Research on the Problem of Stress Concentration Caused by the Strengthening Phase in the Nanocomposite Coating

Article Preview

Abstract:

Using the finite element method analysis the influence of the enhanced body size to stress concentration factor and stress distribution between the enhanced body in nanocomposite coating and the matrix interface. By preliminary calculation, the paper predicts a trend that the stress distribution on the interface reduces with the decreases of the enhanced body size and the stress concentration. Theoretically proved the iomportant rule that in the field of organic composite materials if you want to improve the performance of composite materials ,the enhanced body size need to be reduced.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 816-817)

Pages:

185-190

Citation:

Online since:

September 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] ZHANG Er-geng, WU Yan. Theoretical Calculation on Modulus of Elasticity for PPS/SiO2 Composite Nano-coating[J]. Journal of Shanghai Institute of Technology (Natural Science), 2010, 10(3), 215-218.

Google Scholar

[2] Chen Chang-jun. Elastic Mechanics[M]. Lanzhou: Press of Lanzhou University, (1995).

Google Scholar

[3] ZHANG Er-geng, WANG Zhi-wen. Preparation and Performance Testing of the Silicon Dioxide Polyphenylene Sulfide Nanocomposite Coatings. Materials of Mechanical Engineering[J], 2003, 27(5), 36-38.

Google Scholar

[4] Yang Guitong. Elastic Mechanics [M]. Beijing: Press of High Education, (1998).

Google Scholar

[5] Zhu Bo-fang. The Principle and Application of the Finite Element Method[M]. Beijing: Press of Water Conservancy and Hydropower, (1998).

Google Scholar

[6] Yinghua Zhao, Jinchang Wang. the Effect of Constituent Size on the Interfacial Stress of the Composites. International Congress. 1999, 87-89.

Google Scholar

[7] Zhao Yinghua, Wang Jinzhong. Damage Process and Elastoplastic Constitutive Relatiomns of Interface of Composite Materials. ACTA MATERIAE COMPOSITAE SINICA, 1999, 16(4), 130-135.

Google Scholar

[8] Zhao Yinghua, Yu Guangfan. Influence of Matrix Pores on the Elastic Properties of Ribbon Reinforced Composite. Journal of Shengyang Architectural and Civil engineering Institute, 1996, 12(2), 128-125.

Google Scholar

[9] Zhao Yinghua. the Elastoplastic Properties of Elliptic Cylinder Reinforced Composite. ACTA MATERIAE COMPOSITAE SINICA, 1993, 10(1), 109-119.

Google Scholar