alloy phase Metastable Al/W intermetallic compound phase Thermal oxidation process
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分步反应的气相催化氧化法生产蒽醌 被引量:2
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作者 孙虹 姜秋 杨雪松 《燃料与化工》 2003年第6期324-325,333,共3页
介绍了分步反应的气相催化氧化法生产蒽醌的新工艺及主要设备,阐述了工艺的重要特点。
关键词 分步反应 气相催化氧化法 蒽醌 设备 工艺流程
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气相催化氧化法蒽醌生产工艺介绍
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作者 芮盛 《化工装备技术》 CAS 2016年第4期30-31,共2页
介绍一种气相氧化法蒽醌生产工艺,阐述其工艺流程、主要设备及操作要点,并与国内传统工艺做了比较。
关键词 蒽醌 气相催化氧化法 生产工艺 汽化器 反应器
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