为研究螺杆间隙对流道中药浆的安全性能和混合效果的影响,在螺杆构型相同的情况下,设置1.2、1.6 mm和2.0 mm 3种不同的螺杆间隙,建立非等温流场模拟模型,用模拟计算得到的压力、温度和剪切应力来评价流道中药浆的安全性能,用加权平均剪...为研究螺杆间隙对流道中药浆的安全性能和混合效果的影响,在螺杆构型相同的情况下,设置1.2、1.6 mm和2.0 mm 3种不同的螺杆间隙,建立非等温流场模拟模型,用模拟计算得到的压力、温度和剪切应力来评价流道中药浆的安全性能,用加权平均剪切应力和累积停留时间分布来评价螺杆的分散混合和分布混合能力。结果表明:随着螺杆间隙的增大,流道中药浆的安全性提高,混合效果变差。展开更多
The residence time distribution (RTD) evolution along a co-rotating twin-screw extruder with a split barrel was experimentally investigated by using the pre-mixed particles of polystyrene (PS) with anthracene as the t...The residence time distribution (RTD) evolution along a co-rotating twin-screw extruder with a split barrel was experimentally investigated by using the pre-mixed particles of polystyrene (PS) with anthracene as the tracer.The samples on the screw were taken out from the specially designed extruder, which could be dead-stopped at a given time and its barrel opened within several seconds.A three-parameter function was used to fit the experimentally measured RTD.The calculated results fit the experimental data very well.The reverse screw elements and kneading block had much longer residence time and resulted in effective mixing.Based on the average residence time of different screw zones and volume flow rate of molten PS, the fill degree in different screw zones was estimated.The fill degree results proved that the similar structure of screw elements might have different degrees of fill due to the effect of neighboring elements, and too close alignment of kneading zones might lead to ‘besiegement’ of materials in the zone between them.展开更多
文摘为研究螺杆间隙对流道中药浆的安全性能和混合效果的影响,在螺杆构型相同的情况下,设置1.2、1.6 mm和2.0 mm 3种不同的螺杆间隙,建立非等温流场模拟模型,用模拟计算得到的压力、温度和剪切应力来评价流道中药浆的安全性能,用加权平均剪切应力和累积停留时间分布来评价螺杆的分散混合和分布混合能力。结果表明:随着螺杆间隙的增大,流道中药浆的安全性提高,混合效果变差。
文摘The residence time distribution (RTD) evolution along a co-rotating twin-screw extruder with a split barrel was experimentally investigated by using the pre-mixed particles of polystyrene (PS) with anthracene as the tracer.The samples on the screw were taken out from the specially designed extruder, which could be dead-stopped at a given time and its barrel opened within several seconds.A three-parameter function was used to fit the experimentally measured RTD.The calculated results fit the experimental data very well.The reverse screw elements and kneading block had much longer residence time and resulted in effective mixing.Based on the average residence time of different screw zones and volume flow rate of molten PS, the fill degree in different screw zones was estimated.The fill degree results proved that the similar structure of screw elements might have different degrees of fill due to the effect of neighboring elements, and too close alignment of kneading zones might lead to ‘besiegement’ of materials in the zone between them.