80 research outputs found

    Imaging of Mechanically Induced Thermal Heat Patterns

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    Imaging information obtained from nondestructive tests is becoming more widely investigated and developed. Imaging obviously has the potential to provide a more easily interpreted outcome of a nondestructive test, leading to more rapid and correct evaluation of the state of the examined material. This work presents one aspect of the field of imaging — developing a thermal image of the surface of a material subjected to mechanical vibrations. The technique of vibrothermography has been under investigation in our laboratory for several years, especially as applied to advanced composite materials. We will present in this paper a review of the imaging aspects of the technique, in particular discussing the phenomena responsible for producing a surface heat pattern and the phenomena responsible for obtaining a suitable image of this pattern. Finally, a discussion is given of the possible interpretations which may be made from the image concerning evaluation of the material condition, as may be used in a nondestructive evaluation procedure. Examples will be drawn from a number of tests performed in our laboratory

    Positron Testing of Carbon-Fiber Composites

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    Composites of various types are becoming more and more important as structural and engineered materials. The projected growth in worldwide use for fiber composites is 13% for the decade ending in 1995 [1].</p

    Nondestructive Evaluation of Composite Material Using Ultrasound

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    Literature Review

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    Literature Reviews

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    Life Prediction of Composite Pressure Vessels

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    A Room Temperature Stable “B” Staging Epoxy Resin System

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    Fundamental Aspects of Composites Reinforced with Glassy Metal Ribbons

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