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Numerical Study On The Principle Of Yarn Formation In Murata Air-jet Spinning

机译:村田喷气纺纱线形成原理的数值研究

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摘要

A realizable k-ε turbulence model was adopted to study the airflow characteristics inside the two nozzles including the slotting-tube of Murata air-jet spinning (MJS). Actions of the two nozzles and the accepted principle of yarn formation were both discussed. The results show that some factors in the first nozzle, such as weak opposite swirling balloon in upstream of the jet orifice, vortex breakdown in downstream of the jet orifice and opposite direction airflows between the grooves and the twisting chamber, do good to produce longer wrapper fibers and form twist difference between the edge fibers and the core ones. The airflow in the second nozzle rotates in the opposite direction to that in the first nozzle, to untwist the swirling balloon that formed by the first nozzle. On the other hand, simulation results well supported the theoretical analysis of the principle of the yarn formation proposed by Stalder and Krause.
机译:采用可实现的k-ε湍流模型来研究包括Murata喷气纺纱(MJS)的缝管在内的两个喷嘴内部的气流特性。讨论了两个喷嘴的作用以及公认的纱线形成原理。结果表明,第一个喷嘴中的一些因素,例如喷射孔上游的相对反向旋流气球较弱,喷射孔下游的涡流破裂以及凹槽和扭曲腔之间的反向气流,都有助于长包装纸的产生。纤维并在边缘纤维和芯纤维之间形成扭曲差。第二喷嘴中的气流以与第一喷嘴中的气流相反的方向旋转,以使第一喷嘴形成的回旋气球解开。另一方面,仿真结果很好地支持了Stalder和Krause提出的纱线形成原理的理论分析。

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