首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Copper Coating and Reinforcement Orientation on Mechanical Properties of LM6 Aluminium Alloy Composites Reinforced with Steel Mesh by Squeeze Casting
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Effect of Copper Coating and Reinforcement Orientation on Mechanical Properties of LM6 Aluminium Alloy Composites Reinforced with Steel Mesh by Squeeze Casting

机译:挤压铸造钢网加强LM6铝合金复合材料力学性能对LM6铝合金复合材料力学性能的影响

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摘要

Uncoated and copper coated steel wire mesh reinforcing LM6 aluminium alloy composites have been produced using squeeze casting process by varying reinforcement orientation viz., 0A degrees, 45A degrees and 90A degrees respectively. Microstructure of the castings has been examined and mechanical properties such as hardness, tensile strength and ductility have been investigated. Fracture surface of tensile specimens has been analysed using field emission scanning electron microscope. Microstructure of samples reveals that copper coating on steel wires improves the interface bonding between matrix and reinforcement. Average hardness values of 259 and 90 Hv have been observed in steel wire and matrix respectively. Tensile strength of composites increases with increasing angle of reinforcement orientation from 0A degrees to 90A degrees. Tensile strength increases up to 11% by reinforcing copper coated steel wire mesh at 90A degrees orientation as compared to LM6 aluminium alloy. Fracture surface of composites shows pullout of steel wires in uncoated steel wire mesh composites and broken wires in copper coated steel wire mesh composites respectively. Dimples have been observed on the fracture surface of LM6 aluminium alloy. In general, copper coated steel wire mesh composites offer better hardness and tensile strength compared to uncoated steel wire mesh composites and LM6 aluminium alloy. This may be attributed to the copper coating on steel wires which results better interface bonding between matrix and reinforcement.
机译:通过不同的加强浇铸过程,分别使用挤压铸造工艺生产未涂覆的和铜涂层钢丝网增强LM6铝合金复合材料。,0A度,45A度和90A度。已经研究了铸件的微观结构,并研究了硬度,拉伸强度和延展性的机械性能。使用现场发射扫描电子显微镜分析了拉伸试样的断裂表面。样品的微观结构显示钢丝上的铜涂层改善了基质和加强之间的界面粘合。在钢丝和基质中观察到平均硬度值259和90HV。复合材料的拉伸强度随着从0A度至90A度的增强方向的增加而增加。与LM6铝合金相比,通过以90A度取向加强铜涂覆的钢丝网增加,拉伸强度增加至11%。复合材料的断裂表面显示出在未涂覆的钢丝网复合材料中的钢丝拉出,分别在铜涂层钢丝网复合材料中断开。已经在LM6铝合金的断裂表面上观察到凹坑。通常,与未涂覆的钢丝网复合材料和LM6铝合金相比,铜涂层钢丝网复合材料提供更好的硬度和抗拉强度。这可能归因于钢丝上的铜涂层,其导致基质和加强件之间的更好的界面粘合。

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