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首页> 外文期刊>International journal of surface engineering and interdisciplinary materials science >Experimental Investigations on Wear Behavior of AA20204-Flyash- Nanostructured Redmud Hybrid Composites Synthesized by Stircasting
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Experimental Investigations on Wear Behavior of AA20204-Flyash- Nanostructured Redmud Hybrid Composites Synthesized by Stircasting

机译:抗烧架合成的AA20204 - 粉煤灰粉型红霉混合复合材料磨损行为的实验研究

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摘要

Red mud emerges as the major waste material during the production of alumina from bauxite and its potential as a filler material in metal matrices has not yet been reported. In view of this, an attempt is made to explore the possibility of making a class of wear resistant metal matrix hybrid composites with nano-structured red mud and micro sized fly ash particles as reinforcement. The micro-sized red mud particles have been modified to nano-structured red mud using high energy ball milling and after 30 hours of milling, the size was reduced from 100 microns to 30 nm. Composites were fabricated by stir casting and experiments were conducted under laboratory condition to assess the wear characteristics of AA2024- 15 wt% fly ash (micro-sized) and varying fractions (2 wt%, 4 wt% and 6 wt%) red mud (nano-structured) hybrid composites under different working conditions in pure sliding mode on a pin-on-disc machine. Tests were conducted with sliding speeds of 200 rpm, 400 rpm and 600 rpm at loads of 10N, 20N and 30N. The increased frictional thrust at higher load results in increased de-bonding and caused easy removal of material and hence the wear rate is increased with increase in normal load. The wear resistance of the composite is increased with increase in red mud fraction. This is due to the increase in surface energy and inter-atomic bonding with increase in nano-structured red mud fraction. The addition of redmud particles to the matrix phase causes dispersion strengthening and hence the strength as well. Wear resistance is increased with increase in redmud fraction.
机译:红泥作为主要废料在铝土矿生产过程中,尚未报告金属基质中的填料材料的主要废料。鉴于此,尝试探讨制备一类耐磨金属基质混合复合材料,以纳米结构的红色泥浆和微型粉煤灰颗粒作为加固。使用高能球铣削和30小时铣削后,将微尺寸的红色泥浆颗粒改性为纳米结构的红色泥浆,尺寸从100微米降至30nm。通过搅拌铸造制造复合材料,在实验室条件下进行实验,以评估AA2024-15wt%飞灰(微尺寸)和不同级分的磨损特性(2wt%,4wt%和6wt%)红泥(纳米结构)混合复合材料在磁盘机上的纯滑动模式下的不同工作条件下。在10N,20n和30n的载荷下,以200rpm,400 rpm和600 rpm的滑动速度进行测试。较高负载下的摩擦推力的增加导致脱粘增加并易于除去材料,因此随着正常载荷的增加,磨损率增加。随着红泥级分的增加,复合材料的耐磨性增加。这是由于表面能和随着纳米结构红色泥浆级分的增加而增加。向基质相加入Redmud颗粒导致分散强化并因此也是强度。随着Redmud级分的增加,耐磨性增加。

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