首页> 外文会议>Conference on smart materials and nondestructive evaluation for energy systems >Experimental investigation of wave dispersion in hardened concrete and reference liquid media
【24h】

Experimental investigation of wave dispersion in hardened concrete and reference liquid media

机译:硬化混凝土和参考液体介质中波散射的实验研究

获取原文
获取外文期刊封面目录资料

摘要

Nowadays, more and more, the monitoring of concrete's setting and hardening as well as concrete's condition assessment and mechanical characterization is realized with the Ultrasonic Pulse Velocity technique. However, despite its increasing use, the high potential and the vast applicability over a wide range of materials and structures, the aforementioned nondestructive testing technique is only partially exploited since a) a default pulse usually not selected by the user is transmitted, b) a single frequency band dependent on the testing equipment (pulse generator and sensors) is excited and c) usually the first part of the signal is only considered. Moreover, the technique, as defined by its name, is based on pulse velocity measurements which strongly rely on a predefined threshold value for the calculation of the travel time between the transmitting and receiving sensor. To overcome all these issues, in the current experimental campaign, user-defined signals are generated, a broad range of ultrasonic frequencies is excited, while the full length of the signal is also taken into account. In addition, the pulse velocity measurements are replaced by the more advanced phase velocity calculations determined by reference phase points of the time domain signals or by phase differences of the signals transformed in the frequency domain. The experiments are mainly conducted in hardened concrete specimens but the aggregates are substituted by spherical glass beads of well-defined sizes and contents in order to better control the microstructure. Reference liquid media are also examined for comparison purposes. The results in both cases show strong dispersive trends indicated by significant changes in the phase velocity.
机译:如今,越来越多的超声波凝固速度技术实现了对混凝土凝固和硬化的监测以及对混凝土状态的评估和力学性能的监测。然而,尽管其日益广泛的使用,高潜力以及在广泛的材料和结构上的广泛适用性,上述无损检测技术仅被部分利用,因为a)发射了通常不由用户选择的默认脉冲,b)a取决于测试设备(脉冲发生器和传感器)的单个频带被激发,并且c)通常仅考虑信号的第一部分。此外,如其名称所定义,该技术基于脉冲速度测量,该脉冲速度测量强烈依赖于预定义的阈值来计算发射和接收传感器之间的传播时间。为了克服所有这些问题,在当前的实验活动中,生成了用户定义的信号,激发了大范围的超声频率,同时还考虑了信号的全长。另外,脉冲速度测量被由时域信号的参考相位点或由在频域中变换的信号的相位差所确定的更高级的相速度计算所代替。实验主要在硬化的混凝土试样上进行,但骨料被球形玻璃珠代替,球形玻璃珠的尺寸和含量明确,以更好地控制微观结构。还检查了参考液体介质以进行比较。两种情况下的结果均显示出很强的色散趋势,这由相速度的显着变化表示。

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