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Bending collapse theory of thin-walled twelve right-angle section beams filled with aluminum foam

机译:泡沫铝填充薄壁十二个直角截面梁的弯曲破坏理论

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This paper aims at studying the bending collapse behavior of the thin-walled twelve right-angle section (TTRS) beams filled with aluminum foam. This paper presents the theoretical bending characteristics of the TTRS-typed aluminum foam around two axes. Considering the contribution degree of thin-walled beam and aluminum foam in different angle range, the expressions of the bending moments are derived. The accuracy of the theoretical calculations are validated by performing 14 groups finite element simulations respectively including three kinds of aluminum foams with certain scope of plateau stress (1-12.5 MPa) and corresponding density (0.2-0.52 g/cm(3)). The results show that the bending collapse theory proposed in this paper can reflect the mechanical properties of the TTRS beams filled with aluminum foam accurately, and the moment-rotation curves calculated by theory are in good agreement with simulation results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在研究填充泡沫铝的薄壁十二个直角截面(TTRS)梁的弯曲破坏行为。本文介绍了TTRS型泡沫铝绕两个轴的理论弯曲特性。考虑到不同角度范围内薄壁梁和泡沫铝的贡献程度,推导了弯矩的表达式。通过分别进行14组有限元模拟,包括三种具有一定平台应力范围(1-12.5 MPa)和相应密度(0.2-0.52 g / cm(3))的铝泡沫,可以验证理论计算的准确性。结果表明,本文提出的弯曲塌陷理论可以准确反映泡沫铝填充的TTRS梁的力学性能,理论计算的弯矩-旋转曲线与仿真结果吻合良好。 (C)2015 Elsevier Ltd.保留所有权利。

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