Acoustic Microscopy Applied to Ceramic Pressure Vessels and Associated Components

Author:

Miyasaka Chiaki1,Tittmann Bernhard R.1

Affiliation:

1. The Pennsylvania State University at University Park, 212 Earth and Engineering Science Building, University Park, PA 16801

Abstract

Alumina ceramic is being used extensively for external pressure vessels in naval applications. The material is also used in valves and other components, where reliability, immunity from corrosion, and high temperatures are required. This report presents a technique for the nondestructive evaluation of alumina ceramic components. The cracks were produced by CO2 laser radiation. Since there is a need for the detection of very fine cracks, scanning acoustic microscopy was found to be superior to optical methods for imaging surface and subsurface cracks. We address the issue of crack initiation with the use of postirradiation analysis. This article reports our results on the evaluation of the surface and interior cracks with optical, scanning laser, scanning electron, and scanning acoustic microscopy. We present images of surface and subsurface microcracks generated at different power levels of a high power CO2 laser system. The spatial variation of the Rayleigh wave velocity is measured by the V(z) curve technique. These preliminary data suggest that, with some improvement, the V(z) technique may detect residual stress with high spatial resolution.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference39 articles.

1. Johnson, R. P., Kurkchubasche, R. T., and Stachio, J. D., 1993, “Structure Performance of Cylindrical Pressure Housings of Different Ceramic Compositions Under External Pressure Loading. Part I. Isostatcially Pressed Alumina Ceramic,” Naval Command Control and Ocean Surveillance Center, San Diego, Technical Report No. 1590.

2. Johnson, R. P. , 1993, “Structural Design Criteria for Alumina Ceramic Deep Submergence Pressure Housings,” The Marine Technology Society MTS 1993 Conference, Long Beach, CA.

3. Stachio, J. D., Johnson, R. P., and Kurchubasche, R. R., 1993, “Evaluation of Scale Model Ceramic Housing for Deep Submergence—Fifth Generation Housings,” NRaD TR 1582 (Mar) NCCOSC RDT&E Division, Sand Diego, CA.

4. Jones, L. B. , 2004, “The State of the Technology: Manned Submersibles,” US Submarine, Inc. News Resource Article.

5. Laser Shaping of Materials;Copley

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