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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Continuous production of a multi-filament reinforced metal matrix composite strip from the semisolid state
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Continuous production of a multi-filament reinforced metal matrix composite strip from the semisolid state

机译:从半固态状态连续生产多丝增强金属基质复合条带

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摘要

Continuous metal matrix composite strip casting (MMCS-ing) composed of six 0.3-mm diameter annealed bare copper wires in a eutectic SnPb matrix was manufactured by a two-roll melt dragged processing (TRMD-ing) method at a rate of 0.3 m/s. The wires were dragged through a semisolid pool with a fibre contact time of approximately 0.2 s. The required gap between rolls to thixoforge the semisolid material around the wire filaments was approximately 1.4 mm. A successful continuous composite strip casting was achieved with a notably good degree of wire alignment. No cracks were observed at the copper wire/matrix interface. However, regions of porosity occurred in the matrix; their possible formation mechanisms are discussed. The solidification structure of the matrix was analysed, and the analysis results indicated the formation of small globular grains measuring approximately 3 μm in diameter. The specimens were evaluated for their tensile properties and compared with the rule of mixtures. The surface fracture analysis indicated a good matrix/fibre union. MMCS-ing is an economically viable process and has significant advantages over other metal matrix composite (MMC) fabrication methods.
机译:由六个0.3mm直径退火的裸铜线组成的连续金属基质复合条铸件(MMCS-ing)通过双卷熔体拖曳加工(TRMD-ing)方法以0.3米/升的速度制造s。通过半固体池拖动电线,纤维接触时间约为0.2秒。辊子之间的所需间隙到触发丝丝周围的半固体材料约为1.4mm。通过显着良好的线对准实现成功的连续复合带铸件。在铜线/矩阵界面处没有观察到裂缝。然而,孔隙率区域发生在基质中;讨论了他们可能的形成机制。分析了基质的凝固结构,分析结果表明,形成直径约为3μm的小球形晶粒。评价样品的拉伸性能并与混合物规则进行比较。表面裂缝分析表明了良好的基质/纤维联盟。 MMCS-ing是一种经济上可行的方法,与其他金属基质复合物(MMC)制造方法具有显着的优势。

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