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Exit effects in the wall slip of polymeric concentrated suspensions

机译:在聚合物浓缩悬浮液的壁滑中出口效果

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In this work we have studied the rheological properties of a 50 wt.% wood flour filled polypropylene. Experiments have been performed with an instrumented slit die attached to a single screw extruder and kept at 195°C in order to reduce possibility of natural fiber degradation. The slit die could be mounted with several gap heights in order to use the Mooney procedure to measure wall slip. Non-Newtonian effects have also been taken into account using the Rabinowitsch correction procedure. As a result, if one uses these slip law and flow rule and solves them to check on the experimental pressure readings, it can be found that the theoretical pressures overestimate the experimental measurements and moreover that the experimental pressure drop is non-linear close to the exit. This result can be explained by assuming that slip velocity increases in the last portion of the slit die, i.e. close to the exit, as a consequence of pressure dependent wall slip. A pressure dependent slip model has been then proposed, its specific equations numerically solved and the results fitted to the experimental pressure data, yielding a better fit. As pressure dependence of slip velocity induces a non-fully developed flow, it is clear that one of the hypotheses which are at the basis of the Mooney procedure is not satisfied by this fluid, thus strictly speaking the Mooney procedure is inapplicable.
机译:在这项工作中,我们研究了50重量%的流变性质。%木粉填充聚丙烯。已经使用仪表狭缝模具进行了实验,其连接到单个螺杆挤出机,并保持在195°C以减少天然纤维降解的可能性。狭缝模具可以安装有多个间隙高度,以便使用门尼程序来测量壁板。使用Rabinowitsch校正程序也考虑了非牛顿效应。结果,如果使用这些滑动法和流量规则并解决它们检查实验压力读数,则可以发现理论压力高估实验测量,此外,实验压降是非线性的出口。通过假设狭缝芯片的最后一部分在狭缝芯片的最后一部分中增加,可以解释该结果,即靠近出口,因为压力依赖性壁滑动。然后提出了一种压力依赖性滑动模型,其特定的等式数值求解,并配合到实验压力数据的结果,产生更好的合适。随着滑动速度的压力依赖性引起非完全发育的流动,显然该流体不满足了基于门oney程序的假设之一,因此严格讲Mooney程序是不可应用的。

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