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DEVELOPMENT OF AL-30B{sub}4C METAL MATRIX COMPOSITES FOR NEUTRON ABSORBER MATERIAL

机译:用于中子吸收材料的Al-30%B {Sub} 4C金属基复合材料的研制

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In recent years, aluminum boron carbide particulate-reinforced composites have been increasingly used as an excellent neutron absorber material in the nuclear industry. Alcan has developed a unique liquid mixing process to manufacture these metal matrix composites. The fabrication of durable and usable components with higher B{sub}4C content composites (up to 30%) is challenging in several aspects ranging from mixing, casting, extruding and rolling. In this paper, the results of material development with higher B{sub}4C contents, from raw material via semi-finished to finished products, are presented. The casting process, as well as downstream extrusion and rolling processes, are described. The microstructural characteristics of an Al-30%B{sub}4C composite, as an example, at as-cast and deformed conditions, are reported. The mechanical and material properties of extruded and rolled components at different conditions are examined. Finally, the casting and fabrication of a composite with 25% B{sub}4C on the industrial scale are demonstrated.
机译:近年来,碳化铝颗粒颗粒增强复合材料越来越多地用作核工业中的优异中子吸收材料。 Alcan开发了一种独特的液体混合过程,以制造这些金属基质复合材料。耐用和可用组分的制造具有较高的B {Sub} 4C含量复合材料(高达30%)在混合,铸造,挤出和轧制的几个方面是具有挑战性的。本文介绍了通过半成品到成品的原料的具有较高B {Sub} 4C内容物的材料开发的结果。描述了铸造工艺,以及下游挤出和轧制工艺。报道了Al-30%B {亚} 4C复合材料的微观结构特征,作为铸造和变形条件。检查不同条件下挤出和轧制部件的机械和材料性质。最后,对工业规模的25%B {Sub} 4C进行了合成材料的铸造和制造。

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