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Characterization of B4C-composite-reinforced aluminum alloy composites

机译:B4C复合增强铝合金复合材料的表征

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Dry sliding wear tests conducted on Pin-on-disk wear test machine. The rotational speed of disc is ranging from (400-600rpm) and under loads ranging from (30-70 N) the contact time between the disc and pin is constant for each pin specimen of composites is 15 minute. In all manufacturing industries the uses of composite materials has been increasing globally, In the present study, an aluminum 5083 alloy is used as the matrix and 5% of weight percentage of Boron Carbide (B_4C) as the reinforcing material. The composite is produced using stir casting technique. This is cost effective method. The aluminum 5083 matrix can be strengthened by reinforcing with hard ceramic particles like silicon carbide and boron carbide. In this experiment, aluminum 5083 alloy is selected as one of main material for making parts of the ship it has good mechanical properties, good corrosion resistance and it is can welded very easily and does have good strength. The samples are tested for hardness and tensile strength. The mechanical properties like Hardness can be increased by reinforcing aluminum 5083alloy 5% boron carbide (B_4C) particles and tensile strength. Finally the Scanning Electron Microscope (SEM) analysis and EDS is done, which helps to study topography of composites and it produces images of a sample by scanning it with a focused beam of electrons and the presence of composition found in the matrix.
机译:在磁盘上磨损试验机上进行干燥滑动磨损试验。盘的转速范围为(400-600rpm),并且在(30-70 n)范围内的负载范围(30-70 n)圆盘和销之间的接触时间对于复合材料的每个销样本为15分钟。在所有制造业的所有制造业中,复合材料的用途在全球范围内增加,在本研究中,铝5083合金用作碳化硼(B_4C)作为增强材料的基质和5%的重量百分比。复合材料采用搅拌铸造技术生产。这是具有成本效益的方法。通过用碳化硅和碳化硼等硬陶瓷颗粒加强铝5083基质可以加强。在该实验中,铝5083合金被选为制造船舶部分的主要材料之一,它具有良好的机械性能,良好的耐腐蚀性,并且它可以非常容易地焊接并且具有良好的强度。测试样品的硬度和拉伸强度。通过加强铝5083聚合金5%碳化硼(B_4C)颗粒和拉伸强度,可以增加类似硬度的机械性能。最后,完成扫描电子显微镜(SEM)分析和EDS,有助于研究复合材料的形貌,并且通过用聚焦的电子束扫描样品和在基质中存在的组合物产生样品的图像。

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