聚合物悬浮液中的粒子间相互作用效应

N. Laufer, H. Hansmann, C. Boss, Stefan Ofe
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摘要

与未填充的聚合物熔体相比,填充颗粒的聚合物熔体的粘度函数向更高的值移动。这种增加受到许多因素的影响,如悬浮颗粒的体积含量、尺寸、尺寸分布和长径比。如果颗粒间发生相互作用,包括团聚体的形成和破碎以及颗粒在流动过程中的迁移和旋转,则悬浮液粘度增加的程度也取决于施加的剪切应力。具有高长径比的填料,如纤维状和片状颗粒,即使在低体积浓度下也表现出很强的颗粒间相互作用趋势。然而,取决于聚合物基质,球形颗粒在低填料体积浓度下可以表现出一系列可忽略不计的颗粒间相互作用。不可忽略的相互作用发生在较高的填料浓度。在广义相互作用函数的基础上,考虑了可忽略相互作用到不可忽略相互作用域的过渡,可以估计颗粒填充聚合物熔体的流动行为。本章的主题是应用广义相互作用函数来表征颗粒填充聚烯烃熔体的流动行为。
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Interparticle Interaction Effects in Polymer Suspensions
Viscosity functions of particle-filled polymer melts are shifted to higher values in com - parison with those of the unfilled polymer melts. This increase is affected by a number of factors such as the volume content, size, size distribution and the aspect ratio of the suspended particles. If interparticle interactions occur, which include the formation and breaking of agglomerates as well as the migration and rotation of particles during flow, the extent of the viscosity increase of suspensions also depends on the applied shear stress. Filler with a high aspect ratio, such as fibrous and plate-like particles, exhibits a strong tendency for interparticle interactions even at low volumetric concentrations. However, depending on the polymer matrix, spherical particles can exhibit a range of negligible interparticle interactions at low filler volume concentrations. Non-negligible interactions occur at higher filler concentrations. On the basis of the generalized interaction function , which considers the transition from negligibly interparticle interactions to the domain of non-negligibly interactions, the flow behavior of particle-filled polymer melts can be estimated. The subject of this chapter is the application of the generalized interaction function for the characterization of the flow behavior of particle-filled polyolefin melts.
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