The objective of this paper is to investigate the effects of geometrical parameters such as the edge distance-to-hole diameter ratio {e/d}, plate width-to-hole diameter ratio {w/d}, and the distance between two holes-to-hole diameter ratio {l/d} on stress distribution in a unidirectional composite laminate with two serial pin-loaded holes, analytically and numerically. It is assumed that all short and long fibers lie in one direction while loaded by a force po at infinity. To derive differential equations based on a shear lag model, a hexagonal fiber-array model is considered. The resulting pin loads on composite plate are modeled through a series of spring elements accounting for pin elasticity. The analytical solutions are, moreover, compared with the detailed 3D finite element values. A close match is observed between the two methods. The presence of the pins on shear stress distribution in the laminate is also examined for various pin diameters.
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March 2013
Research-Article
Analytical Study of Two Pin-Loaded Holes in Unidirectional Fiber-Reinforced Composites
Mohammad Mahdi Attar
Mohammad Mahdi Attar
1
Department of Mechanics,
Hamadan Branch,
e-mail: Attarmm2010@yahoo.com
Hamadan Branch,
Islamic Azad University
,Hamadan
, Iran
e-mail: Attarmm2010@yahoo.com
1Corresponding author.
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Mohammad Mahdi Attar
Department of Mechanics,
Hamadan Branch,
e-mail: Attarmm2010@yahoo.com
Hamadan Branch,
Islamic Azad University
,Hamadan
, Iran
e-mail: Attarmm2010@yahoo.com
1Corresponding author.
Contributed by the Applied Mechanics Division of ASME for publication in the JOURNAL OF APPLIED MECHANICS. Manuscript received September 5, 2011; final manuscript received July 10, 2012; accepted manuscript posted July 25, 2012; published online January 22, 2013. Assoc. Editor: Anthony Waas.
J. Appl. Mech. Mar 2013, 80(2): 021004 (6 pages)
Published Online: January 22, 2013
Article history
Received:
September 5, 2011
Revision Received:
July 10, 2012
Accepted:
July 25, 2012
Citation
Mahdi Attar, M. (January 22, 2013). "Analytical Study of Two Pin-Loaded Holes in Unidirectional Fiber-Reinforced Composites." ASME. J. Appl. Mech. March 2013; 80(2): 021004. https://doi.org/10.1115/1.4007226
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