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The Effect of Rolling Temperature on the Microstructure and Mechanical Properties of 5 vol.% (TiBw + TiCp)/Ti Composites

机译:轧制温度对5体积%(TIBW + TICP)/ TI复合材料的微观结构和机械性能的影响

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摘要

In this study, as-cast 5 vol.% (TiBw + TiCp)/Ti composites underwent multi-step rolling at different phase regions to explore the effect of rolling temperature on the microstructure and mechanical properties of the composite sheets. The matrix microstructures of the composites rolled at 1293 K and 1383 K are, respectively, equiaxed and lamellar microstructures, which are significantly refined compared to that of the as-cast condition. After rolling, the uniformity is improved while the aspect ratio of the reinforcements becomes reduced. Based on the interaction between the matrix and the reinforcements, the microstructure evolution mechanisms of the composites rolled in the (alpha + beta) and beta phase regions are clarified. Compared to the as-cast composite, the tensile strength and elongation of the as-rolled composites are markedly improved, both at room and elevated temperatures. The strengthening mechanisms of the as-rolled composites are mainly due to the matrix microstructure refinement and the load-sharing effect of uniformly distributed reinforcements.
机译:在本研究中,AS-Sport 5 Vol.%(Tibw + TiCP)/ Ti复合材料在不同相位区域进行多步轧制,以探讨轧制温度对复合板的微观结构和机械性能的影响。在1293k和1383k下轧制的复合材料的基质微结构分别是等轴和层状微观结构,其与铸造条件相比显着地改进。滚动后,提高均匀性,同时增强物的纵横比变化。基于基质与增强物之间的相互作用,阐明了(α+β)和β相区域中轧制的复合材料的微观结构演化机制。与铸造复合材料相比,在室内和升高的温度下显着改善了卷起复合材料的拉伸强度和伸长率。轧制复合材料的强化机构主要是由于基质微观结构改进和均匀分布增强件的载荷共用效果。

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