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Optimization of spinning process parameters for the large-diameter thin-walled cylinder based on the drum shape

机译:基于滚筒形状的大直径薄壁圆筒的纺纱工艺参数优化

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摘要

Thinning spinning has the advantage of enhancing the performance of a product, and it is an effective method for manufacturing large-diameter ultrathin cylindrical parts. However, the rigidity of a large-diameter ultrathin wall cylinder is poor, the spinning process and forming quality are sensitive to the process parameters, and the drum-shaped result of the spinning process is prone to instability, which can cause the spinning process to be unbalanced. Therefore, it is a great challenge to select the appropriate process parameters for achieving the long-range stable spinning of large-diameter ultrathin wall cylinders. Based on the analysis of the thin-walled cylinder spinning mechanism, this study analyzed the effects of key process parameters on the drum shape of a C-276 thin-walled cylinder spinning process by serial experiments. The results of serialization experiments show that the thinning rate has a great influence on the spinning process state, the feed rate is secondary, and the speed has the least influence. On the basis of experimental analysis, the optimized process parameters of thin-walled cylinder spinning are obtained by using the support vector machine method: the wall thickness reduction rate cannot exceed 45% in single-pass spinning; 30 similar to 40% is a reasonable choice interval; the feed rate can range from 0.8 to 1.0 mm/r; and the rotation speed can range from 80 to 100 r/min. Finally, a comparative experiment and stability test of thin-walled cylinder thinning spinning over a long range is carried out, which verifies that the optimized spinning parameters can be used for the long-range stable spinning of large-diameter ultrathin cylinder parts.
机译:稀疏纺丝具有增强产品性能的优点,并且它是制造大直径超薄圆柱形部件的有效方法。但是,大直径超薄壁筒的刚性差,纺纱工艺和形成质量对工艺参数敏感,纺纱工艺的滚筒形结果易于不稳定,这可能导致纺纱过程不平衡。因此,选择适当的工艺参数是一个巨大的挑战,以实现大直径超薄壁缸的远程稳定纺丝。基于薄壁汽缸纺丝机制的分析,本研究通过串行实验分析了关键工艺参数对C-276薄壁圆柱旋转过程的滚筒形状的影响。序列化实验的结果表明,稀疏率对纺纱过程状态有很大影响,进料速率是次要的,并且速度具有最小影响。在实验分析的基础上,通过使用支撑载体机方法获得薄壁圆筒纺丝的优化工艺参数:单通纺壁厚度降低率不能超过45%; 30类似于40%的30%是合理的选择间隔;进料速率范围为0.8至1.0 mm / r;旋转速度可以从80到100 / min的范围。最后,进行了在长距离旋转的薄壁圆柱体稀释的比较实验和稳定性测试,这验证了优化的纺纱参数可用于大直径超薄圆筒部件的远程稳定旋转。

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