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Metal-matrix composite fabricated with gas tungsten arc melt injection and precoated with NiCrBSi alloy to increase the volume fraction of WC particles

机译:气体钨极电弧熔体注射法制备的金属基复合材料,并预涂NiCrBSi合金以增加WC颗粒的体积分数

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The volume fraction, dissolution, and segregation of WC particles in metal-matrix composites (MMCs) are critical to their wear resistance. Low carbon steel substrates were precoated with NiCrBSi coatings and processed with gas tungsten arc melt injection method to fabricate MMCs with high volume fraction of WC particles. The microstructures and wear resistance of the composites were investigated. The results showed that the volume fraction of WC particles increased with decreasing hopper height and was as high as 44% when hopper height was 100 mm. The dissolution of WC particles was minimal. The content of the alloying elements decreased from the top to the bottom of the matrix. More WC particles dissolved in the overlapping area, where Fe_(3)W_(3)C carbide blocks could be found. The wear loss of the MMCs after 40 min was 6.9 mg, which is 76 times less than that of the substrate after the 4 min test.
机译:金属基复合材料(MMC)中WC颗粒的体积分数,溶解和偏析对其耐磨性至关重要。低碳钢基材预先涂有NiCrBSi涂层,并用气体钨极电弧熔体注射法进行处理,以制造具有高体积分数WC颗粒的MMC。研究了复合材料的微观结构和耐磨性。结果表明,随着料斗高度的减小,WC颗粒的体积分数增加,当料斗高度为100 mm时,WC颗粒的体积分数高达44%。 WC颗粒的溶解最小。合金元素的含量从基体的顶部到底部降低。更多的WC颗粒溶解在重叠区域,在那里可以找到Fe_(3)W_(3)C碳化物块。 40分钟后,MMC的磨损损失为6.9 mg,比4分钟测试后的基底的磨损损失小76倍。

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