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Impact and Post-Impact Performance of Sandwich Wall Boards with GFRP Face Sheets and a Web-Foam Core: The Effects of Impact Location

机译:带有GFRP面板和腹板泡沫芯的夹芯墙板的冲击和冲击后性能:冲击位置的影响

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摘要

In recent years, load-bearing exterior sandwich wall boards have been adopted in civil engineering. The exterior walls of structures are often exposed to low velocity impacts such as stones, tools, and windborne debris, etc. The ultimate loading capacity, deformation, and ductility of sandwich walls are weakened by impact loads. In this study, the sandwich wall boards consisted of glass fiber reinforced plastic (GFRP) face sheets and a web-foam core. The core of wall boards was not the isotropic material. There was no doubt that the mechanical performance was seriously influenced by the impact locations. Therefore, it is necessary to carry out an investigation on the impact and post-impact performance of exterior wall boards. A comprehensive testing program was conducted to evaluate the effects of impact locations and impact energies on the maximum contact load, deflection, and contact time. Meanwhile, the compression after impact (CAI) performance of wall boards were also studied. The results indicated that the impact location significantly affects the performance of wall boards. Compared with an un-damaged wall board, the residual ultimate loading capacity of damaged wall boards reduced seriously, which were not larger than 50% of the designed ultimate loading capacity.
机译:近年来,承重外墙夹层墙板已在土木工程中采用。结构的外墙经常受到低速冲击,例如石头,工具和风中的碎屑等。夹心墙的极限承载能力,变形和延性会因冲击载荷而减弱。在这项研究中,夹心墙板由玻璃纤维增​​强塑料(GFRP)面板和网状泡沫芯组成。墙板的核心不是各向同性材料。毫无疑问,机械性能会受到冲击位置的严重影响。因此,有必要对外墙板的冲击和冲击后性能进行研究。进行了全面的测试程序,以评估冲击位置和冲击能量对最大接触载荷,挠度和接触时间的影响。同时,还研究了墙板的冲击后压缩(CAI)性能。结果表明,撞击位置显着影响墙板的性能。与未损坏的墙板相比,损坏的墙板的剩余极限极限承载力大大降低,不超过设计极限极限承载力的50%。

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