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Analysis of the Active Fence Structure Based on the Analytical Model of Transverse Cantilever Beam Impact

机译:基于横悬轴梁冲击分析模型的主动围栏结构分析

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In the process of stream sorting of unit loads, one of the load manipulation methods is scraping with a rotary active fence. During the contact of the fence with the load a dynamic force occurs the value of which should be minimised by the adequately selected fence structure. For that purpose, there have been analysed a few impact models of the fence (beam) with a load, which involved mostly a plastic and elastic impact with the Hertz local contact model. It turns out that, due to the complexity of the optimisation of such fence, where both a variable cross section of fence and shear stresses must be considered, the analytical impact model between fence and load can considering only the first mode of vibration when the Hertzian contact is taken into account. It results in a considerable overestimation of the maximum impact force. In the plastic impact model, at the time of contact initiation, step change of velocity occur, which excludes a possibility of estimating the impact force. However, it turns out that as for the range of the fence applicability in terms of masses and the scraped load velocity, the model allows for an adequate estimation of the fence deflection. It facilitates minimising the fence mass without exceeding the admissible deflection due to impact.
机译:在单位负载的流分选的过程中,其中一个负载操作方法用旋转有源栅栏刮擦。 During the contact of the fence with the load a dynamic force occurs the value of which should be minimised by the adequately selected fence structure.为此目的,已经分析了围栏(梁)的几个冲击模型,其中负载主要涉及塑料和弹性冲击与赫兹局部接触型号。事实证明,由于这样的栅栏,其中,栅栏和剪切应力的两个可变的横截面必须考虑的优化的复杂性,围栏和负载之间的分析冲击模型可以仅考虑振动的第一模式时产生的赫兹联系被考虑在内。它导致最大的冲击力高估。在塑料冲击模型中,在接触开始时,发生速度的步骤变化,这排除了估计冲击力的可能性。然而,事实证明,在质量和刮擦的载荷速度方面的栅栏适用范围,该模型允许足够估计栅栏偏转。它有助于最小化围栏质量而不超过由于撞击导致的可允许偏转。

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