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材料损伤的非线性超声评价研究进展
  • ISSN号:0023-074X
  • 期刊名称:《科学通报》
  • 时间:0
  • 分类:TB303[一般工业技术—材料科学与工程]
  • 作者机构:华东理工大学机械与动力工程学院,承压系统与安全教育部重点实验室,上海200237
  • 相关基金:国家杰出青年科学基金(51325504)资助
中文摘要:

非线性超声技术由于能够克服传统线性超声的不足,对于微纳尺度缺陷(如位错、微裂纹等)较为敏感,受到研究者的广泛关注.本文介绍了非线性超声技术检测材料损伤的基本原理;对传播过程中非线性超声波与材料微观结构相互作用的理论研究以及非线性超声技术检测、评估材料损伤的实验研究进展进行了综述;最后基于非线性超声损伤检测研究的现状对该技术进一步发展进行了展望.

英文摘要:

Generally speaking, damages and defects are inevitable with the operating life consuming of engineer structures. Engineer structures would fail or have to retire ultimately when their load bearing capacity is inadequate to accommodate the working load. It has been revealed that, to ensure the safety and reliability of components, it is essential to accurately evaluate the damages and defects during the service process. Frankly speaking, the traditional linear ultrasonic testing technology is not sensitive to micro-defects being large than 0.2 mm, which usually occur perior to 70%–80% of the material life. By contrast, the nonlinear ultrasonic testing based on the technology of ultrasonic harmonic method provides a possible way for the early evaluation of damages and defects. With the outstanding detective effectiveness and efficiency and high sentivitiy to micro-nano defects, such as dislocations, micro cracks, the nonlinear ultrasonic wave technology has attracted much attention in recent years. In this work, the evaluation of material damages using the nonlinear ultrasonic wave technology was reviewed systematically. Firstly, the basic principle of nonlinear ultrasonic wave technology in the detection of material damages was introduced. One-dimensional longitudinal wave was used as an example to describe how nonlinear ultrasonic wave was generated in damaged solids. Secondly, the interation between the propagating nonlinear ultrasonic wave and microstructures was marked. Three kinds of nonlinear utrasonic wave models were introduced, namely dislocation string models, dislocation dipole models and plastic-dependent models. The advantage and disadvantages of the existing models were discussed comparatively. After that, experimental studies on this topic are presented according to different types of material damage, such as tensile(or compressive) plastic damage, fatigue damage, thermal damage, creep damage, adhesive damage and other damages. Experimental results show that the nonlinear ultrasonic wave techn

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期刊信息
  • 《科学通报》
  • 北大核心期刊(2011版)
  • 主管单位:中国科学院
  • 主办单位:中国科学院
  • 主编:周光召
  • 地址:北京东黄城根北街16号
  • 邮编:100717
  • 邮箱:csb@scichina.org
  • 电话:010-64036120 64012686
  • 国际标准刊号:ISSN:0023-074X
  • 国内统一刊号:ISSN:11-1784/N
  • 邮发代号:80-213
  • 获奖情况:
  • 首届国家期刊奖,中国期刊方阵“双高”期刊,第三届中国出版政府奖
  • 国内外数据库收录:
  • 美国化学文摘(网络版),美国数学评论(网络版),美国工程索引,日本日本科学技术振兴机构数据库,中国中国科技核心期刊,中国北大核心期刊(2004版),中国北大核心期刊(2008版),中国北大核心期刊(2011版),中国北大核心期刊(2014版),中国北大核心期刊(2000版)
  • 被引量:81792