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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Cryomilling for the Fabrication of a Particulate B_4C Reinforced Al Nanocomposite: Part I. Effects of Process Conditions on Structure
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Cryomilling for the Fabrication of a Particulate B_4C Reinforced Al Nanocomposite: Part I. Effects of Process Conditions on Structure

机译:用于制备B_4C增强Al纳米颗粒复合材料的低温铣削:第一部分。工艺条件对结构的影响

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摘要

Metal matrix composites (MMCs) are a relatively new category of engineering materials, which provide tailorable properties to meet specific needs. Cryomilling, mechanical milling at cryogenic temperatures, was employed in this study to fabricate nanostructured metal matrix composite powder with nanocrystalline aluminum alloys as the matrix and paniculate B_4C as the reinforcement. Cryomilling provided an extremely low temperature for the processing of this composite, which prevented the formation of secondary phases that are detrimental to mechanical properties. A uniform distribution of B_4C in the Al and a clean strong interface between them were achieved. The contamination that results from cryomilling was analyzed. The effects of the B_4C addition and the process control agent (PCA) on the microstructure of the composite powder were investigated. Results indicate that these additives had significant, yet opposing, effects on powder yield; a slight effect on contamination, particle size, and particle morphology; and no detectable effect on grain size refinement in the matrix.
机译:金属基复合材料(MMC)是一类相对较新的工程材料,可提供可定制的性能以满足特定需求。在这项研究中,采用低温研磨,在低温下进行机械研磨来制备以纳米晶铝合金为基体并以B_4C颗粒为增强剂的纳米结构金属基复合粉末。低温研磨为该复合材料的加工提供了极低的温度,从而防止了形成不利于机械性能的第二相。实现了B_4C在Al中的均匀分布以及它们之间的清洁牢固的界面。分析了低温研磨导致的污染。研究了添加B_4C和过程控制剂(PCA)对复合粉末微观结构的影响。结果表明,这些添加剂对粉末产量有显着但相反的影响。对污染,粒度和颗粒形态有轻微影响;并且对基体中晶粒细化没有可检测的影响。

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