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Mechanism and significance of slip and new mixing elements during flow in modular intermeshing co-rotating twin screw extruders.

机译:相互啮合的同向旋转双螺杆挤出机在流动过程中滑移和新混合元件的机理和意义。

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摘要

We have investigated slippage effect on melt flow of various polyolefins and their compounds in modular intermeshing co-rotating twin screw extruder, which include high density polyethylene (HDPE), isotactic polypropylene (iPP), isotactic polybutene-1 (PB1), isotactic poly(4-methyl pentene-1) (P4MP1) and two different kinds of particle filled polypropylenes (PP/carbon black and PP/Silica). To induce slippage during the process, octadecanoic acid was introduced on the second port of the extruder. Length of fill, die pressure and screw characteristics in twin screw extruder were studied under varying processing parameters: volumetric flow rate, screw rotational speed, and die geometry.;The effort to account for these variations on slippage effect was combined with considerations of the structures of polyolefins and polarities of fillers. One of five different polyolefins, CPO, has different backbone structure and the others have different pendant group. The order of pendant group size from small to big was found out to be HDPE > PP > PB1 > P4MP1. Two different kinds of inorganic particle fillers (carbon black and silica) were compounded to study the effect of polarity of inorganic particles on the slippage behavior. Carbon black represented non-polar filler and silica represented polar filler.;In order to make objective and quantitative predictions in twin screw extrusion process, it was necessary to figure out slip velocity - shear stress relation since the boundary conditions on the barrel, screw and die surfaces are determined by slip velocities which are only can be predicted from applied shear stress fields. From the Mooney's method, we could find out slip velocity - shear stress relations using three different diameters of capillary dies having same L/D ratio. A numerical method (Flow Analysis Network method) was applied to simulate the effect of slippage on the flow in twin screw channel based on the slip velocity and shear stress relations obtained from capillary experiments. To confirm the simulation, length of fills for various process conditions were predicted by simulation and they were compared with experimental results.;In addition, the screw characteristics and flow patterns for two different special mixing elements (SME, ZME) were obtained to investigate the mechanism and functions of these elements using the FAN method. The simulation of these special mixing elements were compared with conventional screw elements which having same helix angle, diameter and length.
机译:我们已经研究了滑模对模块化相互啮合的同向旋转双螺杆挤出机中各种聚烯烃及其化合物的熔体流动的影响,其中包括高密度聚乙烯(HDPE),全同立构聚丙烯(iPP),全同立构聚丁烯-1(PB1),全同立构聚( 4-甲基戊烯-1)(P4MP1)和两种不同的颗粒填充聚丙烯(PP /炭黑和PP /二氧化硅)。为了在此过程中引起打滑,将十八烷酸引入挤出机的第二个端口。研究了双螺杆挤出机在不同的加工参数(体积流量,螺杆转速和模头几何形状)下的填充长度,模头压力和螺杆特性;将考虑滑移效应的这些变化的努力与结构考虑相结合聚烯烃的种类和填料的极性。五个不同的聚烯烃(CPO)之一具有不同的主链结构,其他的具有不同的侧基。发现侧链组大小从小到大的顺序为HDPE> PP> PB1> P4MP1。将两种不同类型的无机颗粒填料(炭黑和二氧化硅)进行了复合,以研究无机颗粒的极性对滑移行为的影响。炭黑代表非极性填料,二氧化硅代表极性填料。;为了在双螺杆挤出过程中做出客观和定量的预测,由于筒,螺杆和螺杆的边界条件,有必要计算滑移速度-剪切应力的关系。模具表面由滑移速度确定,滑移速度只能从施加的切应力场中预测。从门尼的方法中,我们可以使用具有相同L / D比的三个不同直径的毛细管模具,找出滑移速度与剪切应力的关系。基于毛细管实验获得的滑移速度和剪切应力关系,采用数值方法(流动分析网络方法)模拟滑移对双螺杆通道内流动的影响。为验证模拟效果,通过模拟预测了各种工艺条件下的填充长度,并将其与实验结果进行了比较。此外,还获得了两种不同特殊混合元件(SME,ZME)的螺杆特性和流型,以研究这些要素的机制和功能使用FAN方法。将这些特殊混合元件的仿真与具有相同螺旋角,直径和长度的常规螺杆元件进行了比较。

著录项

  • 作者

    Ban, Kyunha.;

  • 作者单位

    The University of Akron.;

  • 授予单位 The University of Akron.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 323 p.
  • 总页数 323
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:39:19

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