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Cement-based piezoelectric ceramic composites for sensor applications in civil engineering.

机译:用于土木工程传感器的水泥基压电陶瓷复合材料。

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摘要

The objectives of this thesis are to develop and apply a new smart composite for the sensing and actuation application of civil engineering. Piezoelectric ceramic powder is incorporated into cement-based composite to achieve the sensing and actuation capability.; The research investigates microstructure, polarization and aging, material properties and performance of cement-based piezoelectric ceramic composites both theoretically and experimentally. A hydrogen bonding is found at the interface of piezoelectric ceramic powder and cement phase by IR (Infrared Ray), XPS (X-ray Photoelectron Spectroscopy) and SIMS (Secondary Ion Mass Spectroscopy). It largely affects the material properties of composites. A simple first order model is introduced to explain the poling mechanism of composites and the dependency of polarization is discussed using electromechanical coupling coefficient kt. The mechanisms acting on the aging effect is explored in detail.; Dielectrical, piezoelectric and mechanical properties of the cement-based piezoelectric ceramic composites are studied by experiment and theoretical calculation based on modified cube model (n=1) with chemical bonding . A complex circuit model is proposed to explain the unique feature of impedance spectra and the instinct of high-loss of cement-based piezoelectric ceramic composite.; The sensing ability of cement-based piezoelectric ceramic composite has been evaluated by using step wave, sine wave, and random wave. It shows that the output of the composite can reflects the nature and characteristics of mechanical input.; The work in this thesis opens a new direction for the current actuation/sensing technology in civil engineering. The materials and techniques, developed in this work, have a great potential in application of health monitoring of buildings and infrastructures.
机译:本文的目的是为土木工程的传感和驱动应用开发和应用一种新型的智能复合材料。压电陶瓷粉末被掺入水泥基复合材料中,以实现传感和驱动能力。该研究从理论上和实验上研究了水泥基压电陶瓷复合材料的微观结构,极化和时效,材料性能和性能。通过IR(红外线),XPS(X射线光电子能谱)和SIMS(二次离子质谱)在压电陶瓷粉末和水泥相的界面处发现氢键。它在很大程度上影响复合材料的材料性能。介绍了一个简单的一阶模型来解释复合材料的极化机理,并使用机电耦合系数kt讨论了极化的相关性。详细探讨了影响衰老的机制。通过基于化学键的改进立方模型(n = 1)的实验和理论计算,研究了水泥基压电陶瓷复合材料的介电,压电和力学性能。提出了一个复杂的电路模型来解释阻抗谱的独特特征和水泥基压电陶瓷复合材料高损耗的本能。通过使用阶梯波,正弦波和随机波评估了水泥基压电陶瓷复合材料的感测能力。它表明复合材料的输出可以反映机械输入的性质和特征。本文的工作为当前的土木工程致动/传感技术开辟了一个新的方向。在这项工作中开发的材料和技术在建筑物和基础设施的健康监控应用中具有巨大的潜力。

著录项

  • 作者

    Dong, Biqin.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Engineering Civil.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 274 p.
  • 总页数 274
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:42:00

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