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首页> 外文期刊>Tribology Transactions >Wear Behavior of Bronze Hybrid MMCs Coatings Produced by Current Sintering on Steel Substrates
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Wear Behavior of Bronze Hybrid MMCs Coatings Produced by Current Sintering on Steel Substrates

机译:电流烧结在钢基底上产生的青铜混合MMCs涂层的磨损行为

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摘要

In this work, a bronze matrix (90 wt% Cu + 10 wt% Sn) was reinforced with SiC and graphite particulates using mechanical alloying and a subsequent current sintering technique. The mechanically ball-milled bronze hybrid matrix composite powders reinforced with 5.0 wt% SiC and 5.0wt% graphite were cold-compacted on a 1040 steel substrate under a pressure of 300 MPa. The compacted structure was sintered at atmospheric conditions to nearly a full density within 10 min using current sintering, in which the powders were heated by a low voltage and high current and compressed simultaneously. The samples were sintered at three different applied currents (1,500, 1,700, and 1,900 A) to provide dense and well-bonded coatings on steel substrates. Microhardness testing and optical and scanning electron microscopes (SEM) were used for microstructural characterization of the hybrid composites. The tribological characterization of the resulting composites was tested by a block-on-disk method for determination of the wear loss and friction coefficient behaviors against a steel disk. It was pointed out that increasing applied current during the sintering/coating process resulted in obtaining high-hardness and wear-resistant hybrid composite coatings.
机译:在这项工作中,使用机械合金化和随后的电流烧结技术,用SiC和石墨颗粒增强了青铜基体(90 wt%Cu + 10 wt%Sn)。在300 MPa的压力下,将机械球磨的用5.0 wt%SiC和5.0 wt%石墨增强的青铜杂化基体复合粉末冷压在1040钢基底上。使用电流烧结法在10分钟内于大气条件下将压实的结构烧结至几乎全密度,其中粉末通过低压和高电流加热并同时压缩。在三种不同的施加电流(1,500、1,700和1,900 A)下烧结样品,以在钢基材上提供致密且粘结良好的涂层。显微硬度测试以及光学和扫描电子显微镜(SEM)用于杂化复合材料的微观结构表征。所得复合材料的摩擦学特性通过盘上嵌段法进行测试,以确定对钢盘的磨损损失和摩擦系数行为。指出在烧结/涂覆过程中增加的施加电流导致获得高硬度和耐磨的混合复合涂层。

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