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DEVELOPMENT OF Al-Si-Mg ALLOYS REINFORCED WITH DIBORIDE PARTICLES

机译:用二硼粒子加固的Al-Si-Mg合金的研制

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A series of aluminium composites, with varying volume fractions of diboride particles, were made by mixing various proportions of aluminium alloy and titanium diboride (TiB2) powders followed by hot extrusion. Different studies were carried out in the composites developed in order to obtain their general properties. It was evaluated the possible reaction between the matrix and reinforcement, by performing heat treatments regarding temperature at a fixed time of 1 hour and at different temperatures of 350, 400, 450 and 500°C. In this study, optical and scanning electron microscopy with X-ray microanalysis, were used to determine the growth of the reaction layer. Mechanical properties as ultimate strength and strain to failure were studied. The tests were performed at room temperature and at high temperature in the material in state T1 and T6. The type of damage was analysed by scanning electron microscopy. Tribologycal properties were analysed in conditions of dry friction as well as lubrication with standard lubricant in automotive industry of the type SAE 250. 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 contribution also describes results from corrosion tests on aluminium composites with different percentages of reinforcement. Specimens were examined after exposure to the corrosive solution employing scanning electron microscopy and the type and amount of corrosion was observed.
机译:通过混合各种铝合金和二硼化钛(TIB2)粉末,然后热挤出,通过混合各种铝合金和二硼化物(TIB2)粉末来制备一系列具有不同体积的二硼化物颗粒的铝复合材料。在开发的复合材料中进行了不同的研究,以获得其通用性质。通过在350,400,450和500℃的不同温度下进行关于温度的温度的温度,通过在350,400,450和500℃的不同温度下进行关于温度的热处理来评估基质和增强之间的可能反应。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。研究了机械性能作为最终的强度和失效的应变。测试在室温和高温下在材料T1和T6中的高温下进行。通过扫描电子显微镜分析损坏的类型。在SAE 250的汽车工业中,在干摩擦条件下分析了杂散的条件以及用标准润滑剂的润滑,研究了摩擦速度的摩擦系数的演变,施用压力,润滑的制度和复合材料中加固含量。贡献还描述了铝复合材料上具有不同百分比加固百分比的腐蚀试验的结果。在接触采用扫描电子显微镜的腐蚀性溶液暴露后检查样本,观察到腐蚀的类型和量。

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