高频感应焊接的机理研究十分复杂,影响到焊接钢管高频加热温度分布的工艺参数众多,且影响程度和影响规律不尽相同。本文在建立的高频焊管主要电磁工艺参数和目标函数的映射模型基础上,利用改进的非支配排序遗传算法对直缝焊管高频感应...高频感应焊接的机理研究十分复杂,影响到焊接钢管高频加热温度分布的工艺参数众多,且影响程度和影响规律不尽相同。本文在建立的高频焊管主要电磁工艺参数和目标函数的映射模型基础上,利用改进的非支配排序遗传算法对直缝焊管高频感应焊接参数进行优化。对优化得到的Pareto最优解集进行综合分析,最终确定了该工况下当开口角为6°、电流频率为218.39 k Hz、线圈到V点距离为255 mm时,所对应的优化目标值均较小,其所对应焊缝的焊接质量较好。本文的研究为进一步提高高频焊管的焊接质量提供了理论依据。展开更多
An experimental and numerical study on the temperature field induced in the ultra-high frequency induction heating is carried out.With an aim of predicting the thermal history of the workpiece,the influence factors of...An experimental and numerical study on the temperature field induced in the ultra-high frequency induction heating is carried out.With an aim of predicting the thermal history of the workpiece,the influence factors of temperature field,such as the induction frequency,the dimension of coil and the gap between coil and workpiece,are investigated considering temperature-dependent material properties by using FLUX 2Dsoftware.The temperature field characteristic in ultra-high induction heating is obtained and discussed.The numerical values are compared with the experimental results.A good agreement between them is observed with 7.9% errors.展开更多
文摘高频感应焊接的机理研究十分复杂,影响到焊接钢管高频加热温度分布的工艺参数众多,且影响程度和影响规律不尽相同。本文在建立的高频焊管主要电磁工艺参数和目标函数的映射模型基础上,利用改进的非支配排序遗传算法对直缝焊管高频感应焊接参数进行优化。对优化得到的Pareto最优解集进行综合分析,最终确定了该工况下当开口角为6°、电流频率为218.39 k Hz、线圈到V点距离为255 mm时,所对应的优化目标值均较小,其所对应焊缝的焊接质量较好。本文的研究为进一步提高高频焊管的焊接质量提供了理论依据。
基金Supported by the National Science and Technology Major Project of China(2012ZX04003081)
文摘An experimental and numerical study on the temperature field induced in the ultra-high frequency induction heating is carried out.With an aim of predicting the thermal history of the workpiece,the influence factors of temperature field,such as the induction frequency,the dimension of coil and the gap between coil and workpiece,are investigated considering temperature-dependent material properties by using FLUX 2Dsoftware.The temperature field characteristic in ultra-high induction heating is obtained and discussed.The numerical values are compared with the experimental results.A good agreement between them is observed with 7.9% errors.