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Development of analytical and numerical models for predicting the mechanical properties of structural adhesives under curing using the PZT-based wave propagation technique

机译:基于PZT基波传播技术的预测性分析和数值模型的研制

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摘要

Structural adhesives are commonly used as bonding agents in fibre-reinforced polymer based strengthening systems for concrete structures. The effectiveness and integrity of the bonding layer can be ascertained by monitoring the stiffness and strength development of the structural adhesive throughout the curing process. Previous studies have shown that the piezoelectric-based wave propagation (WP) technique is a viable technology for such monitoring. While there is a limited number of experimental data that verifies the technology, there are no known modelling studies. This paper therefore reports the first analytical and numerical modelling study for the WP technique in monitoring the curing process of structural adhesives. An experimental program is also reported to support the modelling. Tests are firstly conducted with the WP technique to obtain the pressure wave (P-wave) velocity. Tensile tests are then conducted to determine the ultimate tensile strength and static modulus of elasticity of the structural adhesives. Based on the P-wave velocity, the dynamic modulus of elasticity can be evaluated analytically from the elastic wave equation as well as numerically through model updating with the development of a three-dimensional coupled field finite element model. Finally, semi-analytical and semi-numerical relationships are established to predict the ultimate tensile strength of the structural adhesives from the P-wave velocity. This proof-of-concept study shows that the WP technique is capable of continuous and real-time monitoring of the curing process of structural adhesives. With the aid of the models, the WP technique can potentially eliminate the need to conduct destructive tensile tests. (C) 2019 Elsevier Ltd. All rights reserved.
机译:结构粘合剂通常用作混凝土结构的纤维增强聚合物的加强系统中的粘合剂。通过监测整个固化过程中结构粘合剂的刚度和强度发展,可以确定粘合层的有效性和完整性。以前的研究表明,基于压电的波传播(WP)技术是这种监测的可行技术。虽然有一个有限数量的实验数据来验证技术,但没有已知的建模研究。因此,本文报告了WP技术在监测结构粘合剂的固化过程中的第一个分析和数值建模研究。还报告了实验计划来支持建模。首先用WP技术进行测试以获得压力波(P波)速度。然后进行拉伸试验以确定结构粘合剂的最终拉伸强度和静态弹性模量。基于P波速度,通过与三维耦合场有限元模型的开发的模型更新,可以通过弹性波方程分析地从弹性波方程进行分析地评估动态弹性模量。最后,建立半分析和半数学关系,以预测来自P波速度的结构粘合剂的最终拉伸强度。该概念证明研究表明,WP技术能够连续和实时监测结构粘合剂的固化过程。借助模型,WP技术可能会消除进行破坏性拉伸试验的需要。 (c)2019 Elsevier Ltd.保留所有权利。

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