Prediction of elastic modulus of rectangular composite platereinforced by aligned carbon nanotubes (CNTs) by threedimensional finite element method

سال انتشار: 1392
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 925

فایل این مقاله در 9 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

WMECH02_091

تاریخ نمایه سازی: 21 تیر 1393

چکیده مقاله:

In this article, the elastic modulus of rectangular composite plate reinforced by aligned carbon nanotubes (CNTs) are computed by three dimensional finite element method (3D-FEM). A small slice of composite plate including the matrix and fiber is chosen for this approach. Various shapes of this slice such as square, rectangular, circular and hexagonal are considered and two cases of fiber settlement in matrix (center and corner) are examined. Compression between experimental and FEM results showed that the center cylindrical FE model has the lowest error for longitude modulus. Then, FEM results for elastic modulus of rectangular composite plate reinforced by CNTs are compared bydifferent theoretical approaches such as the extended mixture role, Halpin-Tsai and Eshelby-Mori-Tanaka approaches. This compression showed that results of Eshelby-Mori-Tanaka approach have a good agreement with the obtained FEM results for the elastic modulus of rectangular composite plate.

کلیدواژه ها:

Elastic modulus ، Rectangular composite plate ، Aligned carbon nanotubes (CNTs) ، Finite element method (FEM)

نویسندگان

M Mohammadimehr

Assistant Professor

B Rousta

PhD Student

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Yeh, M. K. et al. (2008), Material Science Engineering. A ...
  • Iijima, S. and Ichihashi, T. (1993), Nature 363, 5-603. ...
  • Hernandez, J. J. et al. (209), Composite Science Technology 69, ...
  • Halpin, J. C. (1969), Journal of composite material 3, 4-732. ...
  • Mori, T. and Tanaka, K. (1973), Acta Metall 21, 4-571. ...
  • Benveniste, Y. (1987), mechanical material 6, 57-147. ...
  • Hull, D. and Clyne, T. W. (1996), England: Cambridge University ...
  • Qian, D. et al. (2000), Applied Physics Letters 7(20): 70-2868. ...
  • Enomoto, K. et al. (2004), New Diamond Frontier Carbon Technology ...
  • Satapathy, B. K. et al. (205), Macromo lecular Rapid Comm ...
  • Tang, W. et al (2003), Carbon 41, 85-2779. ...
  • Gorga, R. E. and Cohen, R. E. (2004), Journal of ...
  • Coleman, J. N. et al. (2004), Advanced Functional Materials 14(8), ...
  • Ye, H. et al. (2004), Applied Physics Letters 85(10), 7-1775. ...
  • Allaoui, A. et al. (2002), Composites Science and Technology 62, ...
  • Giannopoulos, G. I. et al. (2010), Composites: Part B 41, ...
  • Matin Ghahfarokhi, Z., and Golestanian, H. (2011), Computational Materials Science ...
  • Ayatollahi, M. R. et al. (2011), Composite Structures 93, 2250-2259. ...
  • Kundalwal, S. I. and Ray, M. C. (2012), Mechanics of ...
  • Dastgerdi, J. et al. (2013), Composites Science and Technology 86, ...
  • Achaby, M. E. and Qaiss, A. (2013), Materials and Design ...
  • Rocio Misiego, C. and Byron Pipes, R. (2013), Composites Science ...
  • Shirkavand Hadavand, _ et al. (2013), Materials and Design 50, ...
  • Joshi, P. and Upadhyay, S.H. (2014), Computational Materials Science 81, ...
  • Hill, R. (1965), Journal of Mechanical Physics and Solids, 13, ...
  • Gomez-del Rio, T. et al. (2010), Composites Science and Technology ...
  • نمایش کامل مراجع