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Husking characteristics of short and long grain rice by rubber roll husker (part 1) --dynamic analysis of a single grain motion--

机译:橡胶辊壳短和长粒稻米壳特点(第1部分) - 单颗粒运动的动态分析 -

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Dynamic analysis of grain motion in an experimental rubber roll husker was carried out using short and long grain rice. The short grain rice variety used was Akitakomachi and the long grain rice varieties were Delta and L201. Single grains used in the analysis were fed vertically and horizontally in between the rollers. Considering the direction of grain feed and the shape of the grain, a new equation for contact distance was derived based on the radius of curvature of the grain. The new equation gave a better estimation of contact distance compared to the traditional equation. Contact distance was used in the computation of grain speed, projected area and contact area. Grain motion was observed using a high-speed camera. Computed grain speed was found to be closer to the auxiliary roll speed than the main roll speed and at low roll deflection, projected area was close to contact area. Maximum shear stress determined from shear force caused by friction force and projected area occurred close to the maximum husking energy efficiency.
机译:使用短和长粒米进行实验橡胶卷壳壳中晶体运动的动态分析。使用的短谷物水稻品种是Akitakomachi,长粒水稻品种是Delta和L201。在分析中使用的单粒颗粒垂直和水平进料。考虑到谷物饲料的方向和谷物的形状,基于晶粒的曲率半径来推导出一种新的接触距离方程。与传统方程相比,新的等式更好地估计了接触距离。接触距离用于计算粒度,投影区域和接触区域。使用高速相机观察晶粒运动。发现计算的粒度比主辊速度和低辊偏转更接近辅助辊速度,投影区域接近接触面积。由摩擦力和投影区域引起的剪切力确定的最大剪切应力接近最大的剥离能效。

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