首页> 外文会议>Conference on thermosense >Lock-In Thermography: A tool to analyse and locate thermo-mechanical mechanisms in materials and structures
【24h】

Lock-In Thermography: A tool to analyse and locate thermo-mechanical mechanisms in materials and structures

机译:锁定热处理:一种分析和定位材料和结构热机理的工具

获取原文

摘要

This paper aims to illustrate the advantages of Lock-In Thermography (LIT) as a non-destructive, real time and non-contact technique to analyse and to locate thermo-mechanical mechanisms in materials and structures. Due to the first and second principles of thermodynamics, there is a relationship between temperature and mechanical behaviour laws. LIT is classically used to measure linear thermo-elastic effect to evaluate stresses in structures under periodic, random or transient loading. The new digital processing D-MODE presented allows extracting non linear coupled thermo-mechanical effects (dissipated energy) cycle by cycle during a fatigue test on specimens and on real structures. This quantity much smaller than thermo-elastic source needs a high sensitive thermal imaging camera and a dedicated algorithm to separate Dissipated energy from Thermo-elastic source. On other hand, it is known for a long time that there is a correlation between plasticity in materials and the appearance of heat dissipation. More recently, it was shown there is a clear relationship between fatigue limit and occurrence of dissipated energy. We propose to improve these two methods by using LIT instead of temperature rise measurement to predict crack occurrence in real structures. At last we present some industrial applications in automotive and aircraft industries.
机译:本文旨在说明锁定热成像(LIT)作为非破坏性,实时和非接触技术的优点,以分析和定位材料和结构的热机械机制。由于热力学的第一和第二原理,温度与机械行为法之间存在关系。点亮典型地用于测量线性热弹性效果,以评估周期性,随机或瞬时加载的结构中的应力。呈现的新型数字处理D-Mode允许在样品上的疲劳试验和实际结构上通过循环提取非线性耦合的热机械效应(耗散能量)循环。该数量小于热弹性源需要高敏感的热成像相机和专用算法,可以将耗散能量与热弹性源分开。在另一方面,已知很长时间,材料在材料的可塑性之间存在相关性和散热的外观。最近,疲劳极限与耗散能量发生之间存在明显的关系。我们建议通过使用LIT而不是温度上升测量来改进这两种方法,以预测真实结构中的裂缝。最后,我们展示了汽车和飞机行业的一些工业应用。

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