材料科学
模具(集成电路)
复合材料
线性低密度聚乙烯
不稳定性
挤出胀大
气泡
粘弹性
自由面
挤压
压力(语言学)
机械
等温过程
聚乙烯
热力学
物理
纳米技术
哲学
语言学
作者
R. P. G. Rutgers,N. Clemeur,Joeska Husny
摘要
Abstract The characteristics of sharkskin surface instability for linear low density polyethylene are studied as a function of film blowing processing conditions. By means of scanning electron microscopy and surface profilometry, is it found that for the standard industrial die geometry studied, sharkskin only occurs on the inside of the film bubble. Previous work suggests that this instability may be due to critical extensional stress levels at the exit of the die. Isothermal integral viscoelastic simulations of the annular extrusion process are reported, and confirm that the extensional stress at the die exit is large enough to cause local melt rupture. However, the extensional stress level at the outer die wall predicts melt rupture of the outside bubble surface also, which contradicts the experimental findings. A significant temperature gradient is expected to exist across the die gap at the exit of the die, due to the external heating of the die and the low conductivity of the polymer melt. It is shown that a gradient of 20°C is required to cause sharkskin to only appear on the inner bubble surface.
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