DGS curve evaluation applied to ultrasonic phased array testing

被引:3
|
作者
Certo, M. [1 ]
Nardoni, G. [1 ]
Nardoni, P. [1 ]
Feroldi, M. [1 ]
Nardoni, D. [1 ]
机构
[1] I&T Nardoni Inst, I-25010 Folzano Brescia, Italy
关键词
D O I
10.1784/insi.2010.52.4.192
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
The application of phased array to the ultrasonic testing of components such as forged or plate products, with the longitudinal wave arranged in a sectorial scan centred at zero degrees, can be very attractive because of the possibility, due to the electronic sectorial scan of the ultrasonic beam, of producing a complete and documented volume inspection with a fewer number of scan lines than with using a standard probe. The problem is that, in this inspection technique, defect estimation is carried out, normally, by the use of a Distance Gain Size (DGS(dagger)) set of curves([1,4,5]). Such curves are easily available for standard probes of circular shape, but not for phased array probes whose active area is a function of the number of active elements chosen and which can be strongly rectangular. In order to avoid such difficulty, we have developed a computer model that is capable of generating the DGS curves from an input of the actual phased array parameters. This computer model has been assessed using some calibration blocks containing flat-bottomed holes. The results are very encouraging, showing good performance when defects are in the far field of the actual probe configuration, while in the near-field region the generated DGS curves lead to a defect overestimation.
引用
收藏
页码:192 / 194
页数:3
相关论文
共 50 条
  • [1] Phased array ultrasonic testing of gear tooth
    Wang, Liang
    Ma, Chenchen
    COGENT ENGINEERING, 2024, 11 (01):
  • [2] Study on flexible phased array ultrasonic testing
    Que, KL
    Shi, KR
    Guo, DY
    PROCEEDINGS OF THE THIRD INTERNATIONAL SYMPOSIUM ON INSTRUMENTATION SCIENCE AND TECHNOLOGY, VOL 1, 2004, : 1003 - 1007
  • [3] Composite Material Ultrasonic Phased Array Testing
    Ryngach, N. A.
    Emirov, A. V.
    HIGH ENERGY PROCESSES IN CONDENSED MATTER (HEPCM 2019), 2019, 2125
  • [4] Phased array technology for standard ultrasonic testing
    Berke, M
    Ballenger, T
    INSIGHT, 2006, 48 (04) : 218 - 220
  • [5] Phased array for ultrasonic testing of concrete components
    Mielentz, Frank
    Orglmeister, Reinhold
    Wuestenberg, Hermann
    MATERIALPRUFUNG, 2007, 49 (10): : 524 - 532
  • [6] Accuracy and and Usefulness Evaluation of the Phased Array Ultrasonic Testing for Thermal Fatigue Cracks
    Ann, Houng Kun
    Hwang, Woong Gi
    Kim, Jae Seong
    Park, Ik Keun
    JOURNAL OF THE KOREAN SOCIETY FOR NONDESTRUCTIVE TESTING, 2019, 39 (04) : 238 - 244
  • [7] Theoretical calculation on distance amplitude curve of ultrasonic phased array
    ZHAO Xinyu
    SUN Rui
    CHEN Jingyang
    DUAN Xiaomin
    Chinese Journal of Acoustics, 2022, 41 (01) : 87 - 94
  • [8] Theoretical calculation on distance amplitude curve of ultrasonic phased array
    Zhao, Xinyu
    Chen, Jingyang
    Duan, Xiaomin
    Shengxue Xuebao/Acta Acustica, 2021, 46 (03): : 456 - 462
  • [9] Unique opportunity available in phased array ultrasonic testing
    不详
    INSIGHT, 2007, 49 (12) : 697 - 697
  • [10] TESTING INTEGRITY OF MANUAL PHASED ARRAY ULTRASONIC INSPECTION
    Passi, G.
    10TH EUROPEAN CONFERENCE ON NON-DESTRUCTIVE TESTING 2010 (ECNDT), VOLS 1-5, 2010, : 438 - 438