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Effect of single circular perforation in lean duplex stainless steel (LDSS) hollow circular stub columns under pure axial compression

机译:纯双轴压缩稀薄双相不锈钢(LDSS)空心圆柱短柱中的单圆孔效应

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摘要

This study presents the effect of various geometrical parameters of circular single perforation on the critical/ultimate buckling load of a circular lean duplex stainless steel (LDSS) stub column loaded axially using finite element (FE) software, Abaqus. The effect of eccentricity (distance between the perforation centre and edge of column), hole diameter and column thickness are studied on the critical buckling load capacity. The decrease of buckling load when perforation size (d/D) is increased from 0.02 to 0.20 is found to be 13.9%, 13.5%, 12.0%, 10.1%, 8%, respectively, for perforation eccentricities (e/i) of 0.5, 0.4, 0.3, 0.2 and 0.1, indicating maximum reduction of buckling load when the perforation is located at mid-height (or e/L=0.5). For lower values of d/D (say 0.02), there is no significant effect of perforation on the buckling load for all values of eccentricities considered. With ~72% increase in thickness (from t=2.75), the buckling load is found to increase by -5.0%, 4.2%, 3.2%, 1.2%, 0.3%, 0% for d/D=0.20, 0.12, 0.10, 0.08, 0.04, 0.02, respectively, with the rate of increase higher for higher d/D ratios.
机译:这项研究介绍了圆形单孔的各种几何参数对使用有限元(FE)软件轴向加载的圆形贫双相不锈钢(LDSS)短柱的临界/最终屈曲载荷的影响。研究了偏心率(穿孔中心与圆柱边缘之间的距离),孔直径和圆柱厚度对临界屈曲承载能力的影响。当穿孔偏心度(e / i)为0.5时,将穿孔尺寸(d / D)从0.02增加到0.20时屈曲载荷的减少分别为13.9%,13.5%,12.0%,10.1%,8%。分别为0.4、0.3、0.2和0.1,表示当穿孔位于中高度(或e / L = 0.5)时,最大屈曲载荷减小。对于较低的d / D值(例如0.02),对于所有考虑的偏心率值,穿孔对屈曲载荷均无明显影响。随着厚度增​​加约72%(从t = 2.75开始),对于d / D = 0.20、0.12、0.10,屈曲载荷增加了-5.0%,4.2%,3.2%,1.2%,0.3%,0%。分别为0.08、0.04和0.02,对于更高的d / D比,增加速度更高。

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