Coupled deformation behavior analysis for the glass panel in unitized hidden-frame supported glass curtain wall system

2021 ◽  
Vol 244 ◽  
pp. 112782
Author(s):  
Yuan Yuan ◽  
Yifei Zhou ◽  
Lixin Wang ◽  
Zhirui Wu ◽  
Wenbai Liu ◽  
...  
2020 ◽  
Vol 2020 ◽  
pp. 1-13
Author(s):  
Danguang Pan ◽  
Kun Jiang ◽  
Xichen Zhang ◽  
Ying Huang

The structural sealant glazing system is widely used in glass curtain wall worldwide. However, due to the aging of the sealants, cracking may form along the sides of the glass. If the panel of curtain wall arises, delamination may occur and induce failure or loss of the system. In order to detect the delamination of the sealant, in this paper, a new vibration-based damage identification method is proposed by using the difference between the predamage and postdamage driving-point accelerance (DA). This detection method would require only one acceleration sensor on a glass panel and a rubber hammer, which operates very conveniently. When the rubber hammer taps the glass panel near the acceleration sensor, the glass curtain wall panel would generate acceleration response which can be measured by the acceleration sensor. The measured acceleration responses will be used to calculate the DA and lead to a new delamination index, called relative accumulative difference of DA, which will give indications on the potential delamination of the sealant. In addition, the influence of the acceleration sensor installation position was analysed by the finite element method, and the optimal sensor location was determined to be at the intersection of the long-side quarter and the short-side quarter. Nine cases on various delamination severities were identified by the new method, as well as the natural frequency reduction and modal assurance criterion. The laboratory experiments showed that the relative accumulative difference of DA is extremely sensitive to sealant delamination. Even if delamination severity was only 6.39%, the relative accumulative difference of DA would be larger than 18%. As the delamination of the sealant progresses, the relative accumulative difference of DA increases, resulting in an effective detection method for sealant delamination of the structural sealant glazing system. The fundamental frequency reduction is suitable to identify relatively large delamination, and the modal assurance criterion of higher modes is also sensitive to sealant delamination.


2011 ◽  
Vol 255-260 ◽  
pp. 580-586
Author(s):  
Zhi Peng Huo ◽  
Cheng Wei Huang ◽  
Guang Jie Zhang

Based on elastic mechanics, this article deduced the theoretical value of the maximum stress and maximum deflection of sheet structure which was applied on point supported glass curtain wall structure, and figure out the stress and deflection values by calculation example. After that by simulating the structure with the finite element software ANSYS we drew the cloud atlas of stress and deflection values which we analyzed and compared with the theoretical values. Finally we can work out the error between the theoretical values and simulate value and analysis it.


2012 ◽  
Vol 256-259 ◽  
pp. 888-891
Author(s):  
Hui Ling Meng ◽  
Li Xia Si

The selection and arrangement structure is the starting point of glass curtain wall building structure design. On the basis of the structural partition types, the paper discusses the various structural system which be used in engineering in detail. Especially introduces the reasonable layout of the beam system, truss system, framework, arch structure, space truss system, suspension system and so on. Finally, the basic principles and key points of the connection glass curtain wall system structure are also discussed in the paper.


2010 ◽  
Vol 44-47 ◽  
pp. 2534-2538 ◽  
Author(s):  
Na Wang ◽  
Juan Rong Ma ◽  
Hai Bo Liu

The influence of structural sealant on mechanical behavior of hidden frame curtain wall was analyzed by using uniform negative pressure tests. The glass panel used in hidden frame curtain specimen is monolithic toughened glass. The dimension of the glass panel is 1000mm×1000mm and its thickness is 6mm. The dimensions of structural sealant in the three specimens are 9mm×8mm, 12mm×8mm and 15mm×8mm respectively. Test results indicated that the maximal principle stress and deflection of every test point increased linearly with the increasing of the uniform load from 0.5kPa to 2.0kPa. The variable regulation of maximal principle stress and deflection was not linear relation with the increasing of adhesive width. Through test and result discussion, the size effect of structural sealant on the hidden frame curtain wall system was summarized.


2016 ◽  
Vol 16 (4) ◽  
pp. 137-142
Author(s):  
Ji Tae Kim ◽  
Sung Won Kim ◽  
Kun Hyuk Sung ◽  
Dong Jun Kim ◽  
Hong Sun Ryou

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