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Geometric effects of cross sections on equilibrium of helical and twisted ribbon 被引量:1

Geometric effects of cross sections on equilibrium of helical and twisted ribbon
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摘要 In the framework of elastic rod model, the Euler-Lagrange equations characterizing the equilibrium configuration of the polymer chain are derived from a free energy functional associated with the curvature, torsion, twisting angle, and its derivative with respect to the arc-length. The configurations of the helical ribbons with different cross-sectional shapes are given. The effects of the elastic properties, the cross-sectional shapes, and the intrinsic twisting on the helical ribbons are discussed. The results show that the pitch angle of the helical ribbon decreases with the increase in the ratio of the twisting rigidity to the bending rigidity and approaches the intrinsic twisting. If the bending rigidity is much greater than the twisting rigidity, the bending and twisting of the helical ribbon always appear simultaneously. In the framework of elastic rod model, the Euler-Lagrange equations characterizing the equilibrium configuration of the polymer chain are derived from a free energy functional associated with the curvature, torsion, twisting angle, and its derivative with respect to the arc-length. The configurations of the helical ribbons with different cross-sectional shapes are given. The effects of the elastic properties, the cross-sectional shapes, and the intrinsic twisting on the helical ribbons are discussed. The results show that the pitch angle of the helical ribbon decreases with the increase in the ratio of the twisting rigidity to the bending rigidity and approaches the intrinsic twisting. If the bending rigidity is much greater than the twisting rigidity, the bending and twisting of the helical ribbon always appear simultaneously.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2017年第4期495-504,共10页 应用数学和力学(英文版)
基金 Project supported by the National Natural Science Foundation of China(No.11172130)
关键词 Euler-Lagrange equation twisting angle pitch angle elastic rod model helical and twisted ribbon Euler-Lagrange equation, twisting angle, pitch angle, elastic rod model, helical and twisted ribbon
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