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Development of Failure Prediction Models for Structural Sealant Glazing Systems under Cyclic Racking Displacement Conditions

机译:循环机架位移条件下结构密封胶玻璃系统失效预测模型的开发

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A research project was undertaken recently at Penn State University to study the simulated seismic performance of “Structural Sealant Glazing” (SSG) used to adhere glass panels to common curtain wall framing systems. In the most common type of SSG curtain wall construction, referred to as “two-side” SSG, two glass panel edges (typically opposing vertical edges) are adhered to the support framing using structural sealant, while the other glass panel edges are mechanically fastened to the support framing. In this study, full-scale two-side SSG curtain wall mock-ups consisting of three, side-byside glass panels were subjected to cyclic racking displacements to characterize their performance and to identify sealant and glass component failure modes under serviceability and ultimate racking displacement conditions. Attempts were also made to develop kinematic-based models to predict failure states (e.g., structural sealant failure) of the SSG curtain walls. This paper discusses the details of the predictive model and its evaluation on the basis of comparisons with mock-up test data. The model developed appears to give good estimates of the observed sealant failure drift. Conclusions and recommendations regarding appropriateness and limitations of the predictive model are provided.
机译:宾夕法尼亚州立大学最近开展了一个研究项目,以研究用于将玻璃面板粘附到普通幕墙框架系统的“结构密封玻璃”(SSG)的模拟抗震性能。在最常见的SSG幕墙结构中,称为“两侧” SSG,使用结构密封胶将两个玻璃面板边缘(通常是相对的垂直边缘)粘附到支撑框架上,而其他玻璃面板边缘则通过机械方式固定到支持框架。在这项研究中,由三块并排玻璃面板组成的全尺寸双面SSG幕墙模型经受周期性的机架位移,以表征其性能,并确定在可维修性和最终机架位移下的密封胶和玻璃组件的破坏模式条件。还尝试开发基于运动学的模型以预测SSG幕墙的破坏状态(例如,结构密封胶破坏)。本文在与模拟测试数据进行比较的基础上,讨论了预测模型的细节及其评估。建立的模型似乎可以很好地估计观察到的密封胶失效漂移。提供了有关预测模型的适当性和局限性的结论和建议。

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