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Ultrasonic Nondestructive Characterization of Porous Materials.

机译:多孔材料的超声非破坏性表征。

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摘要

Wave propagation in porous media is studied in a wide range of technological applications. In the manufacturing industry, determining porosity of materials in the manufacturing process is required for strict quality control. In the oil industry, acoustic signals and seismic surveys are used broadly to determine the physical properties of the reservoir rock which is a porous media filled with oil or gas. In porous noise control materials, a precise prediction of sound absorption with frequency and evaluation of tortuosity are necessary. Ultrasonic nondestructive methods are a very important tool for characterization of porous materials.;The dissertation deals with two types of porous media: materials with relatively low and closed porosity and materials with comparatively high and open porosity. Numerical modeling, Finite Element simulations and experimental characterization are all discussed in this dissertation.;First, ultrasonic scattering is used to determine the porosity in porous media with closed pores. In order get a relationship between the porosity in porous materials and ultrasonic scattering independently and to increase the sensitivity to obtain scattering information, ultrasonic imaging methods are applied and acoustic waves are focused by an acoustic lens. To verify the technique, engineered porous acrylic plates with varying porosity are measured by ultrasonic scanning and ultrasonic array sensors.;Secondly, a laser based ultrasonic technique is explored for predicting the mechanical integrity and durability of cementitious materials. The technique used involves the measurement of the phase velocity of fast and slow longitudinal waves in water saturated cement paste. The slow wave velocity is related to the specimen's tortuosity. The fast wave speed is dependent on the elastic properties of porous solid. Experimental results detailing the generation and detection of fast and slow wave waves in freshly prepared and aged water-saturated cement samples with varying water-to-cement ratios are presented in the dissertation.;The third part concerns the ultrasonic characterization of air-saturated porous materials. Using airborne reflected and transmitted ultrasonic experimental data, the open porosity and tortuosity value of a porous acrylic plate with graded void content and a polyimide foam are determined simultaneously. Experimental and numerical results of the method are presented.
机译:在广泛的技术应用中研究了多孔介质中的波传播。在制造业中,为了严格的质量控制,需要确定制造过程中材料的孔隙率。在石油工业中,声波信号和地震勘测被广泛用于确定储层岩石的物理性质,该储层岩石是充满石油或天然气的多孔介质。在多孔噪声控制材料中,必须准确预测随频率的吸声并评估曲折度。超声非破坏性方法是表征多孔材料的非常重要的工具。本文涉及两种类型的多孔介质:孔隙率较低和封闭的材料以及孔隙率较高和开放的材料。本文主要讨论了数值模拟,有限元模拟和实验表征。首先,利用超声散射法确定具有封闭孔的多孔介质的孔隙度。为了独立地获得多孔材料中的孔隙率和超声散射之间的关系,并增加灵敏度以获得散射信息,应用了超声成像方法,并通过声透镜聚焦声波。为了验证该技术,通过超声扫描和超声阵列传感器测量了具有变化的孔隙率的工程多孔丙烯酸板。所使用的技术涉及测量水饱和水泥浆中快,慢纵波的相速度。慢波速度与样本的曲折度有关。快速的波速取决于多孔固体的弹性。论文详细介绍了在水灰比不同的情况下,新制备和老化的水饱和水泥样品中快波和慢波的产生和检测的实验结果。第三部分是空气饱和多孔体的超声表征材料。利用机载反射和透射的超声实验数据,可以同时确定具有渐变空隙含量的多孔丙烯酸板和聚酰亚胺泡沫的开孔率和曲折度。给出了该方法的实验和数值结果。

著录项

  • 作者

    Yang, Ningli.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Engineering Mechanical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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