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首页> 外文期刊>Journal of Materials Science >Processing and microstructural characterization of functionally gradient Al A359/SiCp composite
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Processing and microstructural characterization of functionally gradient Al A359/SiCp composite

机译:功能梯度Al A359 / SiCp复合材料的加工与微观结构表征

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摘要

A centrifugal casting method is presented in this paper for processing Al/SiCp Functionally Gradient Material (FGM), along with the corresponding microstructural characterization. Results are presented and discussed on SiC particles distribution, particles-solidification front interactions, matrix micro-structure, and porosity distribution in the castings as a function of the centrifugal forces applied. Three different casting rotational speeds (700, 1000 and 1300 rpm) were utilized while keeping all other casting conditions constant. For the highest speed applied, a variation of graded composition in the range of 20 to 44 vol% of SiC was obtained. Moreover, such progressive concentration of particles was observed to be very homogeneous due to engulfment of particles (promoted by the high relative velocity between the solidification front and particles) and also as a consequence of elevated cooling rates developed in this case. Additional results showed that the matrix micro-structure is modified according to the SiC reinforcement content and cooling rates, which both depend on the centrifugal forces applied. (C) 2002 Kluwer Academic Publishers. [References: 21]
机译:本文介绍了一种离心铸造方法,用于加工Al / SiCp功能梯度材料(FGM),以及相应的显微组织表征。给出并讨论了有关SiC颗粒分布,颗粒-凝固前沿相互作用,基体微观结构和铸件中孔隙率分布(取决于所施加的离心力)的结果。在保持所有其他铸造条件不变的同时,采用了三种不同的铸造转速(700、1000和1300 rpm)。对于所施加的最高速度,获得的梯度成分在SiC的20%至44%(体积)范围内变化。此外,由于颗粒的吞入(由凝固前沿和颗粒之间的高相对速度促进),并且由于在这种情况下提高了冷却速度,因此观察到这种颗粒的渐进浓度非常均匀。附加结果表明,基体的微观结构根据SiC的含量和冷却速率而改变,这两者都取决于所施加的离心力。 (C)2002 Kluwer学术出版社。 [参考:21]

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