欢迎登录材料期刊网

材料期刊网

高级检索

由于汽车尾气造成的空气污染日趋严重,汽车尾气净化器用载体成为人们研究的热点之一.系统地介绍了陶瓷载体和金属载体的发展状况,分析比较了两者在性能和技术上的优缺点.结合以前的研究,提出运用金属粉末增塑挤压烧结成型技术制作金属蜂窝载体材料是具有应用开发价值的发展方向.

参考文献

[1] 王建听;傅立新;黎维彬.汽车排放污染治理及催化转化器[M].北京:化学工业出版社,2000
[2] 贺克斌;傅立新.我国汽车排气污染净化研究[J].环境科学进展,1996(03):62.
[3] 李安明.论汽车尾气净化器载体材料的产业化[J].中国建材科技,2001(05):38-39.
[4] 陈颖;聂祚仁 等.汽车尾气净化器用金属载体研究进展[J].材料导报,1999,13(02):22.
[5] 李强,陈祥,李言祥.汽车尾气净化器载体及涂层的研究进展[J].表面技术,2001(04):23-27.
[6] 沈迪新;陈宏德.我国汽车尾气污染、污染控制与对策[J].环境科学进展,1997(06):23.
[7] 魏伟,史庆南.汽车尾气催化净化器用载体的研究进展[J].汽车科技,2001(06):4-6.
[8] 孙俊赛,资文华,缪松兰,陈庆华.汽车尾气用催化剂载体研究现状及展望[J].中国陶瓷,2003(05):19-21.
[9] 樊子民,王晓刚,强云霄,刘向春.新型汽车尾气净化器载体材料性能及净化效果研究[J].环境污染与防治,2009(08):63-66.
[10] Mssubiro Fukaya .Material properties of Fe-Cr-Al alloy foil for metal support[J].SAE Transactions,1997,106:729.
[11] Bomer V;Emmerich K;Frolich K .High temperature oxidation behavior of rapidly solidified Fe-Cr-Al ribbons[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1991,134:1062.
[12] Emmerich K .The use of rapidly solidified ribbons in automotive exhaust gas catalyst substrate[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1991,134:1016.
[13] Okabe S;Kohno M et al.Oxidation resistance of rapidly solidified Fe-Cr-Al ribbons at high temperature[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1991,181-182:1104.
[14] Steve Chang C .Aluminum clad ferritic stainless steel foil for metallic catalytic converter substrate application[J].SAE Transactions,1996,105:237.
[15] Manfred N .Metal supports for exhaust gas catalysts[J].SAE Transactions,1985,1:1814.
[16] 宋婧,曾令可.汽车尾气净化器用催化剂载体的研究现状[J].陶瓷,2007(09):13-15.
[17] 张健,李程,吴贤,康新婷,张文彦,奚正平.金属纤维多孔材料在机动车尾气净化器中的应用[J].稀有金属材料与工程,2007(z3):378-382.
[18] Seely Richard L .Honeycomb extrusion die[P].US,6302679,2001-10-16.
[19] Cutler Willard A .Thermally conductive honeycombs for chemical reactors[P].US,6881703,2005-04-19.
[20] Abbott John Steele et al.Metal honeycomb substrates for chemical and thermal applications[P].US,7608344,2009-10-27.
[21] Lee K J;Cochran J;McDowell D.Multifunctional metallic honeycombs by thermal chemical processing[A].Seattle,Washington,2000:127.
[22] Clark J L;Cochran J;Sanders T H.Metal honeycomb from oxide Paste:Maraging steel and super invar structure and properties[A].Seattle,Washington,2000:137.
[23] 上海材料研究所 .一种多孔金属蜂窝结构件的制备方法[P].中国,200610119064.9,2008-06-11.
[24] Zhou Yun;Zuo Xiaoqing;Zhang Ting.316L stainless honeycombs fabricated by extruding and sintering[J].Advances in Materials Research,2011(146-147):1921.
[25] Zhou Yun;Peng Huang;Xuan Meng et al.The microstruc ture and properties of 304L stainless honeycombs fabricated by extruding and sintering[J].Advances in Materials Research,2012,393-395:448.
[26] 周芸,左孝青,梅俊,张喜秋,孙加林.挤压410L不锈钢金属蜂窝的烧结和组织结构研究[J].材料科学与工程学报,2005(05):504-508.
[27] Zhou Y;Zuo X Q .Effects of sintering parameters on the structures of Fe-Cr-Al extruded honeycombs[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2007,457:329.
[28] 周芸,左孝青,梅俊,张喜秋,孙加林.挤压Fe-25Cr-5Al金属蜂窝的烧结和组织结构研究[J].材料工程,2006(03):6-10.
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%