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The Role of Calender Gap in Barrel and Screw Wear in Counterrotating Twin Screw Extruders

机译:压延间隙在桶和螺杆磨损中的作用在反向双螺杆挤出机中

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摘要

It has been known in the industrial sector that in closely intermeshing counterrotating twin screw extruders, large separating forces develop in the calender gap, which push the screws towards the barrel wall. The result is significant wear in the region defined by 30°- and 60°-degree angles from the vertical. In the present investigation, pressures were measured around the barrel in extrusion of two rigid PVC resins in a laboratory extruder of 55 mm diameter and the forces on the screw core were determined. Numerical flow simulations were also carried out using the power-law viscosity parameters of the resins. From the experimental results, it was determined that the resultant forces are in the 30 degree angle direction, and from the computer simulations, the angle is between 18° and 25°. It is argued that the resultant force angle will be somewhat larger in large diameter extruders, due to the additional contribution of gravity.
机译:它已知在工业领域,在紧密啮合对抗双螺杆挤出机中,大型分离力在压延空间中发育,这将螺钉推向筒壁。结果是由垂直的30° - 和60°-degree角度限定的区域中的显着磨损。在本研究中,在抵壳周围测量压力在挤出两个刚性PVC树脂的实验室挤出机中,直径为55mm,确定螺杆芯上的力。还使用树脂的功率法粘度参数进行数值流模拟。从实验结果中,确定所得力在30度角方向上,从计算机模拟,角度在18°和25°之间。认为,由于重力的额外贡献,在大直径挤出机中,所得到的力角在大直径挤出机中的稍微略大。

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