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首页> 外文期刊>Journal of Materials Science >Study on NbC particulate-reinforced iron matrix composite produced in situ
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Study on NbC particulate-reinforced iron matrix composite produced in situ

机译:原位制备NbC颗粒增强铁基复合材料的研究

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摘要

In the infiltration casting process and heat treatment method, gray cast iron and niobium wires are compounded. The reinforcement phase NbC particles are synthesized in situ between niobium wires and graphite phases in the gray cast iron using heat treatment. The microstructure and micro-hardness of the compound region are observed and measured through X-ray diffraction, scanning electron microscopy, and micro-hardness testing. The results indicate that at 1172 oC for 25 min, the in situ reaction area is diffusely extended eight times larger than the original diameter of 0.7 mm. The NbC particles synthesized in situ are tiny square- or rectangle-like particles that are evenly distributed in the gray cast iron. The highest micro-hardness value of the composite region is 1988 HV_(0.05), and the average micro-hardness value of the composite region after 20 min heat treatment is 953 HV_(0.05) or about five times larger than that of the matrix. After heat treatment at 1172 oC for 25 min, the average micro-hardness value of the composite was about 458 HV_(0.05), and the average macro-hardness was 49.2 HRC.
机译:在熔铸工艺和热处理方法中,灰铸铁和铌丝是复合的。增强相NbC颗粒是使用热处理在灰口铸铁中的铌丝和石墨相之间原位合成的。通过X射线衍射,扫描电子显微镜和显微硬度测试来观察和测量化合物区域的显微结构和显微硬度。结果表明,在1172 oC下25分钟,原位反应区域的扩散范围是原始直径0.7 mm的八倍。原位合成的NbC颗粒是微小的方形或矩形颗粒,均匀分布在灰口铸铁中。复合区的最高显微硬度值为1988 HV_(0.05),热处理20分钟后,复合区的平均显微硬度值为953 HV_(0.05),约为基体的五倍。在1172 oC热处理25分钟后,复合材料的平均显微硬度值为458 HV_(0.05),平均宏观硬度为49.2 HRC。

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