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Numerical investigation on strength design and curling effect of mechanically fastened joints in cold-formed austenitic stainless steel

机译:冷弯奥氏体不锈钢中机械固定接头的强度设计和卷曲效果的数值研究

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A variety of parametric studies utilizing the finite element analysis (FEA) have been performed by Kim et al in order to predict the mechanical behavior (ultimate strength) of single shear bolted joints in cold-formed (thin-walled) stainless steel sheet. Strength equations considering the strength reduction by curling effect in bolted joint with long end distance and edge distance have been suggested. The applicability of numerical fracture analysis has been already verified through the comparisons of ultimate strength and curling occurrence between the test results conducted by Kuwamura et al. and FEA results. The precedent researches have been conducted with respect to the mechanical behaviors of single shear bolted joints fabricated with four bolts (2 columns x 2 rows bolt arrangement) and two bolts (1 column x 2 rows bolt arrangement) for extended variables such as plate thickness, end distance parallel to the direction of load and edge distance perpendicular to the direction of load. Subsequently, this study has been focused on the ultimate behaviors and the influence of curling on ultimate strength in bolted joints fabricated with one bolt. FE models are assumed with varying end distance, edge distance and plate thickness. It is found that the design manual of Stainless Steel Building Association of Japan (SSBA) is more reasonable for estimating the ultimate strengths of bolted joints with no curling compared with ultimate strengths predicted by American Society of Civil Engineers (ASCE) standard or American Iron and Steel Institute (AISI) standard (North American specification). Whereas, for fastened joints with severe local buckling or out of plane deformation( hereafter, curling) like previous results about other bolt arrangements, even SSBA manual tended to overestimate the ultimate strength of joint. Also, it has been known that the conditions of curling occurrence differ from the above stated variables. Therefore, revised strength equations considering the strength reduction by curling for one bolted joint were suggested in this paper.
机译:Kim等人已经进行了多种利用有限元分析(FEA)进行的参数研究,以预测冷弯(薄壁)不锈钢薄板中单剪切螺栓连接的机械性能(最终强度)。提出了考虑端部距离和边缘距离较长的螺栓连接中因卷曲效应而降低强度的强度方程。通过对Kuwamura等人进行的测试结果之间的极限强度和卷曲发生的比较,已经验证了数值断裂分析的适用性。和FEA结果。关于用四个螺栓(2列x 2行螺栓布置)和两个螺栓(1列x 2行螺栓布置)制造的单剪切螺栓连接接头的机械性能进行了先例研究,以扩展诸如板厚,平行于载荷方向的末端距离和垂直于载荷方向的边缘距离。随后,这项研究集中于用一个螺栓制造的螺栓连接的极限行为和卷曲对极限强度的影响。假定有限元模型具有变化的端距,边距和板厚。结果发现,与美国土木工程师协会(ASCE)标准或美国铁和钢所预测的极限强度相比,日本不锈钢建筑协会(SSBA)的设计手册对于估算无卷曲的螺栓连接的极限强度更为合理。钢铁协会(AISI)标准(北美规范)。相对于先前关于其他螺栓布置的结果,对于具有严重局部屈曲或平面变形(以下称卷曲)的紧固接头,即使SSBA手册也倾向于高估接头的极限强度。另外,已知卷曲发生的条件与上述变量不同。因此,本文提出了一种修正的强度方程式,该方程式考虑了一个螺栓连接处因卷曲而导致的强度降低。

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