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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A study of the heat transfer mechanism in resistance spot welding of aluminum alloys AA5182 and AA6014
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A study of the heat transfer mechanism in resistance spot welding of aluminum alloys AA5182 and AA6014

机译:铝合金阻力点焊传热机理AA5182和AA6014的研究

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摘要

This work investigates heat transfer mechanism of aluminum resistance spot welding process. The main target is to determine thermal contact conductance and heat transfer coefficients for natural convection and thermal radiation at ambient air and forced convection inside the water-cooled electrodes. For this purpose, the heat transfer of hot sheets in a welding gun for aluminum alloys AA5182 and AA6014 is analyzed experimentally and numerically. The transient temperature field is measured by several thermocouples in a simplified experimental setup. Subsequent thermal-mechanical coupled finite element simulations of the experiments were used to calibrate the heat transfer coefficients. The heat transfer coefficient for natural convection and thermal radiation to ambient air is 13W/m(2)K and the heat transfer coefficient for forced convection of electrode water-cooling is 25,000W/m(2)K. The results indicate that the thermal contact conductance can be assumed ideal for welding process. Additionally, the finite element model is validated by the measured and calculated dissipated heat due to forced convection. Finally, a sensitivity analysis is performed to compare the influence of maximum and minimum heat transfer coefficients of forced convection (water-cooling) on transient temperature field and dissipated heat of sample AA5182.
机译:这项工作调查加热铝的电阻点焊过程的转移机构。主要目标是确定用于水冷电极内的自然对流,并在环境空气的热辐射和强制对流接触热导率和热传递系数。为此目的,热片材在一个焊枪传热铝合金AA5182和AA6014是通过实验和数值分析。瞬态温度场是通过在一个简化的实验设置几个热电偶测量。实验的随后的热 - 机械耦合的有限元模拟被用于校准的传热系数。用于自然对流和热辐射到周围空气的热传递系数是13W /米(2)K和电极水冷却的强制对流热传递系数为25,000W /米(2)K。结果表明,在接触热导率可以被假定为理想的焊接工艺。此外,该有限元模型是由测量和计算的热消散由于强制对流验证。最后,进行灵敏度分析以比较强制对流(水冷却)上瞬时温度场和样品AA5182的散发的热的最大和最小的传热系数的影响。

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