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논문검색

종이성형구조물의 휨강성에 대한 실험적 연구

원문정보

Experimental Investigation for Flexural Stiffness of Paperboard-stacked Structure

박종민, 이명훈

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

Top-to-bottom compression strength of corrugated fiberboard boxes is partly dependent on the load-carrying ability of the central panel areas. The ability of these central areas to resist bending under load will increase the stacking strength of the box. The difference of box compression strengths, among boxes which are made with identical dimensions and fabricated with same components but different flute sizes, is primarily due to difference of the flexural stiffness of the box panels. Top-to-bottom compression strength of a box is accurately predicted by flexural stiffness measurements and the edge crush test of the combined boards. This study was rallied out to analyze the flexural stiffness, maximum bending force and maximum deflection for various corrugated fiber-boards by experimental investigation. There were significant differences between the machine direction (MD) and the cross-machine direction (CD) of corrugated fiberboards tested. It was about 50% in SW and DW, and $62%{\sim}74%$ in dual-medium corrugated fiberboards(e.g. DM, DMA and DMB), respectively. There were no significant differences of maximum deflection in machine direction among the tested fiberboards but, in cross direction, DM showed the highest value and followed by SW, DMA, DMB and DW in order. For the corrugated fiberboards tested, flexural stiffness in machine direction is about $29%{\sim}48%$ larger than cross direction, and difference of flexural stiffness between the two direction is the lowest in DMA and DMB.

목차

Abstract
 서론
 휨강성에 대한 이론적 고찰
  상자압축강도와 휨강성과의 관계
  휨하중에 대한 휨강성의 이론전개
 실험설계 및 방법
 실험결과 및 고찰
  최대휨하중과 처짐량
  휨강성
 결론
 문헌

저자정보

  • 박종민 Hong Min Park. 밀양대학교 기계공학과
  • 이명훈 Myung Hoo Lee. 한국포장시스템연구소

참고문헌

자료제공 : 네이버학술정보

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