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Development of Novel Principles and Methods of High Resolution Acoustical Imaging for Materials Characterization

机译:用于材料表征的高分辨率声学成像的新原理和方法的发展

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摘要

The role of nondestructive materials characterization and evaluation (NDE) is changing and will continue to change dramatically with the development of new principles based on high-reso-lution imaging technique. Today, and even increasingly in the future, using advanced optical, thermal, ultrasonic, laser-ultrasound, acoustic emission sensors, vibrational, electro-magnetic, X-ray techniques, etc., as well as mod-ern measurement techniques, along with signal/data processing, on-line information on the processing condi-tions can be continuously generated. Real-time process monitoring for more effective and efficient control of various processes will now become a practical reality, leading to improved manufacturing quality control inspec-tion and reliability. The new materi-als structures, joints, parts and com-ponents made from various materials demand innovative applications ofmodern NDE imaging techniques to monitor and control as many stages of the production process as possible. Simply put, intelligent advance manufacturing is impossible without integrating modern nondestructive evaluation into the pro-duction system.
机译:无损材料表征和评估(NDE)的作用正在发生变化,并且随着基于高分辨率的成像技术的新原理的发展,无损材料的鉴定和评估将继续发生巨大变化。今天,甚至将来越来越多,使用先进的光学,热,超声波,激光超声,声发射传感器,振动,电磁,X射线技术等,以及现代测量技术,以及在进行信号/数据处理时,可以连续生成有关处理条件的在线信息。为了更有效地控制各种过程而进行的实时过程监控现在已成为现实,从而改善了制造质量控制的检查和可靠性。用各种材料制成的新材料结构,接头,零件和组件需要现代NDE成像技术的创新应用,以尽可能多地监视和控制生产过程的各个阶段。简而言之,如果不将现代无损评估技术集成到生产系统中,就不可能进行智能的先进制造。

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