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Automatic Ultrasonic Testing of Non-metallic Inclusions Detectable with Size of Several Tens of Micrometers Using a Double Probe Technique along the Longitudinal Axis of a Small-diameter Bar

机译:自动超声波检测非金属夹杂物,尺寸可检测多尺寸的沿小直径杆的纵向轴线的双探针技术

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An improvement of automatic ultrasonic testing through a double probe technique along the longitudinal bar axis used in a round bar, with a diameter of several millimeters, is proposed. Non-metallic inclusions of several tens of micrometers in the cross-sectional length can be detected using this novel technique, whereas the detectability in a conventional normal beam technique is limited to 100–150 μ m. The main advantages of this technique are an increased working sensitivity owing to a decreased surface echo width and the use of a shear wave with a shorter wavelength as compared with a conventional normal beam technique. As another advantage of this technique, malfunctions caused by air bubbles in the coupling medium can be eliminated. Further, the beam paths of the surface echo and the bottom echo are discussed herein using the propagation time difference between both echoes in Appendix.
机译:提出了一种通过沿着圆形条的纵向杆轴线的双探针技术改善自动超声波测试,其直径为几毫米。可以使用这种新技术检测横截面长度几十微米的非金属夹杂物,而传统的正常光束技术的可检测性限于100-150℃。由于表面回波宽度降低和与传统的正常光束技术相比,由于表面回波宽度降低和使用具有较短波长的剪切波的使用而增加,该技术的主要优点是增加的工作灵敏度。作为这种技术的另一个优点,可以消除由耦合介质中的气泡引起的故障。此外,使用附录中的两个回波之间的传播时间差来讨论表面回波和底部回波的光束路径。

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