Modelling tensile strength of friction stir welded aluminium alloy 1100 using fuzzy logic

R. Vignesh, R. Padmanaban
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引用次数: 9

Abstract

Friction stir welding (FSW) is a promising technique in which joints with high strength and minimal defects can be realized by adopting optimum process parameters. The prominent parameters are tool rotation speed, welding speed, shoulder diameter and pin diameter of the tool. In this study Mamdani fuzzy system was used to generate the model for predicting and exploring the influence of FSW process parameters on tensile strength of AA1100 joints. The FSW trials are conducted at various levels of process parameters according to central composite design. The study proved that the process parameters had significant effect on the tensile strength of friction stir welded joints. Crest parabolic variation trend was observed in tensile strength of the joints, with respect to the interaction effects of TRS, WS and SD. Increase in pin diameter had positive effect in increasing the tensile strength of the joints, for any change in TRS, WS and SD. Maximum tensile strength of 72.4 MPa was obtained at tool rotation speed of 1050 rpm, welding speed of 60 mm/min, shoulder diameter of 18 mm and pin diameter of 6 mm. The methodology given in this paper delivers a useful tool to assess the tensile strength of friction stir welded AA1100.
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用模糊逻辑对1100铝合金搅拌摩擦焊接抗拉强度进行建模
搅拌摩擦焊是一种极具发展前景的焊接技术,采用最优的工艺参数可以实现高强度和最小缺陷的连接。突出的参数是刀具转速、焊接速度、刀具肩直径和销直径。本研究采用Mamdani模糊系统建立模型,用于预测和探讨搅拌摩擦焊工艺参数对AA1100接头抗拉强度的影响。根据中心组合设计,在不同工艺参数下进行了FSW试验。研究表明,工艺参数对搅拌摩擦焊接接头的抗拉强度有显著影响。在TRS、WS和SD的交互作用下,接头的抗拉强度呈波峰抛物线变化趋势。无论TRS、WS和SD的变化如何,增加销径对提高接头的抗拉强度都有积极的作用。当刀具转速为1050 rpm,焊接速度为60 mm/min,焊肩直径为18 mm,焊针直径为6 mm时,抗拉强度最大为72.4 MPa。本文给出的方法为评估AA1100搅拌摩擦焊的抗拉强度提供了一种有用的工具。
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