首页> 外文期刊>Arabian Journal for Science and Engineering >Effect of First and Second Passes on Microstructure and Wear Properties of Titanium Dioxide-Reinforced Aluminum Surface Composite via Friction Stir Processing
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Effect of First and Second Passes on Microstructure and Wear Properties of Titanium Dioxide-Reinforced Aluminum Surface Composite via Friction Stir Processing

机译:第一和第二通过摩擦搅拌加工对二氧化钛增强铝表面复合材料微观结构和磨损性能的影响

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摘要

The dispersion of particles in polymer, ceramic and metal matrix composites via conventional routes was very difficult, due to agglomeration/clustering of particles, poor compatibility of properties of particle and matrix. So, an attempt has been made to uniformly disperse the titanium dioxide particles on the surface of aluminum matrix via two-pass friction stir processing. The effect of passes on particle distribution, microstructure, microhardness and wear properties was systematically investigated. Microstructural studies revealed a fine equiaxed grain structure in the stir zone due to the dynamic recrystallization. The first-pass surface composite sample results in agglomeration of particles toward the advancing side due to insufficient materials flow and strain. The second pass was carried out by changing advancing and retreating side of composite plate processed by the first pass. The results showed that marginal change in grain size was observed with homogeneous microstructure when compared to first-pass surface composite. Microhardness was carried out across the cross sections of the surface composites to obtain hardness profile. The tribological performance was assessed using a pin-on-disk tribometer. The result reveals that surface composites processed by the second pass show better hardness and wear resistance when compared to as-received aluminum. The wear mechanism shows a transition from adhesive wear in surface composites to the combination of abrasive and delamination wear in as-received aluminum.
机译:由于颗粒的聚集/聚类,颗粒的聚集,颗粒和基质性质的相容性差,颗粒在聚合物中,陶瓷和金属基质复合材料的分散非常困难。因此,已经尝试通过双通摩擦搅拌加工均匀地将二氧化钛颗粒均匀地分散在铝基质表面上。通过对颗粒分布,微观结构,显微硬度和磨损性能进行通过的效果。微观结构研究由于动态再结晶,搅拌区中的精细等型晶粒结构。由于材料流动和菌株不足,第一通道表面复合样品导致颗粒朝向前进侧的聚集。通过改变第一次通过处理的复合板的前进和退回侧进行第二次通过。结果表明,与第一通道表面复合材料相比,用均匀的微观结构观察到晶粒尺寸的边缘变化。微硬度在表面复合材料的横截面上进行,以获得硬度曲线。使用磁盘摩擦计评估摩擦学性能。结果表明,与接收的铝相比,第二通道处理的表面复合材料显示出更好的硬度和耐磨性。磨损机构显示了从表面复合材料中的粘合剂磨损的过渡到接收铝中的磨料和分层磨损的组合。

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