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首页> 外文期刊>Engineering Structures >Developing a semi-active adjustable stiffness device using integrated damage tracking and adaptive stiffness mechanism
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Developing a semi-active adjustable stiffness device using integrated damage tracking and adaptive stiffness mechanism

机译:使用集成损伤跟踪和自适应刚度机制开发半主动可调刚度装置

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摘要

Recently, the passive negative stiffness device (PNSD) is used to decrease the shear force in the structure by providing an apparent yielding in the entire system. Usually, due to extreme environmental factors the structure is damaged which leads to disrupt the PNSD performance; so that, the shear force and permanent irreversible deformation increase remarkably in the structure. This study proposes a new controller and develops a semiactive adjustable stiffness device (SASD) based on the combination of a damage detection method and the semi-active control strategy. The stiffness of the SASD is retuned based on the identified damages in the structure. The performance of the proposed controller are evaluated through numerical examples. By comparing with passive and uncontrolled cases, results show that the SASD is robust against any changes in the structural characteristics of the system and effectively decreases the dynamic responses and the damage severity caused to the structure simultaneously.
机译:最近,通过在整个系统中提供表观屈服来降低结构中的被动负刚度装置(PNSD)来降低结构中的剪切力。通常,由于极端的环境因素,结构损坏,导致扰乱PNSD性能;因此,结构中剪切力和永久性不可逆变形增加。本研究提出了一种新的控制器,并基于损坏检测方法和半主动控制策略的组合来开发半视力可调刚度装置(SASD)。基于结构中所确定的损坏来重新调整SASD的刚度。通过数值示例评估所提出的控制器的性能。通过与被动和不受控制的情况进行比较,结果表明,SASD对系统结构特征的任何变化具有鲁棒,并且有效地降低了同时对结构引起的动态响应和损伤严重程度。

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