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高性能空心玻璃微球具有许多优异的性能.作为复合材料的关键原料之一,其力学性质对复合材料的性能起决定性的作用.系统介绍了高性能空心玻璃微球抗压强度影响因素如粒径分布、壁厚和密度等基本物理力学性质的表征方法和手段.从统计研究和个体研究两个方面分别论述了空心玻璃微球统计与个体强度的研究方法.综述了壁厚、密度和表面修饰等对微球统计强度的影响,形状因子和抗拉强度对单个球体等静压强度的影响以及壁厚和直径对单个球体单轴压缩强度的影响.

参考文献

[1] Schmitt ML;Shelby JE;Hall MM .Preparation of hollow glass microspheres from sol-gel derived glass for application in hydrogen gas storage[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2006(6/7):626-631.
[2] 邱龙会,傅依备,魏芸,师韬.液滴法制备空心玻璃微球的模拟计算[J].强激光与粒子束,2002(03):397-402.
[3] 宋锦泉,汪旭光,于亚伦,崔安娜.玻璃微球敏化乳化炸药爆速特性[J].北京科技大学学报,2000(06):497-500,574.
[4] 孙春宝,邢奕,王啟锋.空心玻璃微珠填充聚合物合成深海高强浮力材料[J].北京科技大学学报,2006(06):554-558.
[5] Geleil AS;Hall MM;Shelby JE .Hollow glass microspheres for use in radiation shielding[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2006(6/7):620-625.
[6] 匿名 .空心玻璃微珠的生产和应用[J].中国玻璃,1995,20(02):41.
[7] ASTM.D3102-78 practice for determination of isostatic collapse strength of hollow glass microspheres[S].United States.ASTM Int,1982.
[8] Carlisle KB;Chawla KK;Gladysz GM;Koopman M .Structure and mechanical properties of micro and macro balloons: An overview of test techniques[J].Journal of Materials Science,2006(13):3961-3972.
[9] 潘顺龙,张敬杰,邓建国,贺传兰,宋广智.空心玻璃微球表面接枝聚苯乙烯及其性能研究[J].材料科学与工艺,2009(06):844-847,852.
[10] Krenzke M A;Charles R M.The elastic buckling strength of spherical glass shells[A].Washington,D.C,1963
[11] Howell P A;Paul St;Minn .Glass bubbles of increased collapse strength[P].US,4391646,1983-06-05.
[12] Budov V V .Strength of different types of hollow glass microspheres[J].Chem Mater Sci,1991,23(05):569.
[13] Bratt P W;Cunnion J P;Spivak B D.Mechanical Testing of Glass Hollow Microspheres[A].New York,1983
[14] 邱龙会,傅依备,唐永建,魏芸,师滔,郑永铭.由玻璃组成计算空心玻璃微球的耐压强度[J].原子能科学技术,2001(03):263-266.
[15] 干福熹.光学玻璃[M].北京:科学出版社,1982:250.
[16] Campbell J H;Grens J Z;Poco J F .Preparation and properties of hollow glass microspheres for use in laser fusion experiments:UCRL253516[R].Livermore,California:University of California Press,1983.
[17] 张占文,李波,唐永建,雷海乐.ICF靶用空心玻璃微球耐压性能测试[J].强激光与粒子束,2007(10):1663-1666.
[18] M. Koopman;G. Gouadec;K. Carlisle;K. K. Chawla;G. Gladysz .Compression testing of hollow microspheres (microballoons) to obtain mechanical properties[J].Scripta materialia,2004(5):593-596.
[19] Torbert J R .Globe-value[P].US,1115256,1914-10-27.
[20] Hurstl .Flyash benificiation process[P].US,4121945,1978-10-24.
[21] 余安邦 .发电厂粉煤灰空心玻璃微珠湿法分选系统[P].中国,CN 87104411A,1988-05-11.
[22] 林文弘 .粉煤灰空心玻璃微珠分选[P].中国,CN1036342A,1989-10-18.
[23] Weinstein B W .White-light interferometric measurement of the wall thickness of hollow glass microspheres[J].Journal of Applied Physics,1975,46(12):5305.
[24] Gouadec G;Carlisle K;Chawla K K.Nano-compression of carbon micro-balloons with a fiat-ended cylindrical indenter[M].American Ceramic Society.Nashville,United States,2004
[25] Carlisle K;Chawla K K;Gouadec G.Nanocompressive propertiesof carbon microballoons and mechanical properties of carbon based syntactic foam composites[M].Society of Manufacturing Engineers.San Diego,CA,2003
[26] 李云凯,王勇,高勇,钟家湘.粉煤灰空心微珠性能的测试研究[J].硅酸盐学报,2002(05):664-667.
[27] Budov V V .Hollow glass microspheres.use,properties,and technology[J].Glass Ceram,1994,51(7-8):7.
[28] Pavlushkin N M;Sentyurin G G;Khodakovskaya R Ya.Practical understanding of glass technology[M].Stoiizdat Press,1970
[29] ASTM.B527-06 Standard test method for determination of tap density of metallic powders and compounds[S].United States.ASTM Int,2006.
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