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Numerical Analysis of the Effect of Added Hole on the Stress Concentration of a Perforated Plate and Determining of Its Optimum Location

机译:添加孔对多孔板应力浓度的影响数值分析及其最佳位置

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The aim of this work was to investigate Stress Concentration Factor (SCF) variations induced by adding of holes in a perforated base plate subjected to uniaxial tension load, using Finite Element Method (FEM). Analyses were applied in 2D for different diameters, orientation angels and distances of added holes from the base hole. A parametric model in ANSYS finite element software was used to calculate the SCFs and the differences between SCFs have been shown in various graphs. To investigate the variation of SCF in perforated base plate, two holes with the same diameter were located symmetrically to the longitudinal axis with different angles and distances from the base hole. The results showed that by adding holes with a proper diameter, orientation angles and distances from the base hole, the SCFs can be reduced. Using the obtained graphs and corresponding to the base hole diameter the most adequate diameter and its position was determined. Obtained results for special statuses had a good agreement with the graphs of Peterson's stress concentration factors.
机译:这种作品的目的是研究通过使用有限元方法(FEM)在经受单轴张紧载荷的穿孔底板中加入孔的应力集中因子(SCF)变化。在2D中施加分析,用于不同的直径,取向天使和底座上添加的孔的距离。 ANSYS有限元软件中的参数模型用于计算SCFS,并且SCFS之间的差异已经显示在各种图形中。为了研究穿孔基板中SCF的变化,具有相同直径的两个孔对称地定位到纵向轴线,其具有不同的角度和距基部孔的距离。结果表明,通过将具有适当直径的孔,取向角和距基孔的距离,可以减少SCF。使用所获得的曲线和对应于基孔直径的最足够的直径和其位置。获得特殊状态的结果与Peterson的压力集中因素的图表有良好的一致性。

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