期刊文献+

基于有限元建模的木质复合板宏微观力学性能分析

Analysis on Macro and Micro Mechanical Properties of Wood Composite Panels Based on Finite Element Modeling
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摘要 基于有限元理论,在Ansys环境下对碳纤维增强木质复合板建立微观单胞模型和宏观几何模型,并对二者进行力学性能的一阶模态仿真分析。结果表明,物理试验和仿真预测数据相吻合,验证了所建模型的有效性和可靠性,达到了依据复合材料的微观结构对宏观性能进行预测的目的,从而实现了复合材料力学性能的宏微观关联。 Based on the finite element theory, the paper established microscopic unit eell model and macroscopic geometry model for carbon fiber reinforced wood composite panels in the presence of Ansys and resorted to the first-order modal simulation analysis on mechanical properties. The results showed that the physical experiment data and the simulation forecast data are identical with each other, which verifies the validity and reliability of the models and achieves the purpose of the macro performance prediction according to the microstructure of composite and realizes the macro to micro relevance for composite mechanical properties.
出处 《安徽农业科学》 CAS 2014年第30期10711-10714,共4页 Journal of Anhui Agricultural Sciences
基金 中央高校专项(DL12CB06) 高等学校博士学科专项(20120062120007)
关键词 有限元建模 短切碳纤维增强木质复合板(SCFRW) 宏微观 模态分析 力学性能 Finite element modeling SCFRW Macro and micro Modal analysis Mechanical properties
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参考文献5

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