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Laser Optic Vibration Sensing for the Inspection of Bonds in the Orbiter Thermal Protection Tiles

机译:激光振动传感技术,用于检测轨道热保护砖中的粘结

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摘要

This paper describes the use of a noncontacting acousto-optic sensor for the detection of bonding flaws in complex composite structures. The current area of emphasis for this wprk is the inspection of the complex, multilayer bond of the silica fiber composite thermal protection tiles for the Space Shuttle Orbiter. This paper describes the approach used to sense submicron vibration displacements of the tile surface using a frequency stabilized helium-neon laser, and the signal processing applied using a computerized NDE workstation. The basic premise is that a bonded structure will exhibit varying dynamic responses to an excitation pulse that depends on the boundary conditions defined by the bonded area. The noncontacting laser acoustic sensor allows a rapid measurement that does not perturb the dynamic response and does not damage the surface of interest. In addition, a coherent light imaging technique for real-time visualization of the tile vibration modes (speckle interferometry) was used to guide the single point vibration measurements and study the vibration mode shapes and their behavior as the bond was degraded.
机译:本文介绍了使用非接触式声光传感器检测复杂复合结构中的粘结缺陷。该wprk的当前重点领域是检查用于航天飞机轨道器的二氧化硅纤维复合热保护砖的复杂多层粘结。本文介绍了一种使用频率稳定的氦氖激光器感测瓷砖表面亚微米振动位移的方法,以及使用计算机化NDE工作站进行信号处理的方法。基本前提是,键合结构将对激发脉冲表现出变化的动态响应,这取决于键合区域定义的边界条件。非接触式激光声学传感器可以进行快速测量,而不会干扰动态响应并且不会损坏目标表面。另外,用于实时可视化瓷砖振动模式的相干光成像技术(散斑干涉法)用于指导单点振动测量,并研究振动模式的形状及其随着粘结性能下降的行为。

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