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Study on airflow field and fiber motion with new melt blowing die

机译:新熔喷模具气流场和纤维运动的研究

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摘要

In this study, a new melt-blowing die was studied with the computational fluid dynamic approach. A bead-viscoelastic element fiber model was established to model three-dimensional paths of the fiber motion with the standard linear solid (SLS) constitutive equation in different airflow fields. The effects of this newly designed die on the velocity field, temperature field, and turbulence fluctuation field at the centerline were studied and compared with the traditional melt blowing die. The fiber motion was simulated and compared with the airflow field of different dies. The simulations results demonstrated that the new die was able to reduce the velocity fluctuations of the air flow near the outlet of the polymer capillary and generate the higher centerline air velocity and temperature. The fiber attenuation and motion were related to the centerline air velocity, temperature, and turbulent fluctuation in the melt blowing process. POLYM. ENG. SCI., 59:1182-1189 2019. (c) 2019 Society of Plastics Engineers
机译:在该研究中,利用计算流体动态方法研究了一种新的熔化模具。建立了珠子 - 粘弹性元件光纤模型,以利用不同气流场中的标准线性固体(SLS)构成方程模拟纤维运动的三维路径。研究了这种新设计的模具对中心线的速度场,温度场和湍流波动场的影响,并与传统的熔体吹模相比。模拟光纤运动并与不同模具的气流场进行比较。模拟结果表明,新的模具能够降低聚合物毛细管出口附近的空气流的速度波动,并产生更高的中心线空气速度和温度。纤维衰减和运动与熔喷过程中的中心线空气速度,温度和湍流有关。聚合物。 eng。 SCI。,59:1182-1189 2019.(c)2019年塑料工程师协会

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