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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >The inspection of anisotropic single-crystal components using a 2-D ultrasonic array
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The inspection of anisotropic single-crystal components using a 2-D ultrasonic array

机译:使用二维超声阵列检查各向异性单晶组件

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摘要

Single-crystal metal alloys are used extensively in the manufacture of jet engine components for their excellent mechanical properties at elevated temperatures. The inspection of these components using 2-D ultrasonic arrays potentially allows the detection of subsurface defects in threedimensions from one inspection location. Such methods are not currently suitable for the inspection of single-crystal components because the high elastic anisotropy of single-crystal materials causes directional variation in ultrasonic waves. In this paper, a model of wave propagation in anisotropic material is used to correct an ultrasonic imaging algorithm and is applied to a single-crystal test specimen. For this correctedalgorithm, the orientation of the crystal in a specimen must be known before the inspection. Using the same ultrasonic array to measure the orientation and perform the defect inspection offers the most practical solution. Therefore, potential crystallographic orientation methods using 2-D ultrasonic arrays are also developed and evaluated.
机译:单晶金属合金由于在高温下的优异机械性能而被广泛用于喷气发动机部件的制造中。使用二维超声波阵列对这些组件进行检查可能会从一个检查位置检测三维次表面缺陷。由于单晶材料的高弹性各向异性引起超声波的方向变化,因此这种方法目前不适合于单晶组件的检查。在本文中,使用各向异性材料中的波传播模型校正超声成像算法,并将其应用于单晶试样。对于这种校正算法,在检查之前必须知道样品中晶体的取向。使用相同的超声波阵列测量方向并执行缺陷检查可提供最实用的解决方案。因此,还开发和评估了使用二维超声阵列的潜在晶体学取向方法。

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