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Acoustic emission applications to composite sandwich structures at room and low temperatures.

机译:在室温和低温下对复合夹层结构的声发射应用。

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摘要

This paper briefly states the results of experimental and numerical studies on the application of acoustic emission NDE to the fatigue behavior of composite sandwich (CS) beams at room temperature (RT) and low temperatures (down to -60 degree) with particular reference to the hull materials of ships which ply the Polar Regions. Four-point static and load-controlled fatigue bending tests were performed on PMI foam cored composite sandwich beams of the same dimensions but with two different skin materials (unidirectional carbon/epoxy and woven glass/epoxy). Effects of low temperatures on the flexural static behavior of the CS beam were observed from the increase in stiffness, strength, and elastic limit, and the decrease in the displacement to with decrease in temperature. Core shear was found to be the main failure mode under fatigue loading conditions at -60 degree, as early found by literature-reported room temperature studies. Brittle type core shear failure with notably increased useful 91 fatigue life increase manifested at lower temperatures for both types of CS beams. In this work, AE data was synchronously acquired as the mechanical test data, and AE parametric analysis, general joint time-frequency and especially wavelet transform techniques were applied to the data obtained from wide-band AE sensors. For both static and fatigue testing, all physically observed effects were portrayed very clearly by the AE parameters, which really gave insight into the characteristics of damage progression and the phenomena responsible for it. FEA models and analysis for the two types of CS beams revealed the effects of skin stiffness on the crack initiation location under fatigue loading conditions.
机译:本文简要介绍了将声发射NDE应用于室温(RT)和低温(低至-60度)的复合夹层(CS)梁的疲劳行为的实验和数值研究结果,特别是参考了在极地航行的船体材料。在具有相同尺寸但使用两种不同蒙皮材料(单向碳/环氧树脂和玻璃纤维/环氧树脂)的相同尺寸的PMI泡沫芯复合夹芯梁上进行了四点静态和受载荷控制的疲劳弯曲测试。从刚度,强度和弹性极限的增加,以及位移的减小到温度的降低,可以观察到低温对CS梁挠曲静态行为的影响。文献报道的室温研究早已发现,在-60度疲劳载荷条件下,岩心剪切是主要的破坏模式。两种类型的CS梁在较低温度下均表现出脆性型芯剪切破坏,且有用疲劳寿命显着延长,这表现为91。在这项工作中,同步获取AE数据作为机械测试数据,并将AE参数分析,通用联合时频,特别是小波变换技术应用于从宽带AE传感器获得的数据。对于静态和疲劳测试,通过AE参数可以非常清楚地描绘所有物理观察到的效果,这些参数确实使您能够深入了解损坏的进程特征和造成这种现象的现象。两种CS梁的FEA模型和​​分析表明,在疲劳载荷条件下,表皮刚度对裂纹萌生位置的影响。

著录项

  • 作者

    Deng, Feizhong.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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