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Investigation on the Dynamic Behavior of the Fiber in the Vortex Spinning Nozzle and Effects of Some Nozzle Structure Parameters

机译:旋流喷嘴中纤维的动态行为及某些喷嘴结构参数的影响

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Vortex spinning, which adopts high speed airflow to insert twist into the yarn, is one of the most promising technological innovations in the textile industry. In vortex spinning, the dynamic behavior of the fiber inside the nozzle, which involves fiber-airflow interaction and fiber-wall contact, plays an important role in the twist insertion process. This paper investigates the airflow characteristics and the fiber dynamic behavior inside the vortex spinning nozzle via a two-dimensional numerical model with the fiber-airflow interaction and fiber-wall contact included. The fiber is assumed to be isotropic, elastic material. The airflow inside the nozzle is assumed to be turbulent, viscous and incompressible. The numerical results show that two vortices with momentarily changed sizes are created upstream of the jet orifice outlets. The imbalance of the pressure around the fiber causes the fiber to move and deform. The trailing end of the fiber rotates with wave shape within the nozzle chamber for several periods to insert twist into the yarn. Based on the model, the effects of three nozzle structure parameters – the jet orifice angle, jet orifice diameter, distance between the nozzle inlet and the hollow spindle, on the dynamic behavior of the fiber, and in turn, the yarn structure and tensile property are investigated. The results show that the appropriate jet orifice angle for obtaining the best yarn tenacity is 70°. The optimal jet orifice diameter is 0.4 mm. The spun yarn has the highest tenacity when the distance between the nozzle inlet and the hollow spindle is 14 mm
机译:涡旋纺纱采用高速气流将捻度插入纱线中,是纺织工业中最有希望的技术创新之一。在涡旋纺丝中,喷嘴内部纤维的动态行为,包括纤维-空气相互作用和纤维-壁接触,在加捻过程中起着重要作用。本文通过二维数值模型研究了涡旋纺丝喷嘴内部的空气流动特性和纤维动力学行为,该模型包含了纤维与空气之间的相互作用以及纤维与壁之间的接触。假定纤维是各向同性的弹性材料。喷嘴内部的气流被认为是湍流,粘性和不可压缩的。数值结果表明,在喷孔出口的上游形成了两个大小随时间变化的旋涡。光纤周围压力的不平衡会导致光纤移动和变形。纤维的尾端在喷嘴室内以波形旋转若干周期,以将捻度插入到纱线中。基于该模型,三个喷嘴结构参数(喷嘴孔角,喷嘴孔直径,喷嘴入口与空心锭子之间的距离)对纤维的动态性能以及纱线结构和拉伸性能的影响被调查。结果表明,获得最佳纱线韧性的合适射流角度为70°。最佳射流孔直径为0.4毫米。当喷嘴入口和空心锭子之间的距离为14 mm时,纺出的纱线具有最高的强度

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