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STRUCTURAL MONITORING OF HYBRID SPECIMENS AT EARLY AGE USING FIBRE OPTIC SENSORS

机译:利用光纤传感器在早期杂交标本的结构监测

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Hybrid structures, notably bridges, consisting of steel girders and concrete decks, are designed to exploit in the best way the mechanical properties of both materials. In order to guarantee safe, durable and low-cost service of such structures, a long-term quality and a robust connection between steel and concrete must be guaranteed. Even if experience in construction, maintenance and exploitation of these structures is large, a good and long-lived connection remains a challenging point in their realisation. This is mainly due to the initial incompatibility in the dimensional behaviour of two materials: early and very early age deformations of concrete (thermal expansion and total shrinkage) generate stresses in both materials even before service and imperils their good interaction. With the intention of a better understanding and an accurate numerical modelling of the steel-concrete connection in hybrid structures, measurements are indispensable and, in particular the deformation evolution in both materials during the early and very early age of concrete. In this paper we present examples of this type of measurements, the monitoring of the total dimensional evolution of hybrid elements, the determination of hardening time of concrete and structural monolithisation and, indirectly, the determination of concrete's Young modulus evolution. An approach to concrete delamination detection is also assessed. All these parameters are evaluated using fibre optic sensors directly embedded in the fresh concrete or attached to steel elements. Their high accuracy, long-term stability and especially their ability to measure early and very early deformation of concrete are essential for monitoring of mentioned parameters.
机译:混合结构,特别是由钢梁和混凝土甲板组成的桥梁,旨在以最佳方式利用两种材料的机械性能。为了保证这种结构的安全,耐用,低成本的服务,必须保证长期质量和钢和混凝土之间的强大连接。即使在施工,维护和利用这些结构的经验也是很大的,良好和长期的连接仍然是实现实现的具有挑战性的。这主要是由于在两种材料的尺寸特性的初始不相容:混凝土(热膨胀和总收缩)的早期和年龄很小的变形产生在材料甚至在服务和危及他们的良好的相互作用的应力。随着杂交结构中钢混凝土连接更好地理解和准确的数值模型,测量是必不可少的,特别是在混凝土的早期和非常清晨的两种材料中的变形演变。本文介绍了这种类型的测量的实例,监测了混合元素的总尺寸演化,确定了混凝土和结构整体化的硬化时间,间接地,混凝土幼年模量的速度的确定。还评估了一种混凝土分层检测的方法。所有这些参数都使用直接嵌入新混凝土中的光纤传感器或连接到钢元件。它们的高精度,长期稳定性,特别是它们测量的早期和非常早期变形的能力对于监测提到的参数至关重要。

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