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多孔泡沫金属抗侵彻能力研究

Keywords: 泡沫金属,侵彻,变形机理,能量吸收,应变速率

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Abstract:

对泡沫金属材料的动态力学性能及抗侵彻能力的研究成果进行了综述.描述了冲击载荷作用下的变形机理,并分析了影响其抗侵彻能力的主要因素.最后对泡沫金属材料的研究趋势做出展望.

References

[1]  ROBERTS A P,GARBOCZI E J.Elastic moduli of model random three dimensional closed-cell cellular solids[J].Acta Materialia,2001,49(2):189-197.
[2]  LEE Sungsoo,BARTHELET F,MOIDOVAN N,et al.Deformation rate effects on failure modes of open-cell Al foams and textile cellular materials[J].International Journal of Solids and Structures,2006,43:53-73.
[3]  CHOE H,DUNAND D C.Synthesis,structure,and mechanical properties of Ni-Al and Ni-Cr-Al superalloy foams[J]. Acta Materialia,2004,52:1283-1295.
[4]  蒋玉思,郑团,王继民,等.泡沫Ni-32Cr合金的结构及其性能研究[J].材料工程,2006,3:18-21.JIANG Yu-si,ZHENG Tuan,WANG Ji-min,et al.Study on structure and properties of Ni232Cr foams[J].Material Engineering,2006,3:18-21.(in Chinese)
[5]  BADICHE X,FOREST S,GUIBERT T,et al.Mechanical properties and non-homogeneous deformation of open-cell nickel foams:application of the mechanics of cellular solids and of porous materials[J].Materials Science and Engineering: A,2000,289:276-288.
[6]  MILLER R E.A continuum plasticity model for the constitutive and indentation behaviour of foamed metals international [J].Journal of Mechanical Sciences,2000,42:729-754.
[7]  MUKAI T,KANAHASHI H,YAMADA Y,et al.Dynamic compressive behavior of an ultra-lightweight magnesium foam [J].Scripta Materialia,1999,41(4):365-371.
[8]  MIYOSHI T,ITOH M,MUKAI T,et al.Enhancement of energy absorption in a closed cell aluminum by the modification of cellular structures[J].Scripta Materialia,1999,41(10):1055-1060.
[9]  GOLOVIN I S,SINNING H R,G(?)KEN J,et al.Fatigue-related damping in some cellular metallic materials[J]. Materials Science and Engineering,2004,A370:537-541.
[10]  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,2005,31:1152-1171.
[11]  凤仪,朱震刚,潘艺,等.应变速率对闭孔泡沫铝力学性能和能量吸收性能的影响[J].材料热处理学报,2004,25 (2):68-71.FENG Yi,ZHU Zhen-gang,PAN Yi,et al.Influence of strain rate on the mechanical properties and energy absorption capacity of aluminum alloy foam[J].Transactions of Materials and Heat Treatment,2004,25(2):68-71.(in Chinese)
[12]  凤仪,朱震刚,潘艺,等.时效处理对泡沫铝动态力学性能和能量吸收性能的影响[J].金属功能材料,2004,11(3):19-22.FENG Yi,ZHU Zhen-gang,PAN Yi,et al.Effect of aging treatment on the dynamic compressive property and energy absorption capacity of aluminum alloy foams[J].Metallic Functional Materials,2004,11(3):19-22.(in Chinese)
[13]  GREINER C,OPPENHEIMER S M,DUNAND D C.High strength,low stiffness,porous NiTi with superelastic properties[J].Acta Biomaterialia,2005,1:705-716.(in Chinese)
[14]  田杰,胡时胜,蒋家桥,等.泡沫金属材料的孔径效应[J].爆炸与冲击,2004,24(4):347-351.TIAN Jie,HU Shi-sheng,JIANG Jia-qiao,et al.Cell-size effect on mechanical property of aluminum foams[J].Explosion and Shock Waves,2004,24(4):347-351.(in Chinese)
[15]  GOLOVIN I S,SINNING H R.Internal friction in metallic foams and some related cellular structures[J].Materials Science and Engineering:A,2004,370:504-511.
[16]  康颖安,张俊彦.相对密度和应变率对泡沫铝压缩行为的影响[J].湘潭大学自然科学学报,2006,28(1):54-57.KANG Ying-an,ZHANG Jun-yan.Effects of relative density and strain rate on compressive behavior of aluminum foams I J].Natural Science Journal of Xiangtan University,2006,28(1):54-57.(in Chinese)
[17]  凤仪,朱震刚,潘艺,等.泡沫铝的动态力学性能研究[J].稀有金属材料与工程,2005,34(4):544-548.FENG Yi,ZHU Zhen-gang,PAN Yi,et al.Dynamic mechanical properties of aluminum alloy foams[J].Rare Metal Materials and Engineering,2005,34(4):544-548.(in Chinese)
[18]  王志华,曹晓卿,马宏伟,等.泡沫铝合金动态力学性能实验研究[J].爆炸与冲击,2006,26(1):46-52.WANG Zhi-hua,CAO Xiao-qing,MA Hong-wei,et al.Experimental studies on the dynamic compressive properties of open-celled aluminum alloy foams[J].Explosion and Shock Waves,2006,26(1):46-52.(in Chinese)
[19]  DONG Hai-feng,LIU Yong-feng,HE Xiao-yuan.Progress in mechanical behavior of cellular metallic materials[J].Journal of Southeast University:Natural Science Edition,2003,5:621-625.
[20]  CHOI J B,LAKES R S.Nonlinear properties of polymer cellular materials with a negative Poisson's ratio[J].Materials Science,1992,27:4678-4684.
[21]  LAKES R S.Saint venant end effects for materials with negative poisson's ratios[J].Applied Mechanics,1992,59:744- 746.
[22]  GIOUX G,MCCORMACK T M,GIBSON L J.Failure of aluminum foams under multiaxial loads[J].International Journal of Mechanical Sciences,2000,42:1097-1117.
[23]  DEGISCHER H P,KRISZT B.多孔泡沫金属[M].左孝青,周芸译.北京:化学工业出版社,2005:105-145.
[24]  SOSNICK B.Process for making foamlike mass of metal:United States,2434775[P].1948-01-20.
[25]  GIBSON L J,ASHBY M F.多孔固体-结构与性能[M].刘培生,译.北京:清华大学出版社,2003:1-46.
[26]  FRIISE A,LAKES R S,PARK J B.Negative poisson's ratio polymeric and metallic foams[J].Journal of Materials Science,1988,23:4406-4414.
[27]  CHEN C P,LAKES R S.Dynamic wave dispersion and loss properties of conventional and negative Poisson's ratio polymeric cellular materials[J].Cellular Polymers,1989,8:343-369.
[28]  CHEN C P,LAKES R S.Micromechanical analysis of dynamic behavior of conventional and negative Poisson's ratio foams [J].Engineering Materials and Technology,1996,118:285-288.
[29]  ROBERTS A P,GARBOCZI E J.Elastic properties of model random three-dimensional open-cell solids[J].Journal of the Mechanics and Physics of Solids,2002,50(Ⅰ):33-55.
[30]  BANHART J.Maufacture characterization and application of cellular metals and metal foams[J].Progress in Materials Science,2001,46:559-632.
[31]  王宇新,顾元宪,孙明.冲击载荷作用下多孔材料复合结构防爆理论计算[J].兵工学报,2006,27(2):375-379.WANG Yu-xin,GU Yuan-xian,SUN Ming.Blast-resistant calculation of compound structure with porous material under impact load[J].Acta Armamentarii,2006,27(2):375-379.(in Chinese)
[32]  刘荣,刘红梅,赵昕明,等.铸造镁合金泡沫复合材料的组织及缓冲性能研究[J].铸造,2006,55(1):40-42.LIU Rong,LIU Hong-mei,ZHAO Xin-yue,et al.Investigation on microstructures and the cushioning properties of foamed composite material of casting magnesium alloys[J].Foundry,2006,55(1):40-42.(in Chinese)
[33]  张铱鈖,赵隆茂.非均匀泡沫金属材料在冲击载荷下的变形模拟[J].爆炸与冲击,2006,26(1):33-38.ZHANG Yi-fen,ZHAO Long-mao.A numerical simulation on the deformation of heterogeneous metallic foams subjected to impact loading[J].Explosion and Shock Waves,2006,26(1):33-38.(in Chinese)
[34]  李宇燕,黄协清.铁合金和青铜多孔材料屈服应力的实验研究[J].应用力学学报,2005,22(4):541-544.LI Yu-yan,HUANG Xie-qing.Experimental investigations to yield stresses of porous materials made of iron alloy and bronze[J].Chinese Journal of Applied Mechanics,2005,22(4):541-544.(in Chinese)
[35]  QUEHEILLALT D T,KATSUMURA Y,WADLEY H N G.Synthesis of stochastic open cell Ni-based foams[J].Scripta Materialia,2004,50:313-317.
[36]  BROTHERS A H,DUNAND D C.Plasticity and damage in cellular amorphous metals[J].Acta Materialia,2005,53: 4427-4440.
[37]  王新坤,袁起立.真空渗流法制备泡沫铝及其动态力学性能的研究[J].铸造技术,2006,27(3):239-242.WANG Xin-kun,YUAN Qi-li.Preparation of foam aluminum by vacuum infiltration and study of its dynamic mechanical properties[J].Foundry Technology,2006,27(3):239-242.(in Chinese)
[38]  GRADINGER R,RAMMERSTORFER F G.On the influence of meso-inhomogeneities on the crush worthiness of metal foams[J].Acta Mater,1999,47(1):143-148.
[39]  FLECK N A,OLURIN O B,CHEN C,et al.The effect of hole size upon the strength of metallic and polymeric foams[J]. Journal of the Mechanics and Physics of Solids,2001,49:2015-2030.
[40]  潘艺,胡时胜,凤仪,等.泡孔尺寸对开孔泡沫铝合金力学性能的影响[J].工程力学,2003,20(4):171-175.PAN Yi,HU Shi-sheng,FENG Yi,et al.Cell-size effect on mechanical property of open-cell aluminum alloy foam[J]. Engineering Mechanics,2003,20(4):171-175.(in Chinese)
[41]  HALL I W,GUDEN M,YU C J.Crushing of aluminum closed cell foams:density and strain rate effects[J].Scripta Mater,2000,43:515-521.
[42]  MUKAI T,KANAHASHI H,MIYOSHI T,et al.Experimental studyof energy absorption in a closed-celled Aluminum foam under dynamic loading[J].Scripta Materialia,1999,40(8):921-927.
[43]  BALCH D K,O'DWYER J G,DAVIS G R,et al.Plasticity and damage in aluminum syntactic foams deformed under dynamic and quasi-static conditions[J].Materials Science and Engineering:A,2005,391:408-417.
[44]  DANNEMANN K A,LANKFORD L.High strain rate compression of closed-cell aluminium foams[J].Materials Science and Engineering:A,2000,293:157-164.
[45]  PAUL A,RAMAMURTY U.Strain rate sensitivity of a closed-cell aluminum foam[J].Materials Science and Engineering:A,2000,281:1-7.

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