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首页> 外文期刊>Journal of Applied Polymer Science >Dynamics of air drawing in the melt blowing of nonwovens from isotactic polypropylene by computer modeling
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Dynamics of air drawing in the melt blowing of nonwovens from isotactic polypropylene by computer modeling

机译:等规聚丙烯无纺布熔体吹塑中空气拉伸动力学的计算机模拟

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The dynamics of stationary air drawing in the melt blowing of nonwovens were determined on the basis of a single-filament model in a thin-filament approximation that accounts for polymer viscoelasticity, heat of viscous friction in the polymer bulk, and surface energy. Predetermined distributions of the air velocity and temperature along the melt blowing axis were assumed. Axial profiles of the polymer velocity, temperature, elongation rate, filament diameter, tensile stress, and extrapressure were computed for the melt blowing of isotactic polypropylene. The effects of the air-jet velocity, die-to-collector distance, and polymer molecular weight are discussed. We predicted that the filament attenuation and velocity at the collector located in the air-drawing zone would increase with increasing die-to-collector distance. The air-drawing zone was shorter for higher air velocities and lower molecular weights. No online crystallization was predicted before the achievement of the collector, and melt bonding of the filament in the web should have occurred during cooling on the collector, accompanied by spherulitic crystallization. Significant online extrapressure in the filament was predicted in the case of supersonic air jets as resulting from polymer viscoelasticity, which could have led to longitudinal splitting of the polymer into subfilaments.
机译:非织造布熔体吹塑过程中固定空气拉伸的动力学是基于薄丝近似的单丝模型确定的,该模型考虑了聚合物的粘弹性,聚合物本体中的粘摩擦热和表面能。假定沿熔喷轴线的空气速度和温度的预定分布。对于等规聚丙烯的熔喷,计算了聚合物速度,温度,伸长率,长丝直径,拉伸应力和超压的轴向分布。讨论了喷气速度,管芯到收集器的距离以及聚合物分子量的影响。我们预测,位于吸气区的收集器处的灯丝衰减和速度会随着管芯到收集器距离的增加而增加。对于较高的空气速度和较低的分子量,吸气区较短。在获得收集器之前,没有在线结晶的预测,并且在冷却收集器的过程中,纤网中长丝的熔融结合应该发生了,并伴随着球状结晶。在超音速喷气的情况下,由于聚合物的粘弹性而导致长丝中存在明显的在线超压,这可能导致聚合物纵向分裂成亚丝。

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