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Structural Health Monitoring Methods for the Evaluation of Prestressing Forces and Prerelease Cracks

机译:用于评估预应力和预释放裂缝的结构健康监测方法

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Prestressed concrete bridges currently account for 45% of bridges built in the last five years in the United States. This has resulted in an increase in the number of deficient bridges composed of prestressed concrete, which requires a better understanding of the on-site performance of this building material. The use of new materials, such as high performance concrete, in conjunction with prestressing provides additional motivation for the creation of structural health monitoring (SHM) methods for prestressed concrete. This paper identifies two parameters relevant to prestressed concrete, along with methods for their evaluation. The parameters evaluated are the prestressing force value at transfer and the width of pre-release cracks, both of which are indicators of structural performance. Improper transfer of the prestressing force can result in tensile stresses in the concrete that exceed capacity and result in cracks and/or excessive deflections. Pre-release cracks occur in the concrete prior to transfer of the prestressing force and are mainly caused by autogenous shrinkage and thermal gradients. Closure of the cracks is expected by virtue of prestressing force transfer. However, the extent of crack closure is important in order to guarantee durability and structural integrity. This paper presents an integral overview of two novel methods for the statistical evaluation of the two monitored parameters: prestressing forces and the width of pre-release cracks. Validation of the methods is performed through application to two structures, both of which are components of Streicker Bridge on the Princeton University campus. Uncertainties are evaluated and thresholds for unusual behavior are set through the application.
机译:预应力混凝土桥梁目前占美国最近五年建造的桥梁的45%。这导致由预应力混凝土组成的不足桥梁的数量增加,这就需要更好地了解这种建筑材料的现场性能。将新材料(例如高性能混凝土)与预应力结合使用,为创建用于预应力混凝土的结构健康监测(SHM)方法提供了更多动力。本文确定了与预应力混凝土有关的两个参数,以及它们的评估方法。评估的参数是传递时的预应力值和预释放裂缝的宽度,这两者都是结构性能的指标。预应力的传递不当会导致混凝土中的拉应力超过承载能力,并导致开裂和/或过度挠曲。预释放裂纹在传递预应力之前在混凝土中发生,并且主要由自生收缩和热梯度引起。借助于预应力传递可以预期裂缝的闭合。但是,裂纹闭合的程度对于保证耐用性和结构完整性很重要。本文提供了两种新颖方法的整体概述,用于对两个监测参数进行统计评估:预应力和预释放裂缝的宽度。通过对两个结构的应用来验证方法的有效性,这两个结构都是普林斯顿大学校园内Streicker Bridge的组成部分。通过应用程序评估不确定性并设置异常行为的阈值。

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