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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Fabrication of WS_2 Dispersed Al-Based Hybrid Composites Processed by Powder Metallurgy: Effect of Compaction Pressure and Sintering Temperature
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Fabrication of WS_2 Dispersed Al-Based Hybrid Composites Processed by Powder Metallurgy: Effect of Compaction Pressure and Sintering Temperature

机译:用粉末冶金处理的WS_2分散的基于Al基混合复合材料的制备:压力和烧结温度的影响

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摘要

In recent years, aluminium-based hybrid composites acquire vast potential in the hot reciprocating parts such as piston, connecting rod for petrol and diesel engines in automobiles due to its suitable mechanical and physical properties. On the other hand, these composites limit its application due to the inferior tribological properties. Aluminium-based ceramic composites with improved lubrication behavior enhance their application in various sectors. In the present study, an attempt has been given to fabricate Al-Al2O3-WS(2)hybrid composites using the powder metallurgy method by optimizing the processing conditions. The samples were fabricated with varying the compaction pressure (380 MPa, 450 MPa, 500 MPa, 560 MPa, and 620 MPa) and sintering temperature (400 degrees C, 500 degrees C, and 600 degrees C). The densities and porosity of the samples were measured by both theoretical and experimental methods. X-ray diffraction and scanning electron microscopy were used to study the structural and morphological changes and hardness of the samples was measured using Vicker's microhardness tester. From the above investigations, it was found that with a compaction pressure of 560 MPa and a sintering temperature of 600 degrees C, the as-fabricated Al-Al2O3-WS(2)hybrid composite shows better properties as compared to unreinforced aluminium alloy. This study will provide a guideline to select the processing conditions for the fabrication of hybrid composites using a powder metallurgy process.
机译:近年来,由于其合适的机械和物理性质,铝基混合复合材料在诸如活塞,汽油和柴油发动机的汽油,连杆和柴油发动机等热往复零件中获得了巨大潜力。另一方面,这些复合材料由于摩擦学特性而限制了其应用。具有改进的润滑行为的铝基陶瓷复合材料增强了它们在各个部门的应用。在本研究中,通过优化加工条件,已经通过优化粉末冶金方法制备Al-Al 2 O 3-WS(2)杂化复合材料。用改变压实压力(380MPa,450MPa,500MPa,560MPa和620MPa)和烧结温度(400℃,500℃和600℃),制备样品。通过理论和实验方法测量样品的密度和孔隙率。 X射线衍射和扫描电子显微镜用于研究使用Vicker的微硬度测试仪测量样品的结构和形态变化和硬度。从上述研究中,发现,与不合因的铝合金相比,用压实压力和600℃的烧结温度为600mPa,杂交复合材料表现出更好的性能。该研究将提供一种指南,以选择使用粉末冶金过程制备混合化合物的加工条件。

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