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Non-destructive evaluation of carbon/carbon brakes using air-coupled ultrasonic inspection systems.

机译:使用空气耦合超声检查系统对碳/碳制动器进行无损评估。

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摘要

This thesis is focused on non-contact air-coupled ultrasonic Non-Destructive Evaluation (NDE) of Carbon-Carbon (C/C) disc brake materials. The minimum detectable defect size in the C/C composite disc brakes up to the maximum thickness of 1 7/16" (36.33 mm) using 120, 225 and 400 kHz transducers was investigated in the experimental section of this thesis. The effect of scanning increment step size on resolution of the final C-scan image was also investigated.;The results indicated that the 12.7 mm diameter flat bottom drilled holes were reliably detectable using 225 kHz transducers. The flat bottom drilled holes and the side drilled holes of 6.35 mm in diameter were detectable on the final C-scan images of 225 kHz testing mainly due to the known locations of the defects. Results showed that testing frequency of 120 kHz provides very transparent C-scans. Testing frequency of 225 kHz provides also good transparency and better resolution. Testing frequency of 400 kHz did not provide satisfactory results. No advanced signal filtering techniques were utilized during the experiments. The relationship between the speed of sound in C/C material and the carbon fiber orientation in the carbon matrix needs to be investigated.;The air-coupled ultrasonic testing of the C/C composite disc brake samples was conducted at the Center for Non-Destructive Evaluation at Iowa State University.
机译:本文主要研究碳/碳(C / C)盘式制动器材料的非接触空气耦合超声无损评估(NDE)。本文的实验部分研究了使用120、225和400 kHz换能器的C / C复合盘式制动器的最小可检测缺陷尺寸,最大厚度为1 7/16“(36.33 mm)。结果表明,使用225 kHz换能器可以可靠地检测到直径为12.7 mm的平底钻孔,平底钻孔和侧面钻孔为6.35 mm在225 kHz测试的最终C扫描图像上可以检测到直径的变化,主要是由于缺陷的已知位置,结果表明120 kHz的测试频率提供了非常透明的C扫描; 225 kHz的测试频率也提供了良好的透明度和更好的分辨率; 400 kHz的测试频率无法提供令人满意的结果;实验过程中未使用先进的信号滤波技术;声速之间的关系n需要对碳/碳材料和碳纤维在碳基质中的取向进行研究;在爱荷华州立大学无损评估中心对碳/碳复合盘式制动器样品进行了空气耦合超声测试。

著录项

  • 作者

    Stonawski, Ondrej.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Mechanical.;Engineering Materials Science.
  • 学位 M.S.
  • 年度 2008
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;
  • 关键词

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