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J4  2012, Vol. 46 Issue (8): 1431-1436    DOI: 10.3785/j.issn.1008-973X.2012.08.012
机械工程     
串联缓冲结构压缩响应虚拟质量分析
卢富德1, 陶伟明1, 高德2
1. 浙江大学 航空航天学院,浙江 杭州 310027;2. 浙江大学 宁波理工学院,浙江 宁波315100
Compression responses of series cushioning structures
by a virtual mass method
LU Fu-de1, TAO Wei-ming1, GAO De2
1. School of Aeronautics and Astronautics, Zhejiang University,Hangzhou 310027, China;
2. Ningbo Institute of Technology, Zhejiang University, Ningbo 315100, China
 全文: PDF 
摘要:

为研究串联缓冲结构的压缩响应,基于缓冲材料的本构关系,提出虚拟质量方法.该方法通过引入虚拟质量,将串联缓冲结构的准静态压缩用动态方程表示,并采用Runge-Kutta法求解.对EBE楞瓦楞纸板和发泡聚乙烯的3种组合串联板的等效应力-应变关系进行分析, 计算结果与试验数据吻合较好,验证了提出方法的有效性;分析讨论串联数量和串联顺序对等效应力-应变曲线的影响,计算结果表明,瓦楞纸板串联结构的等效应力-应变曲线上峰值点数等于串联结构中瓦楞芯纸的数目,而发泡聚乙烯串联结构的应力-应变曲线不随串联数的变化而变化,材料的串联顺序对串联缓冲结构的等效性能影响不大.

关键词: 串联缓冲结构本构关系虚拟质量发泡聚乙烯瓦楞纸板    
Abstract:

In order to investigate the compression responses of series cushioning structures, a virtual mass method was proposed on the basis of constitutive relationship of the fundamental materials. By introducing virtual masses into the model, the quasi-static compression of the structures was represented by dynamic equations, which were solved by Runge-Kutta method.  The equivalent stress-strain relations of three kinds of series structures combining expanded polyethylene layers and/or corrugated boards were analyzed by the present method. The results show good agreement with the experimental data, which demonstrates the effectiveness of the method. The effects of series layer number and stack sequence on equivalent stress-strain relations were then discussed. The results show that the number of peak points on stress-strain curves is equal to the number of corrugating media for series structures of corrugated board. However, the number of expanded polyehylene layers has no effect on stress-strain responses of the structures of pure expanded polyethylene. Furthermore, the stack sequence of materials can barely affects the equivalent properties of series cushioning structures.

Key words: series cushioning structure    constitutive relationship    virtual mass method    expanded polyethylene    corrugated board
出版日期: 2012-09-03
:  TB 485.1  
基金资助:

国家“十二五”科技支撑资助项目(2011BAD24B01).

通讯作者: 陶伟明,男,教授,博导.     E-mail: taowm@zju.edu.cn
作者简介: 卢富德(1982—),男,博士生,从事缓冲材料力学模型研究.E-mail: lu673153@163.com
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引用本文:

卢富德, 陶伟明, 高德. 串联缓冲结构压缩响应虚拟质量分析[J]. J4, 2012, 46(8): 1431-1436.

LU Fu-de, TAO Wei-ming, GAO De. Compression responses of series cushioning structures
by a virtual mass method. J4, 2012, 46(8): 1431-1436.

链接本文:

http://www.zjujournals.com/xueshu/eng/CN/10.3785/j.issn.1008-973X.2012.08.012        http://www.zjujournals.com/xueshu/eng/CN/Y2012/V46/I8/1431

[1] 熊志远,张俊彦,毛快.密度和应变率对聚苯乙烯泡沫(EPS)准静态压缩力学行为的影响[J].材料科学与工程学报,2007,25(4): 606-608.
XIONG Zhiyuan,ZHUANG Junyan,MAO Kuai. Effects of density and strain rate on quasistatic compressive behavior of EPS [J].Journal of Materials Science and Engineering, 2007,25(4): 606-608.
[2] MILLS N J, STAMPFL I R, MARONE F, et al. Finite element micromechanics model of impact compression of closedcell polymer foams [J]. International Journal of Solids and Structures, 2009, 46(3/4): 677-697
[3] 高德,卢富德.聚乙烯缓冲材料多自由度跌落包装系统优化设计\
[J\].振动与冲击,2012,31(3): 69-72.
GAO De, LU Fude. Optimization design of MDOF package cushioning system made of polyethylene [J]. Journal of Vibration and Shock, 2012,31(3): 69-72.
[4] 王冬梅,王志伟.纸蜂窝压缩密实化应变评估[J].机械工程学报,2009,45(5): 285-289.
WANG Dongmei,WANG Zhiwei. Evaluation of densification strain of paper honeycombs [J]. Journal of Mechanical Engineering, 2009,45(5): 285-289.
[5] E Y P, WANG Z W. Effect of relative humidity on energy absorption properties of honeycomb Paperboards [J]. Packaging Technology and Science,2010,23(8): 471-483.
[6] 卢富德,高德.C楞瓦楞纸板动态缓冲模型及应用[J].功能材料,2012,43(1): 39-41.
LU Fude, GAO De. Cushion model and its application of Cflute corrugated paperboard [J]. Journal of Functional Materials, 2012,43(1): 39-41.
[7] SEK M., ROUILLARD V, TARASH H, et al. Enhancement of cushioning performance with paperboard crumple inserts[J]. Packaging Technology and Science,2005,18(5): 273-278
[8] MINETT M.A study of air flow effects on the cushioning characteristics of multi layered precompressed fiberboard [D]. Melbournem: Victoria University, 2006.
[9] ROUILLARD V, SEK M A. Behaviour of multilayered corrugated paperboard cushioning systems under impact loads [J]. Strain, 2007, 43(4): 345-347.
[10] GARCIAROMEUMARTINEZ M A, SEK M, CLOQUELLBALLESTER V A. Effect of initial precompression of corrugated paperboard cushions on shock attenuation characteristics in repetitive impacts [J]. Packaging Technology and Science,2009,22(6): 323-334.

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