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Multi-objective optimization of medium frequency induction heating process for large diameter pipe bending

机译:大直径管弯管中频感应加热工艺的多目标优化

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Medium frequency induction heating for large diameter pipe bending is an advanced technique that has been widely used. However, the thickness control of outer wall and inner wall of pipe is still difficult in the actual production: outer wall tends to be thinner and inner wall tends to be thicker. Therefore, it is necessary to optimize the process parameters of bending. Combined central composite experimental design and a proper selection of design parameters sample, an accurate response surface model was built in order to decrease ovality, thickness reduction ratio and forming load. The response value of objective function was analyzed; and important influence factors for system stability were found, i.e heating temperature, heating width and advance speed. The results indicate that the optimal value range were heating temperature of outer wall t=1030~1070 °C, while advance speed v=0.3(http://creativecommons.Org/licenses/by-nc-nd/3.0/). 0.4 mm/sec. Practical results from multi-objective optimization could achieve qualified products.
机译:大直径管弯曲的中频感应加热是已广泛使用的先进技术。然而,在实际生产中,管道和内壁的厚度控制仍然困难:外壁趋于较薄,内壁趋于较厚。因此,有必要优化弯曲的过程参数。 Combined central composite experimental design and a proper selection of design parameters sample, an accurate response surface model was built in order to decrease ovality, thickness reduction ratio and forming load.分析了客观函数的响应值;发现了系统稳定性的重要影响因素,即加热温度,加热宽度和先进速度。结果表明,最佳值范围是外壁T = 1030〜1070°C的加热温度,而提前速度v = 0.3(http://creativommomons.org/licenses/by-nc-nd/3.0/)。 0.4毫米/秒。多目标优化的实用结果可以实现合格的产品。

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