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Additive manufacturing meta-functional composites for engineered bridge bearings: A review

机译:用于工程桥轴承的添加剂制造元功能复合材料:综述

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One of the most important causes of bridge failure is the design and structural deficiencies of bridge bearings. Recently, typical bridge bearings with the reinforcement of steel or fibre have been widely used in base isolation system. Especially for fibre-reinforced rubber bearings, they offer numerous benefits as higher stiffness and strength, more flexibility, and decrease of transport and fabrication costs. Under vibration, common bridge bearings cannot perform well and the materials used in the bearings cannot sustain under environmental conditions. To develop the performance of these common bearings to obtain their superior physical and mechanical properties (e.g. lightweight, higher stiffness, better impact resistence, and vibration attenuation), the use of metamaterials (periodic structures) in the bearings is considered for this reason. The current paper is the world's first to present a comprehensive, state-of-the-art overview of the development of meta-functional composites for bridge bearing applications, exposed to both static and dynamic conditions. Also, the paper shows an approach to fabricate meta-functional composite bridge bearings via additive manufacturing (AM) technologies. Furthermore, the numerical simulation has been conducted to enable new insights into the behavior of a meta-functional bridge bearing suitable for real-life practial applications. These insights are fundamental to the performance bench-marking including the development of vibration-based condition monitoring and inspection for predictive bridge component maintenance. (C) 2020 Elsevier Ltd. All rights reserved.
机译:桥梁故障最重要的原因之一是桥梁轴承的设计和结构缺陷。最近,典型的桥梁轴承具有加强钢或纤维的钢筋轴承已广泛用于基础隔离系统。特别是对于纤维增强橡胶轴承,它们提供众多好处,作为更高的刚度和强度,更灵活,以及运输和制造成本的降低。在振动下,公共桥轴承不能表现良好,轴承中使用的材料不能在环境条件下维持。为了开发这些普通轴承的性能,以获得其优异的物理和机械性能(例如,轻质,更高的刚度,更好的抗冲击和振动衰减),因此考虑了轴承中的超材料(周期性结构)的使用。目前的纸张是世界上第一个展示了全面的最先进的桥梁轴承应用的开发的概述,用于静态和动态条件。此外,本文显示了一种通过添加剂制造技术(AM)技术制造元功能复合桥轴承的方法。此外,已经进行了数值模拟,以使新的见解能够进入适用于现实生活实地应用的元功能桥轴承的行为。这些见解是性能台标的基础,包括开发基于振动的状态监测和预测桥接元件维护的检查。 (c)2020 elestvier有限公司保留所有权利。

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