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MICROSTRUCTURE AND MECHANICAL BEHAVIOUR OF Al-Si-Mg ALLOYS REINFORCED WITH Ti-Al INTERMETALLICS

机译:用Ti-Al金属间金属化合物加固的Al-Si-Mg合金的微观结构和力学行为

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MMCs of aluminium alloy matrix reinforced with Ti-Al intermetallics were prepared in the laboratory by following a powder metallurgy route and hot extrusion or forging were used as consolidation processes. Different studies were carried out in the composites developed. In order to evaluate possible reaction products and intherphases between the matrix and reinforcement, isothermal heat treatments regarding time were carried out at a fixed temperature of 530°C and at different times of 1, 6, 12 and 24 hours. In this study, optical and scanning electron microscopy with X-ray microanalysis, were used to determine the growth of the reaction layer. The influence of production process was also estimated. Ultimate strength and strain to failure were studied. There were performed tests at room temperature of the material in different precipitation state and at high temperature of the material in extrusion state. The type of damage was analysed by scanning electron microscopy. Ultimate strength trends to grow with reinforcement addition in both T1 and T6 conditions for low temperature. Strain to failure remains the lowest on T6 State. The reinforcement addition affect decrease for high temperature testing and matrix influence was demonstrated. Tribologycal properties were analysed in conditions of dry friction and lubrication. It was studied the evolution of the coefficient of friction in front of the speed of sliding, applied pressure, regime of lubrication and content of reinforcement in the composites. The matrix has shown a great plasticity whereas the reinforcement has a hardening effect also showing a certain plasticization.
机译:在粉末冶金途径之后,在实验室中制备用Ti-Al金属间质加强铝合金基质的MMC,并使用热挤出或锻造作为合并过程。在开发的复合材料中进行了不同的研究。为了评估基质和增强之间可能的反应产物和钟声,关于时间的等温热处理在530℃的固定温度和1,6,12和24小时的不同时间进行。在该研究中,使用具有X射线微基分析的光学和扫描电子显微镜,用于确定反应层的生长。还估计了生产过程的影响。研究了最终的力量和伤害。在挤出状态下在不同沉淀状态和高温下的材料的室温下进行测试。通过扫描电子显微镜分析损坏的类型。终极强度趋势与T1和T6条件的增强加入,低温。失效的应变仍然是T6状态最低。对高温测试的增强加法影响降低,并证明了基质影响。在干摩擦和润滑条件下分析了杂乳性质。研究了在复合材料中的滑动,施加的压力,润滑的速度和加固含量的速度前面的摩擦系数的演变。该基质已经示出了具有良好的可塑性,而增强件也具有硬化效果,也显示出一定的增塑。

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