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ALUMINUM BORON CARBIDE COMPOSITE AND METHOD TO FORM SAID COMPOSITE

机译:铝碳化硼复合材料及其形成方法

摘要

An improved aluminum-boron carbide (ABC) composite has been discovered that is comprised of a continuous network of AlB24C4 and boron carbide grains having therein other isolated aluminum-boron carbide reactive phases and at most 2% by volume of isolated metal. The improved ABC composite may be formed by forming boron carbide particulates into a porous body that has a porosity of at most about 35%, where the boron particulates have been heat treated to a temperature of 1200° C. to 1800° C., infiltrating the porous body with aluminum or aluminum alloy until an infiltrated aluminum-boron carbide body is formed that has at most about 1% porosity, heat treating the infiltrated body for at least 25 hours at 1000° C. to 1100° C. to form an aluminum boron carbide composite having a continuous network of AlB24C4 and boron carbide, and subsequently heat-treating to 700° C. to 900° C. to form the improved aluminum boron carbide composite.
机译:已发现一种改进的铝-碳化硼复合材料,该复合材料由AlB 24 C 4 的连续网络和其中具有其他隔离的铝硼组成的碳化硼晶粒组成碳化物反应相和最多2%(按体积计)的孤立金属。可以通过将碳化硼颗粒形成为具有至多约35%的孔隙率的多孔体中来形成改进的ABC复合物,其中将硼颗粒已经热处理至1200℃至1800℃的温度,渗入。用铝或铝合金制成多孔体,直到形成具有至多约1%的孔隙率的渗铝铝碳化硼体,然后在1000°C至1100°C下热处理该渗入体至少25小时,以形成具有AlB 24 C 4 和碳化硼的连续网络的碳化硼铝复合材料,然后热处理至700°C至900°C以形成改进的碳化铝铝复合材料。

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