航空级材料He-15铝的超声相控阵缺陷定位与尺寸测定

S. V. Ranganayakulu, A. Kucheludu, B. Bhadraiah, B. Kumar
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引用次数: 0

摘要

本文介绍了超声相控阵在航空级材料定位检测中的应用。材料样品HE15的尺寸为150*120*10。两个去碎片的铝合金通过钨惰性气体焊接的焊接工艺连接在一起。材料的检测是通过各种无损检测方法进行的,即超声波法、射线照相法、液体渗透法和相控阵技术。通过超声相控阵扫描和脉冲回波技术来观察材料的灵敏度,或者通过其他无损检测方法即x射线、超声相控阵技术和LPT来检测缺陷。LPT法在2mm深度处几乎没有发现表面缺陷。相控阵成像和x射线成像能较好地显示孔隙缺陷和夹杂缺陷。超声波相控阵扇形扫描技术产生即时图像,允许直接可视化内部结构,简化焊接接头的数据解释。采用超声相控阵动态深度聚焦技术对缺陷进行识别和定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Defect Location and Sizing by Ultrasonic Phased Array on Aero Grade Material Aluminum He-15
This paper gives the orientation and inspection of aero grade material by using Ultrasonic Phased Array over conventional methods. The dimension of material sample HE15 is 150*120*10. Two defragmented aluminum alloys are joined by welding process known as Tungsten Inert Gas Welding. Inspection of material is carried out by various Non Destructive Testing methods namely ultrasonic method, radiography method, liquid penetrant and Phased array technique. Sensitivity of material is noticed by scanning of ultrasonic phased array and pulse echo technique method alternatively defects are detected by other NDT methods namely X-ray, Ultrasonic phased array technique and LPT. Few surface flaws are noticed at a depth of 2mm by LPT method. Porosity and inclusion defects are better traceout through phased array and X-ray radiography respectively. Ultrasonic Phased Array sectorial scan technique produces immediate images, allowing straight forward visualization of the internal structure and simplifying data interpretation of weld joint. The defect is identified and located by Ultrasonic Phased array Dynamic depth focusing Technique.
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