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Numerical study of basalt fibre cloth strengthened Structural Insulated Panel under windborne debris impact

机译:玄武岩纤维布加强结构绝缘板在风中的碎片冲击下的数值研究

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Strong winds happen around the world every year and cause enormous damages and losses. Besides large wind pressure, impact from windborne debris on building envelope is a major source of structural damage in strong winds. The debris lifted and carried by wind impacting on building envelop may create openings on building envelope which increase internal pressure of the building, and lead to roof lifting and even total building collapse. Preventing impact damage to structural wall and roof is therefore critical in extreme wind conditions. On the other hand Structural Insulated Panel (SIP) with Oriented Strand Board (OSB) skins is popularly used in the building industry. Previous studies revealed that such SIP panels had weak impact resistant capacity and do not meet the design requirements to resist windborne debris impact specified in Australian Standard (AS/NZS1170.2:2011) for their applications in cyclonic regions. To increase the capacity of such SIP panels against windborne debris impact, basalt fibre cloth was used to strengthen the panel. Laboratory tests found that SIP strengthened with basalt fibre cloth was effective in increasing its impact-resistant capacity. This paper presents the development of a reliable numerical model to predict the impact responses of basalt fibre cloth strengthened SIP panel in LS-DYNA. The accuracy of the numerical model is verified by comparing the numerical and experimental results. The validated numerical model provides a reliable tool to predict basalt fibre cloth strengthened SIPs.
机译:每年都在世界各地发生强风并导致巨大的损失和损失。除了大风力压力之外,来自Windborne碎片对建筑信封的影响是强风中结构损伤的主要来源。通过风击建筑包围的风举动和承载的碎屑可以在建筑物上产生开口,这增加了建筑物内部压力,导致屋顶升降,甚至完全建筑崩溃。因此,防止对结构壁和屋顶的影响损坏是极端风条件的关键。另一方面,具有定向股线(OSB)皮肤的结构绝缘板(SIP)普遍用于建筑业。以前的研究表明,这种啜饮板的抗冲击能力薄弱,不符合抵抗澳大利亚标准(AS / NZS1170.2:2011)中规定的风发碎片影响的设计要求,以便在旋风区中的应用。为了提高这种啜饮面板对Winnborne碎片影响的能力,使用玄武岩纤维布来加强面板。实验室试验发现,用玄武岩纤维布加固SIP有效地增加其抗冲击能力。本文介绍了可靠数值模型的开发,以预测玄武岩纤维布强化啜饮板在LS-DYNA中的影响响应。通过比较数值和实验结果来验证数值模型的准确性。经过验证的数值模型提供了一种可靠的工具来预测玄武岩纤维布强化啜饮。

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