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자료유형
학술대회자료
저자정보
저널정보
Korean Society for Precision Engineering 한국정밀공학회 학술발표대회 논문집 한국정밀공학회 2004년도 추계학술대회 논문요약집
발행연도
2004.10
수록면
64 - 68 (5page)

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초록· 키워드

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A media-feeding (or media-transport) system is a key component in daily consumer systems such as printers, copiers and ATM’s. The role of the media-transport system is to feed a medium, which is usually in the form of a thin film, to the main process in a uniform and repeatable manner. Even small slippage between the media and the feeding rollers could significantly degrade the performance of the entire system. The slippage between the medium and the feeding rollers is determined by many parameters which include the friction coefficient between the feeding rollers and the medium material, the angular velocity of the feeding rollers, and the normal force applied by feeding rollers on the medium. This paper investigates the effect of the normal force and the angular velocity of feeding rollers on the slippage of the medium. Authors have constructed a test bed for experiments, which consists of a feeding module and various measuring devices. Using regular paper as media being fed, the authors experimentally measured the slippage of the medium under various normal forces and angular velocities of driving feeding roller. Also the authors developed a novel two-dimensional simulation model for the media-transport system. The paper medium is modeled as a set of multiple rigid bodies interconnected by revolute joints and rotational springs and dampers. Simulations were executed using a multi-body dynamic analysis tool called RecurDyn<SUP>®</SUP>. The slippage obtained by the simulation is compared to experimental results.

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ABSTRACT
1. 서론
2. 실험 장비 구성
3. 시뮬레이션
4. 실험
5. 결론
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