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A laser-based ultrasonic system for non-contact measurement of the elastic properties of paper was evaluated on a pilot paper coating machine operating at paper web speeds of up to 25.4 m/s (5,000 ft /min). Flexural rigidity and out-of-plane shear rigidity were calculated from the frequency dependence of the phase velocity of Ao mode Lamb waves. These ultrasonic waves were generated in the paper with a pulsed Nd:YAG laser. Fiber optic delivery of the generation pulse was demonstrated. Lamb waves were detected with a Mach-Zehnder interferometer coupled with a scanning mirror/timing system to compensate for paper motion. Six paper grades ranging in basis weight from 39 to 100g/m2, and a 280g/m2 paperboard were tested. For the six paper grades, the on-line laser-ultrasonic measurements of flexural rigidity agreed within experimental error with conventional laboratory contact ultrasonic measurements on stationary samples. The effects of web tension and moisture content on flexural rigidity measurements were quantified. The low frequency signal amplitude from the paperboard was insufficient for accurate measurements.
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Sponsored by the Recovery Boiler Program R&D Subcommittee of the American Forest & Paper Association (AF&PA) and published by TAPPI Press.
The best-selling text to introduce the entire technology of pulp and paper manufacture.
A project of the Yankee Dryer Safety & Reliability Committee.
TAPPI Press offers some of the most in-depth resources and references for the forest products and related industries.
Available for Purchase – Conference Proceedings
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