欢迎登录材料期刊网

材料期刊网

高级检索

夹芯材料具有轻质、高强、功能多样等优点,因而在工程领域受到重视.首先对夹芯材料进行分类,对不同芯材夹芯材料的力学性能、动态响应和性能特点进行研究.概述夹芯材料的发展现状.最后对夹芯材料在防护结构中应用的可行性进行分析,提出夹芯材料在防护结构中应用可能存在的问题.

参考文献

[1] Crupi V;Montanini R .Aluminium foam sandwiches colapse modes under static and dynamic three-point bending[J].Impact Engineering,2007,34(03):509-513.
[2] 帝吉斯切;克雷兹特;左孝青;周芸.多孔泡沫金属[M].北京:化学工业出版社,2005
[3] Born C;Kuckert H;Wagner G et al.Ultrasonic torsion welding of sheet metals to cellular metallic[J].Advances in Engineering Materials,2003,5(11):779-786.
[4] Kathuria YP. .A preliminary study on laser assisted aluminum foaming[J].Journal of Materials Science,2003(13):2875-2881.
[5] Kitazono K.;Kitajima A.;Sato E.;Matsushita J.;Kuribayashi K. .Solid-state diffusion bonding of closed-cell aluminum foams[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(2):128-132.
[6] Heiko Stanzick;Manfred Wichmann;Jorg Weise;Lukas Helfen;Tilo Baumbach;John Banhart .Process control in aluminum foam production using real-time X-ray radioscopy[J].Advanced Engineering Materials,2002(10):814-823.
[7] Maurer M;Zhao L;Lugscheider E .Surface refinement of metal foams[J].Advances in Engineering Materials,2002,4(10):791-796.
[8] Potluri P .Novel stitch-bonded sandwich composite structure[J].Computers & Structures,2003,59(02):251-258.
[9] 程和法,黄笑梅,薛国宪,韩福生.Shock wave compression behavior of aluminum foam[J].中南工业大学学报(英文版),2003(04):333-337.
[10] H. Kanahashi;T. Mukai;Y. Yamada;K. Shimojima;M. Mabuchi;T. G. Nieh;K. Higashi .Dynamic compression of an ultra-low density aluminum foam[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(2):349-353.
[11] 田杰 .泡沫铝的冲击波衰减和抗爆震特性研究[D].中国科学技术大学,2006.
[12] 程和法,黄笑梅,王强,田杰,韩福生.通孔泡沫铝的动态压缩行为[J].爆炸与冲击,2006(02):169-173.
[13] 王志华,曹晓卿,马宏伟,赵隆茂,杨桂通.泡沫铝合金动态力学性能实验研究[J].爆炸与冲击,2006(01):46-52.
[14] 曾斐,潘艺,胡时胜.泡沫铝缓冲吸能评估及其特性[J].爆炸与冲击,2002(04):358-362.
[15] 胡时胜,王悟,潘艺,周璟,李英华.泡沫材料的应变率效应[J].爆炸与冲击,2003(01):13-18.
[16] Kanahashi H;Mukai T;Yamada Y et al.Dynamic compression of an ultra-low density aluminum[J].Materials Science and Engineering,2000,A280:349-353.
[17] 尚金堂,何德坪.泡沫铝层合梁的三点弯曲变形[J].材料研究学报,2003(01):31-38.
[18] Yu J L;Wang X;Wei Z G et al.Deformance and failure mechanism of dynamically loaded sandwich beams with aluminum-foam core[J].Impact Engineering,2003,28:331-347.
[19] Crupi V;Montanini R .Aluminiun foam sandwiches collapse modes under static and dynamic three-point bending[J].International Journal of Impact Engineering,2007,34:509-521.
[20] Nemat-Nasser S;Kang W J;McGee et al.Experimental investigation of energy-absorption characteristics of components of sandwich structures[J].International Journal of Impact Engineering,2007,34:556-572.
[21] Hanssen A G;Langseth M;Hopperstad O S.Static and dynamic crushing of square aluminium extrusions with aluminum foam filler[J].International of Impact Engineering,2000(24):347-383.
[22] Ma G W;Ye Z Q.Analysis of foam claddings for blast alleviation[J].International of Impact Engineering,2007(34):60-70.
[23] 张明华,赵恒义,谌河水.泡沫铝夹芯板动态抗侵彻性能的实验研究[J].力学季刊,2008(02):241-247.
[24] G. Reyes Villanueva;W.J. Cantwell .The high velocity impact response of composite and FML-reinforced sandwich structures[J].Composites science and technology,2004(1):35-54.
[25] Uday K. Vaidya;Selvum Pillay;Shane Bartus;Chad A. Ulven;Dana T. Grow;Biju Mathew .Impact and post-impact vibration response of protective metal foam composite sandwich plates[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):59-66.
[26] Beals J T;Thompson M S .Density gradient effects on aluminum foam compression behavior[J].Materials Science,1997,32:3595-3600.
[27] Zhao H;Elnasri I;Girard Y .Perforation of aluminum foam core sandwich panels under impact loading-An experimental study[J].International Journal of Impact Engineering,2007,34:1246-1257.
[28] 于英华,杨春红.泡沫铝夹芯结构的研究现状及发展方向[J].机械工程师,2006(03):43-45.
[29] 蒂吉斯切H P;克雷兹特B;左孝青;周芸.多孔泡沫金属[M].北京:化学工业出版社,2005
[30] 符定梅,韩静涛,刘靖,付晨光.钢质蜂窝夹芯板的研究进展[J].航空精密制造技术,2004(03):14-15,30.
[31] 孙杰,朱立新,钟兵,胡金华,王清洁.玻璃钢蜂窝夹层复合材料抗爆性能研究[J].工程塑料应用,2003(03):40-42.
[32] J.P. Dear;H. Lee;S.A. Brown .Impact damage processes in composite sheet and sandwich honeycomb materials[J].International journal of impact engineering,2005(1/4):130-154.
[33] Yoshiaki Yasui .Dynamic axial crushing of multi-layer honeycomb panels and impact tensile behavior of the component members[J].International journal of impact engineering,2000(6/7):659-671.
[34] Kumar P. Dharmasena;Haydn N.G. Wadley;Zhenyu Xue;John W. Hutchinson .Mechanical response of metallic honeycomb sandwich panel structures to high-intensity dynamic loading[J].International Journal of Impact Engineering,2008(9):1063-1074.
[35] 王栋 .双层金属蜂窝夹层结构的设计与力学分析[D].哈尔滨工业大学,2007.
[36] 徐小刚,黄海,贾光辉.蜂窝夹芯板超高速碰撞仿真[J].北京航空航天大学学报,2007(01):18-21.
[37] 杨永祥,张延昌.蜂窝式夹芯层结构横向耐撞性能数值仿真研究[J].江苏科技大学学报(自然科学版),2007(04):7-11.
[38] 郑华勇,吴林志,马力,王新筑.Kagome点阵夹芯板的抗冲击性能研究[J].工程力学,2007(08):86-92.
[39] Wang J.;Evans AG.;Dharmasena K.;Wadley HNG. .On the performance of truss panels with Kagome cores[J].International Journal of Solids and Structures,2003(25):6981-6988.
[40] Hyun S.;Karlsson AM.;Torquato S.;Evans AG. .Simulated properties of Kagome and tetragonal truss core panels[J].International Journal of Solids and Structures,2003(25):6989-6998.
[41] Denis Welch.SPS:the sandwich plate system[M].Intelligent Engineering(UK) Ltd,2007
[42] Jukka S yn j kangas;Tero Taulavuori .A review in design and manufacturing of stainless steel sandwich panels[J].Stainless Steel World,2004,11:21-24.
[43] Kujala P;Romanoff J;Salminen A.All steel sandwich panels[M].Metallic Ollisuuden Keskusliitto,MET,2003
[44] Pimenoff J .Manufacturing sandwich structures by means of superplastic forming.[Helsinki University of Technology Laboratory of Engineering Materials,TKK-MTR-3/00][R].Espoo,2000.
[45] Theobald M D;Nurick G N.Numerical investigation of the response of sandwich-type panels using thin-walled tubes subject to blast loads[J].International of Impact Engineering,2007(34):134-156.
[46] Liang Yueming;Hayhurst D R;Hutchinson J W et al.The response of metallic sandwich to water blast[J].Journal of Applied Mechanics,Transactions of the ASME,2007,74:81-89.
[47] D.D. Radford;N.A. Fleck;V.S. Deshpande .The response of clamped sandwich beams subjected to shock loading[J].International journal of impact engineering,2006(6):968-987.
[48] Chalivendra VB.;Shukla A.;Bose A.;Parameswaran V. .Processing and mechanical characterization of lightweight polyurethane composites[J].Journal of Materials Science,2003(8):1631-1643.
[49] Kim H S;Plubrai P .Manufacturing and failure mechanisms of syntactic foam under compression[J].Composites Part A:Applied Science and Manufacturing,2004,35:1009-1012.
[50] 孙春方,薛元德,李文晓.铝面板PMI泡沫芯夹层材料力学性能研究[J].建筑材料学报,2007(03):364-368.
[51] Cantwell W J;Kiratisaevee H;Akil Hazizan .The low velocity impact response of high-performance sandwich structure[J].WIT Transactions on Engineering Science,2005,49:135-146.
[52] 王成国;郭小燕;李木森 等.钢板-高聚物-钢板层压复合材料的成形性研究[J].机械工程材料,1994,18(03):6-8.
[53] 王章忠,张祖凤.硬质聚氨酯泡沫塑料芯材与夹层结构的研究[J].机械工程材料,2004(01):44-46.
[54] Vaziri A;Xue Z;Hutchinson J W .Mental sandwich plates with polymer foam-filled cores[J].Mathematical Sciences Publishers,2006,1(01):1-32.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%