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New nine-node Lagrangian quadrilateral plate element based on Mindlin-Reissner theory using IFM
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  • New nine-node Lagrangian quadrilateral plate element based on Mindlin-Reissner theory using IFM
  • New nine-node Lagrangian quadrilateral plate element based on Mindlin-Reissner theory using IFM
저자명
Dhananjaya. H.R.,Pandey. P.C.,Nagabhushanam. J.,Ibrahim. Zainah
간행물명
Structural engineering and mechanics : An international journal
권/호정보
2012년|41권 2호|pp.205-229 (25 pages)
발행정보
테크노프레스
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

This paper presents a new nine-node Lagrangian quadrilateral plate bending element (MQP9) using the Integrated Force Method (IFM) for the analysis of thin and moderately thick plate bending problems. Three degrees of freedom: transverse displacement w and two rotations ${ heta}_x$ and ${ heta}_y$ are considered at each node of the element. The Mindlin-Reissner theory has been employed in the formulation which accounts the effect of shear deformation. Many standard plate bending benchmark problems have been analyzed using the new element MQP9 for various grid sizes via Integrated Force Method to estimate defections and bending moments. These results of the new element MQP9 are compared with those of similar displacement-based plate bending elements available in the literature. The results are also compared with exact solutions. It is observed that the presented new element MQP9 is free from shear locking and produced, in general, excellent results in all plate bending benchmark problems considered.