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首页> 外文期刊>Journal of structural engineering >Compression Behavior of Nonslender Cylindrical Steel Members with Small and Large-Scale Geometric Imperfections
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Compression Behavior of Nonslender Cylindrical Steel Members with Small and Large-Scale Geometric Imperfections

机译:具有小型和大型几何缺陷的非细长圆柱钢构件的压缩行为

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The compression behavior of cylindrical steel members is affected by geometric imperfections resulting from manufacturing, handling, and damage during installation and service. This paper summarizes the full-scale laboratory tests and the finite element simulations to quantify the effects of both small-scale global and large-scale local geometric imperfections on the compression behavior of nonslender cylindrical steel members. Systematic measurements of the small- and large-scale imperfections on 300-mm internal diameter pipe specimens with 6.17-mm wall thickness were used to characterize the imperfections for nonlinear finite element simulations of axial compression. Excellent agreement is shown between the analytical results and the detailed force, deformation, and strain measurements on the test specimens loaded well beyond their peak loads. The analytical and experimental results are summarized for the load reduction effects of the global imperfections as a function of the amplitude, expressed as a percentage of the wall thickness, and the various patterns of the local surface imperfections. Recommendations are made with respect to the imperfection effects on the compression load capacity, methods of modeling the imperfections, and the implications with respect to the design, inspection, and the serviceability decisions in the field.
机译:圆柱形钢构件的压缩行为受制造,搬运以及安装和维修期间损坏造成的几何缺陷的影响。本文总结了全面的实验室测试和有限元模拟,以量化小规模的整体和大型局部几何缺陷对细长钢构件的压缩行为的影响。系统测量了300毫米内径壁厚为6.17毫米的内径管样品上的小尺寸和大型缺陷,以表征轴向压缩的非线性有限元模拟中的缺陷。在远远超过峰值载荷的试样上,分析结果与详细的力,变形和应变测量结果之间显示出极好的一致性。总结了分析和实验结果,这些缺陷是振幅的函数,表示整体缺陷的负荷降低效果,以壁厚的百分比表示,还显示了局部表面缺陷的各种形式。针对压缩载荷能力的缺陷影响,缺陷建模方法以及对现场设计,检查和可维修性决策的影响,提出了一些建议。

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