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Mechanical properties enhancement and microstrueture study of Al-Si-TiB2 in situ composites

机译:Al-Si-TIB2原位复合材料的机械性能增强与微足研究

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Al—Si alloy-based composite is one of the most promising MMC materials owing to its outstanding mechanical properties, wear and corrosion resistance, low cost and ability to be synthesized via conventional casting routes. Challenges in achieving clean interface between reinforced particles and matrix alloy have been overcome by means of in-situ techniques of fabrication. Present investigation is concerned with synthesizing Al-Si-TiB2 in-situ composites through stir casting route using K2TiF6 and KBF4 halide salts for exothermic salt metal reaction. X-Ray diffraction analysis revealed the existence of TiB2 in the prepared samples. Effect of TiB2in-situ particles in me Al-Si base alloy has been investigated from the results obtained from optical microscopy as well as SEM study and wear analysis with a pin on disc wear testing apparatus. Improved hardness and wear properties were observed with addition of TiB2.
机译:基于Al-Si合金的复合材料是由于其出色的机械性能,磨损和耐腐蚀性,低成本以及通过传统铸造途径合成的能力最有前景的MMC材料之一。通过原位的制造技术克服了在增强粒子和基质合金之间实现干净界面的挑战。本研究涉及通过使用K2TIF6和KBF4卤化物盐来合成Al-Si-Tib2原位复合材料,用于放热盐金属反应。 X射线衍射分析显示在制备的样品中存在TIB2。从光学显微镜获得的结果中研究了TIB2IN-原位颗粒在ME中的影响,以及圆盘磨损试验装置上的销钉SEM研究和磨损分析。通过添加TIB2,观察到改善的硬度和磨损性能。

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