Stress characterization of a ceramic/metal jointed interface by collimated X-ray beam radiography and scanning acoustic microscopy
Chiaki Miyasaka, Bernhard R. Tittmann, Shun Ichiro Tanaka
Abstract
Chiaki Miyasaka, Bernhard R. Tittmann, Shun Ichiro Tanaka
Abstract
The process of heating and then cooling dissimilar materials is well known to introduce considerable stress at and near the interface. In this article, first, the surface wave velocity distributions obtained with the V(z) curve technique were found to compare well with residual stress distribution obtained by the collimated X-ray diffraction. Second, a delamination was introduced at the interface. The V(z) curve technique was then used again to measure the surface acoustic wave velocity along the interface. The defective specimens showed significantly different patterns of surface acoustic wave velocities. Thus, this study presents useful guidelines in discriminating between sound and defective ceramic/metal joints by scanning acoustic microscopy.
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The process of heating and then cooling dissimilar materials is well known to introduce considerable stress at and near the interface. In this article, first, the surface wave velocity distributions obtained with the V(z) curve technique were found to compare well with residual stress distribution obtained by the collimated X-ray diffraction. Second, a delamination was introduced at the interface. The V(z) curve technique was then used again to measure the surface acoustic wave velocity along the interface. The defective specimens showed significantly different patterns of surface acoustic wave velocities. Thus, this study presents useful guidelines in discriminating between sound and defective ceramic/metal joints by scanning acoustic microscopy.
Key concepts: Collimated light, Materials science, Scanning acoustic microscope, Diffraction, Residual stress, Ceramic, Acoustic microscopy, Characterization (materials science)