首页> 外文会议>Society of Plastics Engineers Annual Technical Conference >MODELING OF DISPERSED MELTING MECHANISM OF PVC POWDERS IN CALENDER GAPS IN AN INTERMESHING COUNTER-ROTATING TWIN-SCREW EXTRUDER
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MODELING OF DISPERSED MELTING MECHANISM OF PVC POWDERS IN CALENDER GAPS IN AN INTERMESHING COUNTER-ROTATING TWIN-SCREW EXTRUDER

机译:在啮合反旋转双螺杆挤出机中的压延间隙中PVC粉末分散熔化机理的建模

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Our experimental studies on unplasticized PVC (uPVC) melting process by ultrasound in-line monitoring method suggest that calendering effect between two screws dominates the melting process in an intermeshing counter-rotating twin-screw extruder. In this paper, a dispersed melting model in calender gaps is proposed to predict the melting length of PVC powders in terms of the number of calender gaps. Effects of screw geometries (channel depth, calender gap clearance) and processing conditions (screw speed, leakage flow) on melting length are discussed for both filled Newtonian and non-Newtonian fluid models. The calculated results are compared with experimental observations by "screw pulling out" method and ultrasound in-line monitoring method.
机译:我们通过超声在线监测方法对未增塑PVC(UPVC)熔化过程的实验研究表明,两个螺钉之间的压延效应主导熔化过程在啮合的反向旋转双螺杆挤出机中。在本文中,提出了在压延空隙中预测PVC粉末的熔化长度的分散熔化模型。填充牛顿和非牛顿流体模型讨论了螺钉几何(沟道深度,日历间隙清除)和加工条件(螺杆速度,漏流)对熔化长度的影响。通过“螺杆拉出”方法和超声在线监测方法将计算结果与实验观察进行比较。

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