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Dependence of solids conveying on screw axial vibration in single screw extruders

机译:单螺杆挤出机中固体输送对螺杆轴向振动的依赖性

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In the single-screw extruder, the vibration force field is applied to the solids conveying process by the axial vibration of the screw and the novel concept on the solids conveying process being strengthened with the vibration force field has been brought forward in this study. We establish the mathematical model that describes the solids conveying process with the vibration force field and obtain the approximative analytical solutions of the pressure and velocity of the solids conveying in the down-channel. In the new theory, if the screw has no axial vibration the solids conveying pressure is the same as that of the Darnell and Mol theory, but the density and velocity of solids conveying along the screw channel is variable, which has modified the Darnell and Mol theory in which the density and velocity of the solids conveying along the screw channel was considered invariable. The results reveal that the axial vibration of the screw can increase the average pressure of solids conveying, decrease the channel length of the solids conveying section and increase the solids conveying angle. (c) 2006 Wiley Periodicals, Inc.
机译:在单螺杆挤出机中,通过螺杆的轴向振动将振动力场应用于固体输送过程,并提出了利用振动力场加强固体输送过程的新概念。我们建立了用振动力场描述固体输送过程的数学模型,并获得了固体在下行通道中的压力和速度的近似解析解。在新理论中,如果螺杆没有轴向振动,则固体输送压力与Darnell和Mol理论相同,但是沿螺杆通道输送的固体的密度和速度是可变的,这改变了Darnell和Mol理论中,沿螺旋通道输送的固体的密度和速度被认为是不变的。结果表明,螺杆的轴向振动可以增加固体输送的平均压力,减小固体输送段的通道长度,增加固体输送角度。 (c)2006年Wiley Periodicals,Inc.

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