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Rapid preparation of B4Cp/Al composites with homogeneous interface via ultrasound assisted casting method

机译:通过超声辅助铸造方法快速制备B4CP / Al复合材料,通过超声辅助铸造方法

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Ultrasound assisted casting method was applied in the rapid preparation of B4Cp/Al composites with the aim of obtaining homogeneous microstructure and improving mechanical properties with higher stability of composites. The process involved that the mixed B4C and K2TiF6 were added into molten Al at 800 degrees C, and then high-intensity ultrasound was introduced into the melt through an ultrasonic probe for 5 min. Experimental results showed that besides uniform distribution of B4C particles, a more homogeneous and continuous TiB2 layer could be formed on B4C particle surface due to the effects of ultrasound, which was beneficial for improving the dispersity and hindering the decomposition of B4C particle in the Al melt. Since the undercooling of melt and enhancement of diffusion of solutes could be induced by ultrasound, the nucleation and growth of TiB2 phase were effectively promoted, leading to the rapid formation of homogeneous TiB2 layer. Compared with the sample treated without ultrasound, the strength, ductility and performance stability of ultrasonically treated sample were improved significantly. (C) 2020 Elsevier B.V. All rights reserved.
机译:采用超声辅助铸造法快速制备B4Cp/Al复合材料,旨在获得均匀的微观结构,提高复合材料的力学性能和更高的稳定性。该工艺将混合的B4C和K2TiF6在800℃下加入熔融铝中,然后通过超声波探头将高强度超声波引入熔体中5分钟。实验结果表明,除了B4C颗粒的均匀分布外,由于超声波的作用,B4C颗粒表面还可以形成更均匀、更连续的TiB2层,这有利于提高B4C颗粒在铝熔体中的分散性,阻止其分解。由于超声波可以诱导熔体过冷和溶质扩散增强,有效地促进了TiB2相的形核和生长,从而快速形成均匀的TiB2层。与未经超声处理的试样相比,经超声处理的试样的强度、塑性和性能稳定性显著提高。(C) 2020爱思唯尔B.V.版权所有。

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