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Analyzing the probabilities of natural resting for a component with a virtual resting face

机译:分析具有虚拟支撑面的组件自然支撑的概率

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This paper introduces a new approach to predicting the natural resting behavior of a part of irregular prismatic cross-sectional shape. The methods proposed by Boothroyd, Redford, Poli, and Murch (1972) and Boothroyd and Ho (1977), successfullyanalyzed parts whose centers of gravity were located at the geometric center. The hypothesis presented here employs the centroid solid angle of parts of irregular cross-sectional shape with virtual resting faces, such as the L-section. It postulates thatthe probability of the respective natural resting surfaces of a part coming to rest is directly proportional to the centroid solid angle and inversely proportional to the height of the center of gravity from that surface. The proposed hypothesis iscompared with the Energy Barrier Method and experimental results obtained from drop-tests of the L-shaped part. The theoretical results agree well with the experimental results, with the maximum deviation not exceeding 6 percent.
机译:本文介绍了一种新的方法来预测不规则棱柱形截面形状的一部分的自然静止行为。 Boothroyd,Redford,Poli和Murch(1972)以及Boothroyd和Ho(1977)提出的方法成功地分析了重心位于几何中心的零件。此处提出的假设使用具有虚拟静止面(例如L形截面)的不规则截面形状的零件的质心立体角。它假定零件的各个自然静止表面静止的概率与质心立体角成正比,与从该表面到重心的高度成反比。提出的假设与能量屏障方法进行了比较,并从L形零件的跌落试验获得了实验结果。理论结果与实验结果吻合良好,最大偏差不超过6%。

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