文章摘要
廖泽顺,滑广军,谢勇,邵珍珠.瓦楞纸板横向边压强度有限元分析[J].包装工程,2014,35(13):56-60.
LIAO Ze-shun,HUA Guang-jun,XIE Yong,SHAO Zhen-zhu.Finite Element Analysis on Transverse Compressive Strength of Corrugated Board Edge[J].Packaging Engineering,2014,35(13):56-60.
瓦楞纸板横向边压强度有限元分析
Finite Element Analysis on Transverse Compressive Strength of Corrugated Board Edge
投稿时间:2014-04-02  修订日期:2014-07-01
DOI:
中文关键词: 瓦楞纸板  横向边压强度  屈曲分析  临界载荷  有限元
英文关键词: corrugated cardboard  transverse compression strength  buckling analysis  critical load  finite element
基金项目:国家自然科学基金(61170101)
作者单位
廖泽顺 湖南工业大学 株洲 412008 
滑广军 湖南工业大学 株洲 412008 
谢勇 湖南工业大学 株洲 412008 
邵珍珠 湖南工业大学 株洲 412008 
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中文摘要:
      目的 基于有限元软件 Ansys 建立 A, C, B, E 型瓦楞纸板的有限元模型,对其横向边压强度进行屈曲分析, 同时研究试样裁切位置对瓦楞纸板横向边压强度的影响。 方法 有限元分析方法将结构对纸板边压强度的影响从众多因素中解耦, 消除其他因素对结果的影响。 结果 A, C, B, E 型纸板平均抗压能力比为 5∶4∶2∶1, 仅裁切位置不同对纸板横向抗压能力的影响达到 16%。 结论 大瓦楞有更好的横向抗压能力,楞高是影响瓦楞纸板横向抗压能力的主要因素, 裁切位置的不同也会影响瓦楞纸板的横向抗压能力。
英文摘要:
      Objective Based on Ansys, the finite element model of A, C, B, E type corrugated cardboard was tablished and buckling analysis was carried out on the model. The influence of sample cutting position on the transverse ompression strength of corrugated board was also studied. Methods The effects of structure on the compression strength f corrugated board were decoupled from a number of factors by finite element analysis, which eliminated the influence of her factors on the experimental results. Results The calculated result showed that the ratio of A, C, B, E type cardboard verage compressive strength was 5∶4∶2∶1. The effects of different cutting position on the cardboard transverse compressive apacity reached up to 16%. Conclusion The result showed that large flute had better transverse compressive ability. The eight of flute was the major factor affecting the transverse compressive strength of corrugated board. Sample cutting osition also affected the transverse compressive strength of corrugated board.
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