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首页> 外文期刊>Journal of The institution of engineers (India), Series C >Tensile Strength and Hardness Correlations with Microscopy in Friction welded Aluminium to Copper
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Tensile Strength and Hardness Correlations with Microscopy in Friction welded Aluminium to Copper

机译:摩擦焊接铝与铜的显微拉伸强度和硬度相关性

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摘要

Aluminium and copper are good conductors of heat and electricity, copper being the better conductor, is a costly metal indeed. On the other hand, aluminium is cheap, easily available and also has a lower density than copper. Hence, worldwide efforts are being made to partially replace copper wire. Solid state welding should be used to join aluminium to copper. This is because the use of fusion welding results in brittle phases formed in the weld interface. One of the solid state welding techniques used for joining aluminium to copper is friction welding. In this paper, an attempt has been made to join aluminium to copper by friction welding by varying the friction welding parameters, namely friction pressure, upset pressure, burn-off length and speed of rotation of the workpiece. Nine different friction welding parameter combinations were used during welding in accordance with ASTM standards and results have been reported. Tensile strength and hardness tests were carried out for each parameter combination. Optimum friction welding parameter combination was identified with respect to tensile strength. Scanning Electron Microscopy and Electron dispersive spectro-analysis were obtained to identify modes of fracture and presence of intermetallic phases for each friction welding combination with the aim to narrow down friction welding parameters that give good properties on the whole.
机译:铝和铜是热和电的良导体,铜是更好的导体,确实是一种昂贵的金属。另一方面,铝是便宜的,容易获得的,并且还具有比铜低的密度。因此,正在全球范围内努力部分替代铜线。应该使用固态焊接将铝和铜连接起来。这是因为使用熔融焊接导致在焊接界面中形成脆性相。用于将铝连接到铜的固态焊接技术之一是摩擦焊接。在本文中,已经尝试通过改变摩擦焊接参数,即摩擦压力,翻转压力,燃尽长度和工件的旋转速度,通过摩擦焊接将铝与铜结合。根据ASTM标准,在焊接过程中使用了9种不同的摩擦焊接参数组合,并已报告了结果。对每种参数组合进行拉伸强度和硬度测试。确定了关于拉伸强度的最佳摩擦焊接参数组合。获得了扫描电子显微镜和电子弥散光谱分析,以识别每种摩擦焊接组合的断裂模式和金属间相的存在,目的是缩小总体上具有良好性能的摩擦焊接参数。

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