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Multiple characterisation modelling of friction stir welding using a genetic multi-objective data-driven fuzzy modelling approach

机译:基于遗传多目标数据驱动模糊建模方法的搅拌摩擦焊多特征建模

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Friction Stir Welding (FSW) is a relatively new solid-state joining technique, which is versatile, environment friendly, and energy and time efficient. For a comprehensive understanding of the effects of process conditions, such as tool rotation speed and traverse speed, on characterisations of welded materials, it is essential to establish prediction models for different aspects of the materials' behaviours. Because of the high complexity of the FSW process, it is often difficult to derive accurate and yet transparent enough mathematical models. In such a situation, a systematic data-driven fuzzy modelling approach is developed and implemented in this paper to model FSW behaviour relating to AA5083 aluminium alloy, consisting of microstructural features, mechanical properties, as well as overall weld quality. This methodology allows constructing transparent fuzzy models considering both accuracy and interpretability attributes of fuzzy systems. The elicited models proved to be accurate, interpretable and robust and can be further applied to facilitate the optimal design of process parameters, with the aim of finding the optimal combinations of process parameters to achieve desired welding properties.
机译:搅拌摩擦焊(FSW)是一种相对较新的固态连接技术,它具有通用性,环境友好性以及能源和时间效率。为了全面了解工艺条件(例如工具旋转速度和移动速度)对焊接材料特性的影响,建立针对材料行为不同方面的预测模型至关重要。由于FSW过程的高度复杂性,通常很难得出准确而又足够透明的数学模型。在这种情况下,本文开发并实施了一种系统的数据驱动的模糊建模方法,以模拟与AA5083铝合金相关的FSW行为,该行为包括微观结构特征,机械性能以及整体焊接质量。这种方法允许构建同时考虑模糊系统的准确性和可解释性属性的透明模糊模型。所证明的模型被证明是准确的,可解释的和鲁棒的,并且可以被进一步应用以促进过程参数的最佳设计,目的是找到过程参数的最佳组合以实现期望的焊接性能。

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