Measurement of Defects with Scanning Acoustic Microscope and Acoustic Emission
Man‐Yong Choi, Ik-Gun Park, Eung-Kyo Han
Abstract
Man‐Yong Choi, Ik-Gun Park, Eung-Kyo Han
Abstract
Acoustic microscopy has attracted much interest recently as potential nondestructive evaluation technique for detecting and sizing defects of surface and sub-surface. Also acoustic emission testing method has been developed for detecting microcracks which is more than 30 in length quantitatively on ceramics. In the present paper, acoustic emission during the four point bending test in hot-pressed sintered specimen which was stressed by thermal shock, has been measured by high sensitive sensing system. The surface and sub-surface cracks were detected by scanning acoustic micrscope of 800 MHz and conventional ultrasonic testing in C-scope image. The purpose was to investigate the location and size of cracks by SAM and AE technique, whose experimental data demonstrate good for detecting microcracks.
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Acoustic microscopy has attracted much interest recently as potential nondestructive evaluation technique for detecting and sizing defects of surface and sub-surface. Also acoustic emission testing method has been developed for detecting microcracks which is more than 30 in length quantitatively on ceramics. In the present paper, acoustic emission during the four point bending test in hot-pressed sintered specimen which was stressed by thermal shock, has been measured by high sensitive sensing system. The surface and sub-surface cracks were detected by scanning acoustic micrscope of 800 MHz and conventional ultrasonic testing in C-scope image. The purpose was to investigate the location and size of cracks by SAM and AE technique, whose experimental data demonstrate good for detecting microcracks.
Key concepts: Acoustic emission, Scanning acoustic microscope, Materials science, Acoustic microscopy, Sizing, Nondestructive testing, Ultrasonic testing, Acoustics