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Choice of the number and placement of the extruder barrel plasticating grooves as the possibility of extrusion process controlling

机译:选择挤出机机筒塑化槽的数量和位置,以控制挤出过程

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The results of the studies of the influence of the number and placement of the extruder barrel plasticating grooves,in relation to the hopper and the direction of the screw rotation as well as in relation each to other,on the values characterizing the process of autothermal extrusion of low density polyethylene (PE-LD) were presented.A single-screw extruder of the screw diameter 25 mm and L/D = 18,operating autothermally,was used and screw rotation frequency was fixed.A grooved sleeve with four longitudinal plasticating grooves,placed symmetrically on the circumference,was fixed in the barrel.Their depths could be changed continuously and independently making possible to reach the required configuration of the number (from 0 to 4) and placement of the activated grooves (Table 1).The appropriate direct and indirect resulting factors,variable,constant or disturbing were accepted.The dependence of the following factors:polymer flow rate (Fig.2),energy efficiency of the extruder (Fig.3) and plasticating system (Fig.4),unit energy consumption taken by the extruder (Fig.5) and plasticating system (Fig.6) on the number and placement of the activated grooves was found.It was found that these factors,in agreement with the assumptions done,significantly influenced the course of the process investigated.The placement of the activated grooves (not their number) in relation to the hopper and each to other appeared to be of crucial importance.
机译:研究挤压机机筒塑化槽的数量和位置与料斗和螺杆旋转方向以及彼此之间的关系对表征自热挤压过程的值的影响的结果介绍了一种低密度聚乙烯(PE-LD)的制造方法。使用螺杆直径为25 mm,L / D = 18的单螺杆挤出机,该螺杆可自热运行,并固定螺杆旋转频率。带有四个纵向塑化凹槽的开槽套筒对称地放置在圆周上,固定在机筒中。它们的深度可以连续且独立地改变,从而可以达到所需的数字配置(从0到4)和激活的凹槽的位置(表1)。直接或间接产生的因素是可变的,恒定的或干扰的。以下因素的依赖性:聚合物流速(图2),挤出机的能效(图3)和d塑化系统(图4),发现了挤出机(图5)和塑化系统(图6)在激活槽的数量和位置上所消耗的单位能耗。发现这些因素是一致的在完成这些假设的情况下,显着影响了所研究的过程。激活槽(而不是其编号)相对于料斗以及彼此之间的位置似乎至关重要。

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