[1] 梁继云,陆青松,胥峰. 多元胞结构在机车吸能装置中的应用[J]. 机械, 2011, 38(3):1-6. LIANG Jiyun, LU Qingsong, XU Feng. Application of multiple cells structure in the energy-absorbing component of crashworthy vehicles[J]. Machinery, 2011, 38(3):1-6. [2] 龙四营,冯毅雄,高一聪,等. 多面体体胞结构演变机理与抗撞性优化设计研究[J]. 机械工程学报, 2014, 50(11):135-143. LONG Siying, FENG Yixiong, GAO Yicong, et al. Evolvement mechanism of unit cell and crashworthiness optimization design of polyhedron sandwich structure[J].Journal of Mechanical Engineering, 2014, 50(11):135-143. [3] 戸倉直, 萩原一郎. 成形シミュレーションで得られる 加工硬化を考慮したトラスコアパネルの曲げ剛性の 検討[J]. 日本機械学会論文集, 2009, 75:588-594. TOKURA S, HAGIWARA I. A study for bending stiffness of truss core panel with work hardening effect derived from forming simulation[J]. Transactions of the Japan Society of Mechanical Engineers, 2009, 75:588-594. [4] 戸倉直,萩原一郎.トラスコアパネルの製造シミュレ ーション[J]. 日本機械学会論文集, 2010, 4(4):25-35. TOKURA S, HAGIWARA I. Forming process simulation of truss core panel[J]. Journal of Computational Science & Technology, 2010, 4(4):25-35. [5] 斉藤一哉, 武田晃太, 戸倉直, など.新しく開発した 軽量コアパネルの幾何学的パターンとプレス成形性の 関係[J]. 日本機械学会論文集, 2009, 75:381-387. SAITO K, TAKEDA K, TOKURA S, et al. Relation between geometrical patterns and press formabilities in newly developed light-weight core panels[J]. Transactions of the Japan Society of Mechanical Engineers, 2009, 75:381-387. [6] グエン·タイ·タット·ホアン, 寺田耕輔, 戸倉直. ト ラスコアの設計自由度を高めるための折紙工法の開発[J]. 日本機械学会論文集, 2014, 80(819):SMM0314-SMM0314. NGUYEN H T, TERADA K, TOKURA S, et al. Development of origami forming to improve the flexibility of truss core panel design[J]. Transactions of the Japan Society of Mechanical Engineers, 2014, 80(819):SMM0314-SMM0314. [7] TOKURA S, HAGIWARA I. Shape optimization to improve impact energy absorption ability of truss core panel[J]. Journal of Computational Science & Technology, 2011, 5(1):1-12. [8] EVANS AG, HUTCHINSON JW, FLECK NA, et al. The topological design of multifunctional cellular metals[J]. Progress in Materialsence, 2001, 46(3):309-327. [9] 郑华勇,吴林志,马力,等. Kagom点阵夹芯板的抗冲击性能研究[J]. 工程力学, 2007, 24(8):86-92. ZHENG Huayong, WU Linzhi, MA Li, et al. Research on impulse-resistant performance of sandwich panels with kagome truss core[J]. Engineering Mechanics, 2007, 24(8):86-92. [10] WADLEY H, FLECK N A, EVANS A G. Fabrication and structural performance of periodic cellular metal sandwich structures[J]. Composites Science & Technology, 2003, 63(3):2331-2343. [11] ALPERIN R C, LANG R J. One, two, and multi-fold origami axioms[C]//Origami, 2009:371-393. [12] 亓昌,董方亮,杨姝,等. 锥形多胞薄壁管斜向冲击吸能特性仿真研究[J]. 振动与冲击, 2012, 24:102-107. QI Chang, DONG Fangliang, YANG Shu, et al. Energy-absorbing characteristics of a tapered multi-cell thin-walled tube under oblique impact[J]. Journal of Vibration and Shock, 2012, 24:102-107. [13] KIM H S. New extruded multi-cell aluminum profile for maximum crash energy absorption and weight efficiency[J]. Thin-Walled Structures, 2002, 40:311-327. [14] CHEN W, WIERZBICKI T. Relative merits of single-cell, multi-cell and foam-filled thin-walled structures in energy absorption[J]. Thin-Walled Structures, 2001, 39(4):287-306. [15] KURTARAN H, ESKANDARIAN A, MARZOUGUI D, et al. Crashworthiness design optimization using successive response surface approximations[J]. Computational Mechanics, 2002, 29(4-5):409-421. |