孙德强,李想,郝乾崇,马毅,李欣怡,宋雅玲,叶润杰,高雪蒙.基于纸张本构模型的瓦楞纸板边压强度仿真分析[J].包装工程,2025,(1):155-162. SUN Deqiang,LI Xiang,HAO Qianchong,MA Yi,LI Xinyi,SONG Yaling,YE Runjie,GAO Xuemeng.Simulation and Analysis of Edge Compression Strength of Corrugated Paper Fiberboard Based on Original Paper Constitutive Model[J].Packaging Engineering,2025,(1):155-162. |
基于纸张本构模型的瓦楞纸板边压强度仿真分析 |
Simulation and Analysis of Edge Compression Strength of Corrugated Paper Fiberboard Based on Original Paper Constitutive Model |
投稿时间:2024-09-30 |
DOI:10.19554/j.cnki.1001-3563.2025.01.018 |
中文关键词: 瓦楞纸板 纸张 本构模型 边压强度 有限元仿真 |
英文关键词: corrugated paper fiberboard paper constitutive model edge compression strength finite element simulation |
基金项目:国家自然科学基金(51575327);国家级一流专业建设项目(包装工程2022);陕西科技大学课程思政建设项目(包装技术基础(双语)2022) |
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中文摘要: |
目的 采用LS-DYNA软件中的MAT274纸张本构模型,研究瓦楞纸板边压强度有限元仿真计算问题,并结合理论和试验结果验证模型的可靠性。方法 参照瓦楞纸板边压强度测试试验标准,使用ANSYS和LS-PREPOST软件建立与此标准相吻合的瓦楞纸板边压强度计算的有限元模型;采用边压强度试验及Li的简化公式和Garbowski的改进经验公式,分别得到瓦楞纸板的边压强度;对相关结果进行对比分析,以验证瓦楞纸板边压强度仿真计算模型的可靠性。结果 针对B型、C型2种瓦楞纸板,采用以上方法得到其压缩过程及压缩曲线或边压强度的试验、理论和有限元计算结果。结论 试验和仿真得到压缩过程中样品的变形模式和压缩曲线,以及边压强度理论、试验和仿真值结果的吻合性,证明了有限元模型的可靠性。这为瓦楞纸板设计应用提供了重要的参考和指导。 |
英文摘要: |
The work aims to investigate the finite element calculation of edge compression strength of corrugated paper fiberboard using the MAT274 paper constitutive model in LS-DYNA, and validate the model's reliability through comparison between theoretical and experimental results. A finite element model for the calculation of edge compression strength of corrugated paper fiberboard was established using ANSYS and LS-PREPOST software, according to the standard for edge compression strength testing of corrugated paper fiberboard. The edge compression strengths were also obtained through edge compression strength tests, Li's simplified formula, and Garbowski's modified empirical formula. A comparative analysis of the results was conducted to verify the reliability of the finite element model. For the corrugated paper fiberboard with B, C flute types, the compression process, compression curves, and edge crush strengths were obtained according to the above methods. The agreement of deformation modes and compression curves of the specimens during compression, as well as the theoretical, experimental, and simulated values of edge compression strengths, verifies the reliability of the finite element model. This provides important references and guidance for the design and application of corrugated paper fiberboard. |
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