A closed-form solution of effective young's modulus for composites including multi-shape inclusions using improved Mori-Tanaka model

Dong Mei Luo, Hong Yang, Yi Ying Xiao, Wen Xue Wang

研究成果: Chapter in Book/Report/Conference proceedingConference contribution

抜粋

In this paper, an improved model is proposed by combining Mori-Tanaka method with Eshelby's equivalent inclusion concept to derive a closed-form solution of the effective Young's modulus E11 for hybrid composites reinforced with multi-shapes inclusions. When only the fiberlike inclusions are considered in the model, the results are consistent with those from Tandon's unidirectional aligned composites based on Mori-Tanaka theory. For composites reinforced with fiber-like and spherical inclusions, the homogenization theory is employed to verify the effects of the proposed model. The influence of volume fraction and Young's modulus of each phase on effective Young's modulus E11 is investigated, and the results show that E11 is sensitive to the inclusion shapes, and the model is practicable to predict the effective mechanical properties of composites reinforced by several inclusions with different shapes.

元の言語英語
ホスト出版物のタイトル2013 Spring International Conference on Material Sciences and Technology (MST-S)
ページ343-348
ページ数6
DOI
出版物ステータス出版済み - 7 16 2013
イベント2013 Spring International Conference on Material Sciences and Technology, MST-S 2013 - Wuhan, 中国
継続期間: 5 31 20136 2 2013

出版物シリーズ

名前Advanced Materials Research
704
ISSN(印刷物)1022-6680

その他

その他2013 Spring International Conference on Material Sciences and Technology, MST-S 2013
中国
Wuhan
期間5/31/136/2/13

All Science Journal Classification (ASJC) codes

  • Engineering(all)

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  • これを引用

    Luo, D. M., Yang, H., Xiao, Y. Y., & Wang, W. X. (2013). A closed-form solution of effective young's modulus for composites including multi-shape inclusions using improved Mori-Tanaka model. : 2013 Spring International Conference on Material Sciences and Technology (MST-S) (pp. 343-348). (Advanced Materials Research; 巻数 704). https://doi.org/10.4028/www.scientific.net/AMR.704.343