利用有限元分析单轴压缩条件下具有不同多边形不连续面的有限板中的应力集中因子

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Rashmiben H. Patel, Bhavesh P Patel
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引用次数: 0

摘要

几何或理论应力集中系数是不连续处的实际最大应力与标称应力之比。当结构部件的几何形状或材料不规则,导致应力流中断时,就会出现应力集中。这种情况产生于孔、槽、凹口和圆角等细节。详细了解孔洞周围的应力集中对于优化设计和抵御机械故障至关重要。因此,在结构设计中,必须研究结构中多边形不连续性的影响,以实现便捷高效的设计。本文假定平面应力状态和单轴压缩荷载,研究了有限结构钢板多边形孔周围的应力集中因子。本研究对带有多边形切口(三角形、正方形、五边形和六边形)的结构钢板中的应力集中进行了完整的有限元分析,与多边形孔的边长比、正方形孔的长度和高度比进行了对比。应力和 SCF 的递增顺序为正方形、三角形、五边形和六边形。由于多边形有更多的边与加载方向平行,而最小的角位于加载方向,因此方形孔产生的 SCF 比六边形孔少 40%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing Stress Concentration Factor in Finite Plate with Different Polygonal Discontinuities Under Uniaxial Compression Using FEM
A geometric, or theoretical, stress-concentration factor is the ratio of the actual maximum stress at the discontinuity to the nominal stress. Stress concentrations occur when there are irregularities in the geometry or material of a structural component that cause an interruption to the flow of stress. This arises from such details as holes, grooves, notches, and fillets. A detailed understanding of the stress concentration around the hole is essential for optimal design and resilience to mechanical failure. Therefore, in the design of structures, it is essential to study the effects of polygonal discontinuities in structures to achieve convenient and efficient designs. The current paper investigated the stress concentration factor around the polygonal holes in the finite structural steel plate, assuming a plane stress state and uniaxial compression loading. The present study provides a complete finite element analysis of stress concentrations in structural steel plates with polygonal cutouts (triangular, square, pentagonal, and hexagonal), in contrast to the side ratio of a polygonal hole, and the length, and height ratio of a square hole. The increasing order of stresses and SCF are square, triangular, pentagonal, and hexagonal. Due to the more edges of polygonal shapes parallel to the loading direction and minimum corners positioned in the direction of loading, a square-shaped hole produces 40% less SCF than a hexagonal-shaped hole.
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来源期刊
Jurnal Kejuruteraan
Jurnal Kejuruteraan ENGINEERING, MULTIDISCIPLINARY-
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