Journal of South China University of Technology (Natural Science Edition) ›› 2013, Vol. 41 ›› Issue (3): 108-115.doi: 10.3969/j.issn.1000-565X.2013.03.016

• Mechanical Engineering • Previous Articles     Next Articles

Influence Law of Varying Parameters on Buckling Bearing Capacity of Simply-Supported Skew Plates

Fu Wei-gang Cheng Wen-ming Pu De-zhang Zheng Yan   

  1. Research Institute of Mechanical Engineering,Southwest Jiaotong University,Chengdu 610031,Sichuan,China
  • Received:2012-08-22 Revised:2012-11-19 Online:2013-03-25 Published:2013-02-01
  • Contact: 付为刚(1984-),男,博士生,主要从事结构稳定性优化、结构轻量化设计研究. E-mail:jiaodafwg@126.com
  • About author:付为刚(1984-),男,博士生,主要从事结构稳定性优化、结构轻量化设计研究.
  • Supported by:

    国家自然科学基金资助项目( 51175442 ) ; 西南交通大学中央高校基本科研业务费专项资金资助项目( 2010ZT03)

Abstract:

In order to overcome the local buckling instability of skew plates in box girder,the equations of momentof simply-supported edges in oblique coordinate system and the buckling differential governing equations of skewplates subjected to longitudinal in-plane loads are deduced.Then,by combining the harmonic differential quadraturemethod with the build-in method,a novel method to implement the critical buckling stability of simply-supportedskew plates is proposed. Moreover,by taking the skew plates subjected to uniaxial pressure or shear force as astudy sample,the influences of load-varying coefficient,aspect ratio and skew angle on the critical bulking load areinvestigated. The results show that,when the simply-supported skew plates are subjected to uniaxial pressure,thecritical buckling load increases with the increase of load-varying coefficient and with the decrease of skew angle,however,it undergoes a decrease during its increase with the aspect ratio. Moreover,it is found that,when theskew plates are subjected to shear force,the critical buckling load increases with the aspect ratio,and that it firstdecreases and then increases with the increase of skew angle.

Key words: box girder, simply-supported skew plate, build-in method, harmonic differential quadrature method, critical buckling load

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