Department of Non-Destructive Testing, Acoustical and Electromagnetic Methods Division, Federal Institute for Materials Research and Testing (BAM), Unter den Eichen 87, D-12205 Berlin, Germany.
Ultrasonics. 2014 Feb;54(2):551-62. doi: 10.1016/j.ultras.2013.08.007. Epub 2013 Aug 19.
Quantitative evaluation of ultrasonic C-scan images in homogeneous and layered anisotropic austenitic materials is of general importance for understanding the influence of anisotropy on wave fields during ultrasonic non-destructive testing and evaluation of these materials. In this contribution, a three dimensional ray tracing method is presented for evaluating ultrasonic C-scan images quantitatively in general homogeneous and layered anisotropic austenitic materials. The directivity of the ultrasonic ray source in general homogeneous columnar grained anisotropic austenitic steel material (including layback orientation) is obtained in three dimensions based on Lamb's reciprocity theorem. As a prerequisite for ray tracing model, the problem of ultrasonic ray energy reflection and transmission coefficients at an interface between (a) isotropic base material and anisotropic austenitic weld material (including layback orientation), (b) two adjacent anisotropic weld metals and (c) anisotropic weld metal and isotropic base material is solved in three dimensions. The influence of columnar grain orientation and layback orientation on ultrasonic C-scan image is quantitatively analyzed in the context of ultrasonic testing of homogeneous and layered austenitic steel materials. The presented quantitative results provide valuable information during ultrasonic characterization of homogeneous and layered anisotropic austenitic steel materials.
均匀各向异性和分层各向异性奥氏体材料中超声 C 扫描图像的定量评估对于理解各向异性对超声无损检测中波场的影响以及这些材料的评估具有重要意义。在本研究中,提出了一种三维射线追踪方法,用于定量评估一般均匀和分层各向异性奥氏体材料中的超声 C 扫描图像。基于 Lamb 的互易定理,在三维方向上获得了一般均匀柱状晶粒各向异性奥氏体钢材料(包括背斜取向)中超声射线源的指向性。作为射线追踪模型的前提,解决了各向同性母材和各向异性奥氏体焊缝材料(包括背斜取向)、两个相邻各向异性焊缝金属和各向异性焊缝金属与各向同性母材之间界面处的超声射线能量反射和透射系数问题。在均匀和分层奥氏体钢材料的超声检测背景下,定量分析了柱状晶粒取向和背斜取向对超声 C 扫描图像的影响。所提出的定量结果为均匀和分层各向异性奥氏体钢材料的超声特性化提供了有价值的信息。