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首页> 外文期刊>Journal of Nondestructive Evaluation >Reflection Phase Measurements for Ultrasonic NDE of Titanium Diffusion Bonds
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Reflection Phase Measurements for Ultrasonic NDE of Titanium Diffusion Bonds

机译:钛扩散键超声无损检测的反射相位测量

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摘要

The adoption of diffusion bonding in fracture critical titanium components has been limited by the complications that macroscopic anisotropy introduces to typical ultrasonic inspections. Previous attempts to overcome these limitations by using signal phase to extract otherwise hidden interface information showed promise but were susceptible to measurement error and proved impractical for typical aerospace component geometries. In the work presented here, significant improvements to the existing phase measurement approach are proposed alongside adaptations that permit its broader practical implementation. The principal parameters that affect the phase analysis of ultrasonic signals were investigated and their optimisation resulted in up to an order of magnitude improvement in phase measurement reliability, even at low signal-to-noise ratios. The application of these optimised parameters without a priori knowledge of the signal arrival time in an otherwise noisy waveform is illustrated, and the sensitivity of the approach to ambient temperature and annealing effects is also explored.
机译:断裂关键性钛组件中采用扩散结合受到宏观各向异性给典型超声检查带来的复杂性的限制。先前通过使用信号相位来提取否则隐藏的接口信息来克服这些限制的尝试显示出了希望,但容易受到测量误差的影响,并被证明对于典型的航空航天部件几何形状是不切实际的。在本文介绍的工作中,提出了对现有相位测量方法的重大改进,以及对其进行更广泛实际实施的改进。研究了影响超声信号相位分析的主要参数,并优化了这些参数,即使在低信噪比的情况下,也能将相位测量可靠性提高多达一个数量级。说明了这些优化参数的应用,而无需事先知道信号在其他噪声波形中的到达时间,并且还探讨了该方法对环境温度和退火效果的敏感性。

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