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Analysis of compressing and shearing behavior of powders in high-speed elliptical-rotor-type powder mixer (HEM)

机译:高速椭圆转子式粉末混合机(HEM)中粉末的压缩和剪切行为分析

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This paper describes the analysis of behavior of powder being compressed and sheared by a rotor in a high-speed elliptical-rotor-type powder mixer (HEM). Two kinds of two-dimensional simplified dynamics models are proposed to analyze the powder behavior under conditions in which the maximum external force acts on the powders. Each of these models express the phenomena in which the powder layer slides on the vessel wall after it causes plastic deformation, and the rotor compresses the powder layer dynamically. The model equations contain both the operating conditions of HEM and the physical properties of powder as parameters, and are used to estimate the stresses acting on the powders while the HEM is operated. Good agreement between the experimental data and the calculated value of the torque acting on the rotor shaft during the mixing operation is obtained. It is clarified from the calculation that the powder layer is compressed dynamically in the minimum clearance region, and the powder layer in the other region is forced out of the minimum clearance region. The results obtained in this study indicate that adequate selection of the operating conditions of HEM enable achievement of precise control of stress acting on a powder of arbitrary physical properties. [References: 22]
机译:本文描述了在高速椭圆转子式粉末混合器(HEM)中,由转子压缩和剪切的粉末的行为分析。提出了两种二维简化动力学模型来分析在最大外力作用于粉末的条件下粉末的行为。这些模型中的每一个都表达以下现象:粉末层在引起塑性变形后在容器壁上滑动,而转子则动态压缩粉末层。模型方程包含HEM的运行条件和粉末的物理特性作为参数,并用于估计HEM运行时作用在粉末上的应力。在混合操作期间,实验数据与作用在转子轴上的转矩的计算值之间取得了很好的一致性。通过计算可知,粉末层在最小间隙区域被动态压缩,而另一区域的粉末层被迫离开最小间隙区域。在这项研究中获得的结果表明,适当选择HEM的操作条件可以实现精确控制作用在任意物理性质的粉末上的应力。 [参考:22]

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