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Effective Topology of Bolted Connections for Detecting Damage Using Guided Wave Ultrasonics

机译:用引导波超声波检测损坏的螺栓连接的有效拓扑

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摘要

Structures will eventually develop defects due to aging or overloading, which negatively affect the load-bearing capacity. In certain design details, defects are hidden and difficult to inspect with conventional inspection methods. It is important to introduce damage detection concepts into the earliest stage of structural design. Bolted connections in steel structures form the weakest link due to the risk of stress concentration, stress corrosion cracking, or galvanic corrosion between the connected elements, which cannot be seen visually. In conventional practice, bolts are placed based on the minimum and maximum spacing requirements guided by the American Institute of Steel Construction. In this paper, the periodic placement of bolts instead of irregular distribution was studied as improving the detectability of defects using guided wave ultrasonics. The periodic arrangement of bolts led to a unique frequency response that was utilized in the evaluation of connections based on the hypothesis that the periodic response was influenced by the presence of cracks or section loss. The frequency response curves depending on the bolt layout and topology were obtained numerically. The vibration mode influenced by the presence of defects was identified. The numerical results were validated with the scaled experiments. It was shown that the spatial distribution of bolts assists the damage detection ability, which can be considered as a design criterion of bolt distribution.
机译:结构最终将产生由于老化或过载引起的缺陷,这对承载能力产生负面影响。在某些设计细节中,隐藏缺陷且难以使用常规检查方法检查。重要的是将损坏检测概念引入结构设计的最早阶段。由于应力浓度,应力腐蚀裂缝或连接元件之间的电流腐蚀的风险,钢结构中的螺栓连接形成了最薄弱的连杆,这些连杆在视觉上不能看到的连接元件之间的电流腐蚀。在传统的实践中,基于美国钢铁建筑研究所引导的最小和最大间距要求,螺栓放置。本文研究了螺栓代替不规则分布的周期性放置,提高了使用引导波超声波的缺陷的可检测性。螺栓的周期性排列导致基于定期响应受裂或截面损失的存在影响的假设评估连接的唯一频率响应。根据螺栓布局和拓扑的频率响应曲线在数字上获得。鉴定了受缺陷存在影响的振动模式。用缩放的实验验证了数值结果。结果表明,螺栓的空间分布有助于损坏检测能力,这可以被认为是螺栓分布的设计标准。

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