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Effect of screw design on hopper drawdown of spherical particles in a horizontal screw feeder

机译:螺旋设计对卧式螺旋给料机中球形颗粒料斗的回落的影响

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摘要

Screw feeders are used to remove material from hoppers and bins at a controlled rate. The evenness of the flow in the bin depends on the drawdown pattern, which in turn depends on the screw and hopper design, shape of the particles and wall friction effects. A key design requirement is to ensure that a progressive increase in the screws volumetric capacity is achieved along the entire length of the hopper's opening so as to produce even drawdown. If this is not achieved then compositional variations in the outgoing stream and other operational problems (such as caking) can be created. Screw designs to date have been generally based on analytical models and at times the predicted flow pattern is not achieved. In this study, the Discrete Element Method (DEM) is used to predict particle transport in a horizontal screw feeder system for a range of conventional screw designs including a variable screw pitch, variable screw flight outside diameters and variable core diameters. The influence of screw choice on the particle mass flow rate, the evenness of particle drawdown from the hopper, power consumption, screw wear and wall friction variations are all investigated. Important features captured by DEM that are not accounted for by the analytic model and which vary strongly between competing screw designs, include the particle circulation in the hopper, shearing of the particle bed in the trough just outside the screw and the spatially varying particle force along the hopper which leads to non-uniform drawdown and to the existence of large stagnant or slow moving zones. The screw design and consequent flow patterns also strongly affect the power draw with variations up to a factor of three and screw wear with large changes in their distribution and magnitude. Finally, the surface frictional properties of the screw are shown to strongly influence the rate of bed compaction within and along the screw leading to strong variation in mass flow rate, uniformity of drawdown and power draw.
机译:螺旋给料机用于以受控的速度从料斗和料仓中清除物料。料仓中流动的均匀性取决于下拉模式,而下拉模式又取决于螺杆和料斗的设计,颗粒的形状和壁的摩擦效果。一个关键的设计要求是确保沿着料斗开口的整个长度逐渐增加螺杆的容积,以产生均匀的下降。如果没有做到这一点,那么会在输出流中产生成分变化和其他操作问题(例如结块)。迄今为止,螺杆设计通常是基于分析模型的,有时无法实现预期的流型。在这项研究中,离散元素方法(DEM)用于预测水平螺旋进料器系统中用于一系列常规螺杆设计(包括可变螺杆螺距,可变螺杆螺纹外径和可变芯径)的颗粒传输。研究了螺杆选择对颗粒质量流率,从料斗中排出颗粒的均匀性,功耗,螺杆磨损和壁摩擦变化的影响。 DEM捕获的重要特征未由分析模型解释,并且在竞争的螺杆设计之间有很大差异,包括料斗中的颗粒循环,螺杆外部槽中颗粒床的剪切以及沿颗粒的空间变化力料斗会导致不均匀的压降,并导致大的停滞或缓慢移动区域。螺杆的设计和随之而来的流型也会以最大三倍的变化极大地影响功率消耗,并且螺杆的分布和大小都会发生很大的变化。最后,螺杆的表面摩擦性能显示出强烈影响螺杆内部和沿螺杆的床压实率,从而导致质量流量,降落均匀性和功率消耗的强烈变化。

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