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Titlebook: Nondestructive Characterization of Materials VI; Robert E. Green,Krzysztof J. Kozaczek,Clayton O. R Book 1994 Plenum Press, New York 1994

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https://doi.org/10.1007/978-1-4615-2574-5Metall; ceramics; composite; crystal; fatigue; materials characterization; ultrasound
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X-Ray Measurement of Fatigue Damage by Using Imaging PlateTo improve reliability, safety and economy of structure or plant, needs of life assessment and residual life estimation are increasing. Therefore, the improvement of accuracy and expansion of the application range of damage measuring technique are requested.
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Model-Based Calibration of Ultrasonic System Responses for Quantitative Measurementsgs of the pulser-receiver used and the choice of the transducer employed. The combined effects of those parts of the ultrasonic system on the measured signal can be described mathematically in terms of a single system “efficiency” factor.
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Microtomography Using Conventional X-Ray Sourcesactually not only arises from a surface but is buried more in the bulk. Computerized x-ray tomography (CT) nondestructively provide us image of any cross section of the object, i. e., three dimensional image of the bulk.
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Monitoring of Resin-Transfer Molding Using Laser-Based Ultrasoundce the cost of fabricating complexly contoured polymer composite structures, manufacturers are actively developing low-cost alternatives to hand lay-up/autoclave curing and other labor and capital-intensive processes. One technique, that has proven to be an economical method for fabricating polymer
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Surface Controlled Materials Evaluation for Al-Implanted Ni Alloysidation toughness or wear resistance [1]. PVD/CVD ceramic coatings are the first approach to make surface control of mechanical properties [2]. These methods are widely used in fabrication of tool and die materials. Typical applications can be seen in TiN, TiC or Ti(CN) coated WC/Co and SKD material
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