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Seismic Racking Test Evaluation of Silicone Used in a Four-Sided Structural Sealant Glazed Curtain Wall System

机译:四面结构密封胶上使用的硅胶的地震架架试验评价釉面窗帘墙系统

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This paper presents the results of a study in which four-sided structural sealant glazing (SSG) insulating glass curtain wall units were subjected to cyclic racking test methods in accordance with AAMA 501.6 testing protocols. The test configuration included three side-by-side primary units and a corner unit. High-resolution cameras were utilized to capture instantaneous images during the racking test so that the displacement within the sealant joint could be captured and isolated from the displacement of the entire glazed unit. Drift capacity of the system in terms of glass attachment and sealant performance is reported in detail for different levels of racking displacements and boundary conditions. The overall behavior of the system is characterized, and specifically the sealant performance at a corner condition during racking drift is discussed. Additionally, expected strains in the sealant were calculated using a linear-elastic finite element model and were then compared with the strains the actual structural sealant joint underwent during system testing. Silicone sealant damage was evaluated using visual observation before and after cyclic racking. The paper discusses proposed acceptable sealant stress levels for seismic design and the durability of silicone used in the SSG system as compared to dry-glazed systems based on glass performance.
机译:本文介绍了一种研究的结果,其中根据AAMA 501.6测试协议对四面结构密封胶上玻璃(SSG)绝缘玻璃幕墙单元进行循环架架试验方法。测试配置包括三个旁边主单元和角部。利用高分辨率摄像机在栅栏测试期间捕获瞬时图像,使得可以从整个上釉单元的位移捕获和隔离密封胶关节内的位移。在玻璃附着和密封剂性能方面,系统的漂移能力有详细地报告了不同水平的机架位移和边界条件。讨论了系统的整体行为,具体地,讨论了在栅栏漂移期间的角条件下的密封剂性能。另外,使用线性弹性有限元模型计算密封剂中的预期菌株,然后与在系统测试期间进行的实际结构密封剂关节进行比较。使用循环架之前和之后评估有机硅密封剂损坏。本文讨论了与基于玻璃性能的干釉系统相比,拟议的地震设计和SSG系统中使用的硅酮的耐久性的可接受的密封剂应力水平。

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