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Experimental Investigation on Mechanical and Turning Behavior of Al 7075/x wt. TiB2-1 Gr In Situ Hybrid Composite

机译:Al 7075 / x%WT的机械转向行为的实验研究。 TIB2-1%GR原位混合复合材料

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摘要

The present research work involves the study of AA 7075-TiB2-Gr in situ composite through stir casting route. This in situ method involves formation of reinforcements within the matrix by the chemical reaction of two or more compounds which also produces some changes in the matrix material within the vicinity. Titanium Diboride (TiB2) and graphite were the reinforcement in a matrix of AA 7075 alloy. The composite was prepared with the formation of the reinforcement inside the molten matrix by adding salts of Potassium Tetrafluoroborate (KBF4) and Potassium Hexafluorotitanate (K2TiF6). The samples were taken under casted condition and the properties of the composite were tested by conducting characterization using X-ray diffraction (XRD), hardness test, flexural strength by using three-point bend test, scanning electron microscope (SEM), optical microstructure, grain size analysis, and surface roughness. It was found that good/excellent mechanical properties were obtained in AA 7075-TiB2-Gr reinforced in situ hybrid composite compared to alloy due to particulate strengthening of ceramic particles of TiB2 in the matrix. Further, Al 7075-3% TiB2-1% Gr hybrid in situ composite exhibited improved machinability over the alloy and composites due to self-lubricating property given by the Gr particles in the materials.
机译:目前的研究工作涉及通过搅拌铸造途径研究AA 7075-TIB2-GR。这种原位方法涉及通过两种或更多种化合物的化学反应形成基质内的增强物,这也产生了附近的基质材料的一些变化。二硼化钛(TIB2)和石墨是AA 7075合金基质中的增强。通过加入四氟硼酸钾(KBF4)和六氟钛酸钾(K2TIF6)的盐,在熔融基质内部形成复合材料。通过使用X射线衍射(XRD),硬度试验,弯曲强度,使用三点弯曲试验,扫描电子显微镜(SEM),光学微观结构,光学微观结构,通过使用X射线衍射(XRD),硬度试验,弯曲强度进行表征来进行样品。晶粒尺寸分析,表面粗糙度。结果发现,由于在基质中的陶瓷颗粒的陶​​瓷颗粒的颗粒强化,在原位杂交复合材料中获得了良好/优异的机械性能。此外,Al 7075-3%Tib2-1%GR杂交地原位复合材料由于材料中的GR颗粒在材料中给出的自润滑性而在合金和复合材料上表现出改善的可加工性。

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