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Experimental and numerical investigation of the shear behavior of steel-plate composite (SC) beams without shear reinforcement

机译:无剪增强钢板组合(SC)梁抗剪性能的试验和数值研究

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Experimental and numerical investigations were conducted to evaluate the out-of-plane shear behavior of steel-plate composite (SC) beams without shear reinforcement. The parameters considered in the experimental investigations were the section depth, steel faceplate (longitudinal) reinforcement ratio, shear span-to-depth ratio and shear connector (stud anchor) spacing. The experimental results are presented along with discussions of flexural cracking, crack progression, shear crack formation, shear force displacement behavior, shear force-strain measurements and the final failure mode. The experimental results indicate that section depth has a slight influence on the shear cracking behavior, and stud anchor spacing has a significant influence on the overall failure mode. The shear strength of SC beams increased with larger longitudinal reinforcement ratio, and decreased with larger shear span-to-depth ratio. The lower bound out-of-plane shear strength occurred for SC beams with span-to-depth ratios greater than 3.0. The experimental results compared conservatively with the nominal out-of-plane shear strengths calculated using equations in ACI 349M and Eurocode 2 code provisions for reinforced concrete beams, and equations in AISC N690-12s1 code provisions for steel-plate composite beams. Detailed 3D nonlinear inelastic finite element (NIFE) models were developed and analyzed to gain additional insight into the out-of-plane behavior and failure of the tested specimens. The models were benchmarked by comparing numerical predictions with experimental results and observations. The benchmarked models are recommended for conducting numerical parametric studies, and expanding the knowledge base. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了实验和数值研究,以评估无剪切增强的钢板复合材料(SC)梁的平面外剪切性能。实验研究中考虑的参数是截面深度,钢面板(纵向)增强比,剪切跨度与深度之比和剪切连接器(双头锚)间距。给出了实验结果,并讨论了弯曲裂纹,裂纹进展,剪切裂纹形成,剪切力位移行为,剪切力-应变测量和最终破坏模式。实验结果表明,截面深度对剪切开裂行为影响不大,而螺柱锚固间距对整体破坏模式有重要影响。 SC梁的抗剪强度随着纵向增强比的增大而增加,而随着跨度-深度比的增大而减小。跨度与深度之比大于3.0的SC梁出现下界平面外剪切强度。实验结果与ACI 349M和Eurocode 2规范中用于钢筋混凝土梁的方程式以及AISC N690-12s1规范中用于钢板复合梁的方程式所计算的名义面外抗剪强度进行了保守比较。开发并分析了详细的3D非线性非弹性有限元(NIFE)模型,以进一步了解被测样品的平面外行为和破坏。通过将数值预测与实验结果和观察结果进行比较,对模型进行了基准测试。建议使用基准测试模型进行数值参数研究和扩展知识库。 (C)2016 Elsevier Ltd.保留所有权利。

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