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Sealant Delamination Detection of Structural Sealant Glazing Systems Based on Driving-Point Accelerance

机译:基于驱动点加速度的结构密封胶玻璃系统的密封剂分层检测

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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.
机译:结构密封胶上釉系统广泛用于全球玻璃幕墙。然而,由于密封剂的老化,裂缝可以沿着玻璃的侧面形成。如果出现幕墙的面板,可能会发生分层并诱导系统的失败或损失。为了检测密封剂的分层,在本文中,通过使用偏向和延迟驱动点加速(DA)之间的差异来提出了一种新的振动损伤识别方法。该检测方法仅在玻璃面板上仅需要一个加速度传感器和橡胶锤,其非常方便地操作。当橡胶锤击加速度传感器附近的玻璃面板时,玻璃幕墙面板将产生加速度响应,该加速度响应可以通过加速度传感器测量。测量的加速度响应将用于计算DA并导致新的分层指数,称为DA的相对累积差异,这将为潜在分层提供对密封剂的潜在分层的指示。此外,通过有限元方法分析加速度传感器安装位置的影响,并且确定了最佳传感器位置处于长边季和短边季的交叉点。通过新方法确定了各种分层狭窄的9例,以及自然频率减少和模态保障标准。实验室实验表明,DA的相对累积差异对密封剂分层非常敏感。即使分层严重程度仅为6.39%,DA的相对累积差异也大于18%。随着密封剂的分层进行,DA的相对累积差异增加,导致结构密封胶系统的密封分层的有效检测方法。基本频率降低适合识别相对较大的分层,更高模式的模态保证标准对密封剂分层也敏感。

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