Effect of Post-Cured through Thickness Reinforcement on Disbonding Behavior in Skin–Stringer Configuration

Author:

Bhagatji Jimesh D.1ORCID,Morris Christopher1,Sridhar Yogaraja1,Bhattacharjee Bodhisatwa1,Kaipa Krishnanand N.1,Kravchenko Oleksandr G.1ORCID

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Old Dominion University, Norfolk, VA 23529, USA

Abstract

An experimental investigation of interlaminar toughness for post-cured through-thickness reinforcement (PTTR) skin–stringer sub-element is presented. The improvement in the crack resistance capability of skin–stringer samples was shown through experimental testing and finite element analysis (FEA) modeling. The performance of PTTR was evaluated on a pristine and initial-disbond of the skin–stringer specimen. A macro-scale pin–spring modeling approach was employed in FEA using a non-linear spring to capture the pin failure under the mixed-mode load. The experimental results showed a 15.5% and 20.9% increase in strength for the pristine-PTTR and initial-disbond PTTR specimens, respectively. The modeling approach accurately represents the overall structural response of PTTR laminate, including stiffness, adhesive strength, crack extension scenarios and progressive pin failure modes. This modeling approach can be beneficial for designing damage-tolerant structures by exploring various PTTR arrangements for achieving improved structural responses.

Funder

Virginia Space Grant Consortium

Publisher

MDPI AG

Reference43 articles.

1. Dickson, J.N., and Biggers, S.B. (1980). Design and Analysis of a Stiffened Composite Fuselage Panel.

2. Minimum weight design of curvilinearly grid-stiffened variable-stiffness composite fuselage panels considering buckling and manufacturing constraints;Alhajahmad;Thin-Walled Struct.,2021

3. Bhagatji, J.D., Kravchenko, O.G., and Asundi, S. (2024). Mechanics of Pure Bending and Eccentric Buckling in High-Strain Composite Structures. Materials, 17.

4. Adams, R.D. (2021). 16-Adhesive bonding of composites. Adhesive Bonding, Woodhead Publishing. [2nd ed.].

5. Mixed-mode fracture toughness of co-cured and secondary bonded composite joints;Mohan;Eng. Fract. Mech.,2015

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