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首页> 外文期刊>Journal of Applied Polymer Science >Effect of ultrasound on the viscoelasticity and rheology of polystyrene extruded through a slit die
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Effect of ultrasound on the viscoelasticity and rheology of polystyrene extruded through a slit die

机译:超声对通过狭缝模头挤出的聚苯乙烯的粘弹性和流变性的影响

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The rheological and processing behavior (melt fracture performance) of polystyrene extruded through a Slit die is Studied as a function of the ultrasound vibration intensity. The apparent viscosity reduces 29%) and die pressure reduces 22%, compared with that without ultrasound vibration. The viscosity of the melt decreases exponentially as Ultrasound intensity increases and an Arrhenius equation fits the data well. Ultrasound vibration also leads to a decrease of the die swell ratio and a postponement of melts fracture. Characteristic relaxation times at the onset of melt fracture are calculated according to the hypothesis that the melt fracture behavior of a polymer is affected by a balance between its viscous (viscosity) and elastic properties (recoverable shear). Ultrasound vibration shortens the relaxation time of polystyrene molecular chains. (c) 2006 Wiley Periodicals, Inc.
机译:研究了通过狭缝模头挤出的聚苯乙烯的流变和加工行为(熔体断裂性能),它是超声振动强度的函数。与没有超声振动的情况相比,表观粘度降低了29%,模头压力降低了22%。随着超声强度的增加,熔体的粘度呈指数下降,并且Arrhenius方程很好地拟合了数据。超声波振动还导致模头溶胀率的降低和熔体断裂的延迟。熔体破裂开始时的特征弛豫时间是根据以下假设计算的:聚合物的熔体破裂行为受其粘度(粘度)和弹性(可恢复剪切力)之间平衡的影响。超声振动缩短了聚苯乙烯分子链的弛豫时间。 (c)2006年Wiley Periodicals,Inc.

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