Improved thermo-mechanical-viscoelastic analysis of laminated composite structures via the enhanced Lo-Christensen-Wu theory in the laplace domain

Citations

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초록

An enhanced Lo-Christensen-Wu (LCW) theory is defined in the Laplace domain to predict the thermo-mechanical-viscoelastic behavior of long-term composite structures. The primary objective herein is to systematically extract the computational benefits of the conventional LCW and fifth-order zigzag model via the mixed variational theorem (MVT). Furthermore, the Laplace transform is employed to circumvent the numerical complexity of viscoelastic analysis. The relationships between the two fields were derived using the MVT constraint equations in the Laplace domain. Consequently, the proposed theory has the C-0-based computational benefits as the conventional LCW, while improving the solution accuracy for long-term thermo-mechanical-viscoelastic behaviors.

키워드

Laminated composite structures; mixed variational theorem; thermo-mechanical-viscoelastic analysis; Laplace transform; transverse normal strain effect; SHEAR DEFORMATION-THEORY; ORDER ZIGZAG THEORY; FINITE-ELEMENT FORMULATION; SANDWICH PLATES; INTERLAMINAR STRESSES; MULTILAYERED COMPOSITE; LAYERWISE THEORIES; FREE-VIBRATION; SINGLE-LAYER; TRANSFORM
제목
Improved thermo-mechanical-viscoelastic analysis of laminated composite structures via the enhanced Lo-Christensen-Wu theory in the laplace domain
저자
Nguyen, Sy-Ngoc; Cho, Maenghyo; Kim, Jun-Sik; Han, Jang-Woo
DOI
10.1080/15376494.2022.2064571
발행일
2023-07
유형
Article
저널명
Mechanics of Advanced Materials and Structures
권
30
호
14
페이지
2899 ~ 2915