上海交通大学学报(自然版) ›› 2014, Vol. 48 ›› Issue (06): 883-887.
收稿日期:
2013-07-14
Received:
2013-07-14
摘要:
中图分类号:
陈鸣1,彭雄奇1,石少卿2,杨华正3. 薄膜超弹性本构模型及其在空气垫中的应用[J]. 上海交通大学学报(自然版), 2014, 48(06): 883-887.
CHEN Ming1,PENG Xiongqi1,SHI Shaoqing2,YANG Huazheng3. A Hyperelastic Constitutive Model for Membrane and Its Application in Air Cushion[J]. Journal of Shanghai Jiaotong University, 2014, 48(06): 883-887.
[1]任冬远. 空气垫在受到跌落冲击时的缓冲机理及性能研究[D]. 无锡: 江南大学机械工程学院, 2008. [2]赵德坚.充气量对充气缓冲包装垫缓冲性能的影响研究[J].包装工程,2011,32(13):3234. ZHAO Dejian. On influence of gas volume on cushioning property of air cushion[J]. Packaging Engineering, 2011, 32(13):3234. [3]Chen M R, Zhang J F. Optimal design of cushion package for airdrop system[J]. Applied Mechanics and Materials, 2012, 200:617620. [4]Gunawan F. Numerical modelling and experimental verification of airbag for packaging material application[J]. International Journal, 2012,7(1):6468. [5]Wang J, Chen J L, Ji H W. Numerical analysis for loadbearing capacity and cushioning performance of structural unit of molded pulp product[C]//2011 International Conference on Electric Information and Control Engineering. Wuhan: IEEE Computer Society, 2011: 33873390. [6]Liu C, Zhang L, Shen X. CAD Applications of constitutive model of foamed cushioning materials[J]. Packaging Engineering, 2012, 33(13): 6365. [7]MayNewman K, Lam C, Yin F C P. A hyperelastic constitutive law for aortic valve tissue[J]. Journal of Biomechanical Engineering, 2009, 131(8): 81009.181009.7. [8]龚科家,危银涛,叶进雄.填充橡胶超弹性本构参数试验与应用[J].工程力学,2009,26(6):193198. GONG Kejia, WEI Yintao, YE Jinxiong. Constitutive parametric experiment of tire rubber hyperelastic laws with application[J]. Engineering Mechanics, 2009, 26(6):193198. [9]Laprade E J, Long R, Pham J T, et al. Large deformation and adhesive contact studies of axisymmetric membranes[J]. The ACS Journal of Surfaces and Colloids, 2013, 29(5): 14071419. [10]Pearce S. Effect of strainenergy function and axial prestretch on the bulges, necks and kinks forming in elastic membrane tubes[J]. Mathematics and Mechanics of Solids, 2012, 17(8): 860875. [11]Kim B, Lee S B, Lee J, et al. A comparison among NeoHookean model, MooneyRivlin model, and Ogden model for chloroprene rubber[J]. International Journal of Precision Engineering and Manufacturing, 2012, 13(5): 759764. [12]Sasso M, Palmieri G, Chiappini G, et al. Characterization of hyperelastic rubberlike materials by biaxial and uniaxial stretching tests based on optical methods[J]. Polymer Testing, 2008, 27(8): 9951004. [13]Meunier L, Chagnon G, Favier D, et al. Mechanical experimental characterisation and numerical modelling of an unfilled silicone rubber[J]. Polymer Testing, 2008, 27(6): 765777. [14]Ahmed A S, Computational continuum mechanics[M]. New York: Cambridge University Press,2008:144145. [15]Hu S F, Chen X X, Li H, et al. Quasi static compression characteristic of PP/wood flour foams[J]. Polymer Materials Science & Engineering, 2012,28(11):5658. [16]任冬远,卢立新.空气垫几何压缩模型的研究[J].包装工程,2008,29(2):1214. REN Dongyuan, LU Lixin. Research on the geometry modeling of airbag in static compression [J]. Packaging Engineering, 2008,29(2):1214. |
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