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Influence of ultrasonic vibrations on tube spinning process

机译:超声波振动对纺丝工艺的影响

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The main objective of this paper is to study the influence of longitudinal ultrasonic vibrations on the tube spinning process. A robust experimental tube spinning system was designed and manufactured, in which the preform and mandrel can be excited by ultrasonic vibrations. Tube spinning experiments under ultrasonic vibrations were carried out on annealed AA-6061 preforms. A modal analysis was used to study the vibrational behavior of the system. The forming forces acting on the non-vibrating roller were measured in radial, axial, and tangential directions. Experimental results showed that low power longitudinal ultrasonic vibrations can improve the inner surface quality of annealed 6061 aluminum samples. In addition, high power ultrasonic vibrations can affect forming forces and material escape. Analysis of forming forces variations under ultrasonic vibration revealed that these changes are mostly because of contact effects of ultrasonic vibrations.
机译:本文的主要目的是研究纵向超声振动对管纺过程的影响。设计并制造了一种功能强大的实验管纺丝系统,其中可以通过超声波振动来激发预成型坯和芯棒。在退火的AA-6061瓶坯上进行了超声振动下的管纺实验。模态分析用于研究系统的振动行为。在径向,轴向和切线方向上测量作用在非振动辊上的成形力。实验结果表明,低功率纵向超声振动可以改善6061退火铝样品的内表面质量。另外,高功率超声振动会影响成形力和材料逸出。对超声振动下的成形力变化的分析表明,这些变化主要是由于超声振动的接触效应所致。

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