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Microstructure and Mechanical Properties of TiC_p/ZA-12 Composites

机译:TIC_P / ZA-12复合材料的微观结构和力学性能

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TiC_p/ZA-12 composites have been fabricated by XD~(TM) method and stirring-casting techniques. The behavior of TiC particle in the solidification interface has been studied through conventional and directional solidification techniques. The results demonstrate that under conventional solidification conditions, the particles with lower content mainly distribute in eutectic phases; while when at a larger content of TiC particles, they exist both in eutectic phases and in primary phases. Under directional solidification, due to the repulsion of primary phases of alloy on TiC particles, the particles congregate and form band structure, and extent of the congregation in band structure relates to TiC particles content. With the increasing of TiC particles content, their congregation in band structure decreases, and the band structure disappears when the content of TiC particles exceeds 6%. The tests for mechanical properties reveal that the tensile strength and yield strength increase with increasing fraction of TiC particles. When the fraction of TiC particles increase up to 10%, the tensile strength and yield strength are 390MPa and 340MPa, respectively and they increase by 11 % and 17% than that of matrix respectively.
机译:TIC_P / ZA-12复合材料已由XD〜(TM)方法和搅拌铸造技术制造。通过常规和定向凝固技术研究了凝固界面中的TIC粒子的行为。结果表明,在常规凝固条件下,含量较低的颗粒主要分布在共晶相中;当在更大的TiC颗粒的含量时,它们存在于共晶相和初级相中。在定向凝固下,由于在TIC颗粒上的合金母阶段的排斥,颗粒聚集和形成带结构,以及带状结构的聚集程度涉及TIC颗粒含量。随着TIC颗粒含量的增加,它们的带状结构的会簇降低,并且当TIC颗粒的含量超过6%时,带结构消失。机械性能的试验表明,随着TIC颗粒的增加,拉伸强度和屈服强度增加。当TIC颗粒的馏分增加至10%时,拉伸强度和屈服强度分别为390MPa和340MPa,分别比基质的增加11%和17%。

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