全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2015 

空心及PMI泡沫填充铝波纹夹芯梁冲击性能实验研究
Experimental Investigation on Impact Response of Aluminum Corrugated Sandwich Beams with Empty and PMI Foam Filling

DOI: 10.7652/xjtuxb201501014

Keywords: 三明治结构,泡沫填充,动态冲击实验
sandwich structure
,foam filling,impact experiment

Full-Text   Cite this paper   Add to My Lib

Abstract:

为了提高油罐车罐体在冲击载荷下的强度和耐撞性,提出了两种三明治结构:空心和PMI泡沫填充率波纹夹心结构,来代替传统的均质结构,通过泡沫块冲击实验,对两种构型的三明治夹芯梁的冲击性能进行了研究。通过高速摄影观察了夹芯梁的变形过程,得出了在不同冲击速度下同质量不同芯体结构的夹芯梁后面板所产生位移的时程曲线,考察了两种类型夹芯梁在冲击载荷下的后面板中点位移及各自的变形特点。实验结果表明:空心波纹夹芯梁在速度较高的冲击载荷作用下,前面板在冲击区域发生撕裂,波纹芯体发生较大幅度的压缩;相对于空心夹芯梁,PMI泡沫填充夹芯梁前面板的撕裂和芯体的压缩程度大幅减小,但后面板中点位移较空心夹芯梁更大。由于结构的撕裂在罐车的行进过程中容易扩展并至更严重的破坏,因而填充夹芯结构相对空心结构更具优势。
Two corrugated aluminum sandwich structures with empty and PMI foam filling are proposed to improve the strength and crashworthiness of oil tank structure under impact loading, and to provide substitutes for traditional monolithic counterpart. Aluminum foam projectile impact test is conducted to investigate the dynamic performance of the sandwich beams with the two proposed configurations. High??velocity photography is employed to capture the features of the beam deflecting process. The deflection history at the mid??span of the back face, as well as the deformation and failure modes, is studied for different sandwich beams with same total weight. Experimental results show that when impact velocities are relatively high, the corrugated core of empty sandwiches is significantly compressed and the front face experiences large scale indentation and severe tearing, whereas both core compression and front face tearing in foam??filled sandwiches are significantly reduced as a result of foam filling. The back face deflection of a foam??filled sandwich is nonetheless larger than that of an empty sandwich. From a realistic point of view, the filled sandwich is preferable compared to the empty sandwich

References

[1]  [2]EVANS A G, HUTCHINSON J W, FLECK N A, et al. The topological design of multifunctional cellular metals [J]. Progress in Materials Science, 2001, 46(3/4): 309??327.
[2]  [3]YAN Leilei, YU Bo, HAN Bin, et al. Compressive strength and energy absorption of sandwich panels with aluminum foam??filled corrugated cores [J]. Composites Science and Technology, 2013, 86: 142??148.
[3]  [4]VAZIRI A, XUE Z, HUTCHINSON J W. Metal sandwich plates with polymer foam??filled cores [J]. Journal of Mechanics of Materials and Structures, 2006, 1(1): 97??127.
[4]  [5]NI Changye, LI Yuchun, XIN Fengxian, et al. Ballistic resistance of hybrid??cored sandwich plates: numerical and experimental assessment [J]. Applied Science and Manufacturing: Part A, 2013, 46: 69??79.
[5]  [6]田培培, 赵桂平, 卢天健. 具有填充材料的金属格栅夹层板在高速冲击下动态响应的数值分析 [J]. 应用力学学报, 2009, 26(4): 788??792.
[6]  TIAN Peipei, ZHAO Guiping, LU Tianjian. Numerical analysis for dynamic response of sandwich plates with lattice and filling under impact loading [J]. Chinese Journal of Applied Mechanics, 2009, 26(4): 788??792.
[7]  [7]YU Jilin, WANG Erheng, LI Jianrong, et al. Static and low velocity impact behavior of sandwich beams with closed??cell aluminum??foam core in three??point bending [J]. International Journal of Impact Engineering, 2008, 35(8): 886??894.
[8]  [8]HANSSEN A G, GIRARD Y, OLOVSSON L, et al. A numerical model for bird strike of aluminium foam??based sandwich panels [J]. International Journal of Impact Engineering, 2006, 32(7): 1127??1144.
[9]  [9]RADFORD D D, DESHPANDE V S, FLECK N A. The use of metal foam projectiles to simulate shock loading on a structure [J]. International Journal of Impact Engineering, 2005, 31(9): 1152??1171.
[10]  [10]RADFORD D D, FLECK N A, DESHPANDE V S. The response of clamped sandwich beams subjected to shock loading [J]. International Journal of Impact Engineering, 2006, 32(6): 968??987.
[11]  [12]宋延泽, 王志华, 赵隆茂, 等. 泡沫金属子弹冲击下多孔金属夹芯板动力响应研究 [J]. 兵工学报, 2011, 32(1): 1??7.
[12]  SONG Yanze, WANG Zhihua, ZHAO Longmao, et al. Investigation on dynamic response of sandwich plate to the impact of cellular metallic projectile [J]. Acta Armamentarii, 2011, 32(1): 1??7.
[13]  [1]WADLEY H N G. Multifunctional periodic cellular metals [J]. Philosophical Transactions of the Royal Society: A, 2006, 364(1838): 31??68.
[14]  [11]UTH T, DESHPANDE V S. Response of clamped sandwich beams subjected to high??velocity impact by sand slugs [J]. International Journal of Impact Engineering, 2014, 69: 165??181.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133