期刊文献+

复合材料机身结构件冲击模拟与吸能特性研究 被引量:3

Impact simulation and energy absorption characteristics investigation of composite fuselage structures
原文传递
导出
摘要 对具有吸能子地板的全复合材料机身结构进行了垂直向7.9m/s的抗坠毁数值模拟,得到平均加速度、速度及撞击载荷值等动态冲击参数,考虑采用不同的评价方法来评估其抗坠毁特性。并对全复合材料机身结构进行分块设计,考虑在冲击过程中起关键作用的底部结构中加入吸能泡沫,最后利用专业的瞬态动力学软件对有限元设计模型进行了冲击模拟,并与测试结果进行了比较,结果满足抗坠毁设计相应规范要求。计算得到的平均加速度不超过13g,其相对误差不大于11%,撞击载荷最大不超过6kN,坠毁平均负加速度持续时间不超过0.03s,结果较合理。利用本模型可以指导直升机的抗坠毁设计。 After the 7.9 m/s vertical drop anti-crash simulation of a full scale composite fuselage structure with en- ergy-absorbing subfloor, the corresponding dynamic impact parameters of the average acceleration, velocity and impact force of the structure were obtained. Different assessment methods were considered to evaluate the crashworthiness characteristics of the structure. The full scale composite fuselage structure was divided into different sections in the design, and the energy-absorbing foam was added into the bottom structure of the fuselage section. The calculated results indicate that the crashworthiness design can meet the corresponding specifications. The impact simulation was carried out using the professional nonlinear explicit transient dynamic finite element software. Compared with the test results, the calculated average acceleration does not exceed 13g, with the relative error being less than 11%. The maximum vertical impact load is less than 6 kN, and the persistent time of the average minus acceleration of crash is not more than 0.03 s. All these results are reasonable. The model can be used for the anti-crash design of the helicopter.
出处 《复合材料学报》 EI CAS CSCD 北大核心 2015年第4期1159-1165,共7页 Acta Materiae Compositae Sinica
基金 国家"973"计划(2011CB606105)
关键词 抗坠毁 复合材料机身结构 吸能子地板 冲击模拟 平均加速度 anti-crash composite fuselage structure energy-absorbing subfloor impact simulation average accel eration
  • 相关文献

参考文献17

  • 1任毅如,向锦武,罗漳平,郑建强.飞行器机身结构耐撞性分析与设计[J].工程力学,2013,30(10):296-304. 被引量:16
  • 2Carruthers J J, Kettle A P, Robinson A M. Energy absorp- tion capability and crashworthiness of composite material structures[J]. Applied Mechanics Reviews, 1998, 51(10): 635-649.
  • 3Farley G L, Jones R M. Analogy for the effect of material and geometrical variables on energy-absorption capability of composite tubes[J]. Journal of Composite Materials, 1992, 26(1) : 78-89.
  • 4Rahul S S, Velmurugan R, Gupta N K. Influence of fiber orientation and thickness on the response of glass/epoxy com- posites subjected to impact loading[J]. Composites:Part B, 2014, 60 (4):627-636.
  • 5Hu D Y, Yang J L, Hu M H. Full-scale vertical drop test and numerical simulation of a crashworthy helicopter seat/oc- cupant system[J]. International Journal of Crashworthiness, 2009, 14(6): 565-583.
  • 6Beheshti H K, Lankarani H M. A simplified test methodolo- gy for crashworthiness evaluation of aircraft seat cushions [J]. International Journal of Crashworthiness, 2006, 11(1) : 27-35.
  • 7Celal E, Mtifit G. An experimental investigation on the im- pact response of composite materials[J]. International Jour- nal of Impact Engineering, 2012, 43 (5): 40-51.
  • 8Rasoul N, All R S. Study of foam density variations in com- posite sandwich panels under high velocity impact loading[J]. International Journal of Impact Engineering, 2014, 63 (1) : 129-139.
  • 9LUO Cheng,LIU Hua,YANG Jia-ling,LIU Kai-xin.Simulation and Analysis of Crashworthiness of Fuel Tank for Helicopters[J].Chinese Journal of Aeronautics,2007,20(3):230-235. 被引量:7
  • 10Marco A, Luigi-Maria L. Castelletti, et al. Survey of numer- ical approaches to analyse the behavior of a composite skin panel during a water impact[J]. International Journal of Im- pact Engineering, 2014, 63(1): 43-51.

二级参考文献21

  • 1戈嗣诚,黄礼耀.直升机抗坠毁座椅用智能气囊缓冲器初步研究[J].洪都科技,2002(3):12-17. 被引量:5
  • 2LUO Cheng,LIU Hua,YANG Jia-ling,LIU Kai-xin.Simulation and Analysis of Crashworthiness of Fuel Tank for Helicopters[J].Chinese Journal of Aeronautics,2007,20(3):230-235. 被引量:7
  • 3CCAR-25-R2,中国民用航空条例第25卷[S]
  • 4[2]杨嘉陵,吴卫华,赵岩.直升机抗坠毁性能评估分析报告[R].科学技术报告,2000
  • 5Von Karman T. The inpact on seaplane floats during landing[R]. NACA-TN-321,1929.
  • 6Miloh T. On the oblique water entry problem of a rigid sphere[J]. J Eng Math, 1991,25 (1) : 77-92.
  • 7Lu C, He Y. Nonlinear fluid-structure interaction during two dimensional water impacts [C] // Proceedings of the 3rd International Conference on Nonlinear Mechanics. Shanghai, China: [s. n.], 1998:513-7.
  • 8Sottorf W. Landing procedure in model ditching tests of B f109 [R]. NACA-Tm-1247,1945.
  • 9Fisher Lloyd J, Hoffman Edward L. Ditching tests of a 1/15 scale model of the Fairchild c-82 airplane [R]. NACA. S18JO8,1948.
  • 10何欢,陈国平,张家滨.带油箱结构的机身框段坠撞仿真分析[J].航空学报,2008,29(3):627-633. 被引量:18

共引文献34

同被引文献23

引证文献3

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部