首页> 外文期刊>Current Journal of Applied Science and Technology >Rectangular Hollow Section (RHS) Rings underLateral Compressive Loading between Platens andWearpads
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Rectangular Hollow Section (RHS) Rings underLateral Compressive Loading between Platens andWearpads

机译:压板和耐磨垫之间承受横向压缩载荷的矩形空心截面(RHS)环

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Aims: To investigate the buckling behavior of RHS Rings, under two kinds of transverse loading (a) between platens and (b) between wearpads, by experimentation and through Finite Element Analysis(FEA).Place and Duration of Study: College of Engineering, UAE University, between December 2015 to June 2017.Methodology: Experimental studies on sample RHS Rings compressed transversely between platens and wearpads were conducted. From the experimental observations, the behavior of RHS rings under both these types of loadings was hypothesized and explained theoretically. FE models were built to represent the experimental tests.Results: Experimental and FEA results showed load-displacement curves with three distinct regions, namely the elastic region, elasto-plastic region and the post-yield region under both kinds of loading. However, the maximum load under wearpad loading was much lower when a similar RHS Ring is considered under platen loading. The behavior of RHS Rings is explained theoretically by considering the RHS Rings as an assemblage of horizontal beams and vertical columns.Conclusion: Transverse compression of RHS Rings between platens cause each member columns and beams of the ring to be subjected to end moments and end reaction forces. Additional end moments are induced when RHS Rings are compressed between wearpads causing a reduction in the RHS Ring load carrying capacity.
机译:目的:通过实验和有限元分析(FEA),研究RHS环在两种横向载荷(a)压板之间和(b)耐磨垫之间的屈曲行为。研究的地点和持续时间:工程学院,阿联酋大学,2015年12月至2017年6月。方法:对样本RHS环进行了横向研究,该环在压板和耐磨垫之间横向压缩。从实验观察中,假设并在理论上解释了RHS环在这两种载荷下的行为。结果:实验和有限元分析结果显示了在两种载荷下三个不同区域的载荷-位移曲线,即弹性区域,弹塑性区域和屈服后区域。但是,当在压板负载下考虑类似的RHS环时,在耐磨垫负载下的最大负载要低得多。理论上通过将RHS环视为水平梁和垂直柱的组合来解释RHS环的行为。结论:压板之间的RHS环横向压缩会导致环的每个成员柱和梁受到端矩和端部反作用力军队。当在耐磨垫之间压缩RHS环时,会引起额外的端力矩,从而导致RHS环的承载能力降低。

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