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3-D finite element analysis for thermo-mechanical behavior of laminated carbon-phenolic composite ring

Yi-jun Yoo* and Sun-pyo Lee
The Journal of Mechanical Science and Technology, vol. 25, no. 7, pp.1775-1780, 2011

Abstract : In this paper, the thermal insulator structure of a real rocket which is fabricated in a way that laminated composite rings are connected in series is analyzed using 3-dimensional axisymmetric finite element models. Simulation of cowl zone using real operating conditions provides that the stress distribution in the laminated composite ring is largely influenced by ply-angles, axial dimensions, and boundary conditions. It is hypothesized that notably the ply-lift that is the precursor to the wedge-out occurs in the ring-to-ring bonding region to a limited ply angle. Moreover, it is suggested that the wedge-out is dropped out due to the maximum shear stress in a fixed ply-angle direction and the axial compressive stress.

Keyword : Carbon-Phenol; Finite element analysis; Laminated composite; Thermo-mechanical behavior

 
 
 
 
 
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