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首页> 外文期刊>Journal of Structural Engineering >Flexural Impact Performance of Stainless Steel–Lightweight Concrete Composites for Marine Structures
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Flexural Impact Performance of Stainless Steel–Lightweight Concrete Composites for Marine Structures

机译:不锈钢-轻质混凝土复合材料在海洋结构中的弯曲冲击性能

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Abstract The present study combines the advantages of both stainless steel and lightweight high-ductility cement composite (LHDCC) to develop a durable stainless steel–LHDCC composite for marine protective structures. Firstly, the study conducts an impact test program by the drop-hammer test machine to investigate the flexural impact performance of the composite beam. Three failure modes are captured: (1)?flexural failure with bond-slip of steel–concrete interface, (2)?flexural failure without bond-slip of steel–concrete interface, and (3)?shear failure. The dynamic responses including the impact force, reaction force, inertia force, and displacement responses are analyzed in detail. The effects of stud spacing, concrete core thickness, stud type, and concrete layer number on the impact response and failure mode are investigated. Then, the study adopts LS-DYNA to simulate the dynamic behavior of the composite beam under different impact load scenarios. The numerical results are in good agreement with the test results. The bending moment and shear distribution of the composite beam and the influences of impact momentum and impact energy on the dynamic responses are analyzed based on the FEM results. Finally, the study proposes a trilinear load-displacement relationship considering the effects of strain rate and degree of composite action, which is incorporated into the modified single-degree-of-freedom (SDOF) model to predict the impact responses. The results show that the predictive results can well reproduce the displacement-time response and peak displacement of the composite beam.
机译:摘要 本研究综合了不锈钢和轻质高延性水泥复合材料(LHDCC)的优点,开发了一种耐久的不锈钢-LHDCC复合材料。首先,利用落锤试验机进行冲击试验程序,考察组合梁的抗弯冲击性能;该文截取了3种破坏模式:(1)钢-混凝土界面粘结滑移的弯曲破坏、(2)钢-混凝土界面无粘结滑移的弯曲破坏和(3)剪切破坏。详细分析了冲击力、反作用力、惯性力和位移响应等动力响应。研究了螺柱间距、混凝土核心厚度、螺柱类型和混凝土层数对冲击响应和破坏模式的影响。然后,采用LS-DYNA技术模拟了不同冲击荷载情景下组合梁的动力行为;数值结果与试验结果吻合较好。基于有限元法结果分析了组合梁的弯矩和剪力分布以及冲击动量和冲击能量对动力响应的影响。最后,该研究提出了考虑应变速率和复合作用程度影响的三线性荷载-位移关系,并将其纳入改进的单自由度(SDOF)模型中,以预测冲击响应。结果表明,预测结果能够较好地再现组合梁的位移-时间响应和峰值位移。

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