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Heat Generation Performance of a Homemade Friction Stir Welding Tool

机译:自制摩擦搅拌焊接工具的发热性能

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Friction Stir Welding (FSW) is getting its popularity because it is considered as an environmentally friendly manufacturing. Homemade FSW tool to be attached to a conventional milling machine was designed and fabricated. Experimental investigation of FSW process of the Aluminum alloy work piece to observe its heat generation was performed. Since heat generation is the main objective in a FSW process, the importance of identification of heat generation performance in a welded specimen is paramount. Heat generation of a welded specimen during FSW was measured using infra red thermal camera. The limitation of the measurement is it only captured the heat generation at surrounding area and surface of the welded specimen. Therefore, the heat generation inside contact area could not be identified. To overcome this problem, a finite-element model of the FSW process was developed. A model consists of a solid model of half the welded specimen since the symmetrical behavior of the geometry and boundary condition was assumed. Heat transfer analysis of a solid body model of a work piece was computed. It was observed that FSW parameters which involved dominantly in the heat generation were spindle speed, feeding rate and normal force. The heat generation model of FSW process was validated with the one from the experimental investigation. Good agreement between the numerical and the experimental investigation result has been made.
机译:摩擦搅拌焊接(FSW)得到其普及,因为它被认为是环保的制造。设计和制造要附接到传统铣床的自制FSW工具。铝合金工件换铝合金工件的实验研究进行了观察其发热。由于发热是FSW工艺的主要目的,因此焊接标本中的发热性能识别的重要性是至关重要的。使用红外线热相机测量FSW期间焊接样品的发热。测量的限制是它仅捕获焊接样品的周围区域和表面的发热。因此,无法识别接触区域内的发热。为了克服这个问题,开发了FSW过程的有限元模型。模型由一个固体模型组成的一半焊接样品,因为假设几何和边界条件的对称行为。计算了工件的固体模型的传热分析。观察到,涉及在发热中涉及的FSW参数是主轴速度,进料速率和正常力。从实验研究中验证了FSW工艺的发热模型。在数值和实验调查结果之间进行了良好的一致性。

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