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首页> 外文期刊>International Journal of Engineering Research and Applications >3D Stress Distribution Analysis around Blind-holes in Thin Plates Under Non-uniform Tension Loads
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3D Stress Distribution Analysis around Blind-holes in Thin Plates Under Non-uniform Tension Loads

机译:非均匀拉伸载荷作用下薄板盲孔周围的3D应力分布分析

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A three-dimensional photo elasticity analysis and an interactive finite-element package were used in parallel to analyze the stress distribution on the root of blind-holes in thin plates. Experimental analysis was conducted via stress freezing method. The FEM analysis was performed with the ABAQUS commercial code using material properties obtained experimentally as input. The results showed that the maximum stress distribution occurred in three zones: the first one at the beginning of the blind-hole; the second one at the transition zone where the root begins his shape; and at the center of the root.These results are expected to improve blind-hole design according to its function. The combined use of experimental and numerical methods provides more information than each method taken alone. This information is essential when the relation between depth and thickness has to be taken into account. As shown here, the stresses near the free boundary are relevant for failure considerations, for example due to the presence of debris in thin plates or sheets. An analog statement can be made for blind-holes made to fasten metal sheets with bolts or hollows for human prosthesis
机译:平行使用三维光弹性分析和交互式有限元程序包分析薄板中盲孔根部的应力分布。通过应力冻结法进行了实验分析。使用通过实验获得的材料特性作为输入,使用ABAQUS商业代码执行FEM分析。结果表明,最大应力分布出现在三个区域:第一个在盲孔的开始;第二个在盲孔的开始。第二个在根部开始形状的过渡区域;这些结果有望根据其功能改进盲孔设计。与单独使用每种方法相比,实验方法和数值方法的组合使用提供了更多的信息。当必须考虑深度和厚度之间的关系时,此信息必不可少。如此处所示,自由边界附近的应力与故障考虑有关,例如由于薄板或薄板中存在碎屑。可以用类似的说法来制作盲孔,该盲孔用于通过螺栓或空心物固定人体假体的金属板

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