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Improving the joint strength of the friction stir spot welding of carbon steel and copper using the design of experiments method

机译:利用实验方法设计提高碳钢与铜摩擦搅拌点焊的结合强度。

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Purpose - The purpose of this paper is to optimize the welding parameters: rotating speed and plunging depth of carbon steel and pure copper joints using friction stir spot welding (FSSW) with the aid of the design of experiments (DOE) method. Design/methodology/approach - Carbon steel and pure copper sheets were welded using the FSSW technique with a cylindrical tool and without a probe. The welding parameters were: rotating speed: 1,120, 1,400 and 1,800 RPM and plunging depth: 0.2 and 0.4 mm. The welding process was carried out both with and without pre-heating. The welded specimens were analyzed using a shear tensile test. A microstructural investigation at the optimum conditions was carried out. The results were analyzed and optimized using the statistical software Minitab and following the DOE method. Findings - Pre-heating the sample and increasing the rotating speed and plunging depth increased the tensile shear force of the joint. The plunging depth has the biggest effect on the joint efficiency compared with the rotating speed. The optimum shear force (4,560 N) was found at 1,800 RPM, 0.4 mm plunge depth and with pre-heating. The welding parameters were modified so that the samples were welded at 1,800 RPM and at plunging depths of 0.45-1 mm in 0.05 mm steps. The optimized shear force was 5,400 N. The fractured samples exhibited two types of failure mode: interfacial and nugget pull-out Originality /value - For the first time, pure copper and carbon steel sheets were welded using FSSW and a tool without a probe with ideal joint efficiency (95 percent).
机译:目的-本文的目的是借助实验设计(DOE)方法优化摩擦参数点焊(FSSW)的碳钢和纯铜接头的旋转速度和切入深度。设计/方法/方法-使用FSSW技术,使用圆柱形工具和不带探针的碳钢和纯铜板进行焊接。焊接参数为:转速:1,120、1,400和1,800 RPM,切入深度:0.2和0.4 mm。焊接过程既可以进行预热,也可以不进行预热。使用剪切拉伸试验分析焊接的样品。在最佳条件下进行了显微组织研究。使用统计软件Minitab并遵循DOE方法对结果进行分析和优化。发现-预热样品并增加旋转速度和切入深度会增加接头的拉伸剪切力。与旋转速度相比,切入深度对接头效率影响最大。发现最佳剪切力(4,560 N)在1,800 RPM,0.4 mm切入深度和预热的情况下进行。修改了焊接参数,以使样品以1,800 RPM和0.45-1 mm的切入深度以0.05 mm的步距进行焊接。优化的剪切力为5,400N。断裂的样品表现出两种破坏模式:界面和熔核拔出原始性/值-首次使用FSSW和不带探针的工具焊接纯铜和碳钢板。理想的联合效率(95%)。

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