【24h】

Nondestructive Ultrasonic Characterization of Multilayer Coatings

机译:多层涂层的超声波无损表征

获取原文
获取原文并翻译 | 示例

摘要

Acoustic Microscopy is used to study the structure and properties of polymer coatings. In a multi-layer coating system, the reflection of an ultrasonic signal takes place at each interface. For thin coatings, the reflected signals from different interfaces superimpose and appear as a single reflected signal. The amplitude and the fine structure of the reflected signal depend on the material properties of the sample. To separate the reflected signal from different interfaces of the multi-layer coatings, the pulse length has to be shorter than the time of flight of the ultrasonic pulse through each layer. However, usually ultrasonic pulses are longer. The approach used here is to model the acoustic signal for different interfaces and compare the model signal with the signal recorded from the degraded coating. Due to thermal and environmental effect, the properties like acoustic impedance, density and thickness of the polymer coatings will change with time. This results in minor modifications of the shape of the reflected signal from a degraded coating. By using a calibrated scale for different kinds of coating properties, coating characteristics can be determined. This paper will discusses the application of the above method to characterize the degradation of aircraft coatings.
机译:声学显微镜用于研究聚合物涂层的结构和性能。在多层涂层系统中,超声信号的反射在每个界面处发生。对于薄涂层,来自不同界面的反射信号会叠加并显示为单个反射信号。反射信号的幅度和精细结构取决于样品的材料特性。为了从多层涂层的不同界面中分离出反射信号,脉冲长度必须短于超声波脉冲穿过每一层的飞行时间。但是,通常超声波脉冲较长。此处使用的方法是对不同界面的声学信号进行建模,并将模型信号与从降解涂层记录的信号进行比较。由于热和环境的影响,聚合物涂层的特性(如声阻抗,密度和厚度)将随时间变化。这导致涂层退化的反射信号的形状发生微小变化。通过将校准标尺用于不同种类的涂层特性,可以确定涂层特性。本文将讨论上述方法在表征飞机涂料退化方面的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号