%0 Journal Article %T Study on the Green Preparation Process and Friction Performance of Paper-Type Friction Material
纸基摩擦材料绿色制备工艺与摩擦磨损性能研究 %A ZHANG Gao-hui %A PAN Jun-de %A ZHANG Ping-ze %A CUI Cai-e %A TANG Bin %A XU Zhong %A
付业伟 %A 李贺军 %A 李克智 %J 摩擦学学报 %D 2004 %I %X The carburized layer with special physical and chemical properties was prepared on the surface of titanium alloy Ti6Al4V making use of double glow discharge plasma carburizing technique and hollow cathode effect, with a netlike highly pure graphite as the source cathode, titanium alloy as the cathode, and Ar as the working gas. The phase compositions and C distribution of the carburized layer were determined by means of X-ray diffraction and glow discharge spectrometry. The friction and wear behavior of the carburized Ti6Al4V alloy specimen sliding against GCr15 steel was evaluated on a BDW-2 ball-on-disc test rig. The microhardness of the carburized layer was measured, the elemental composition of the carburized layer determined by means of energy dispersive spectrometry, and the metallorgraphic structure and worn surface morphologies of the carburized specimen were observed on an optical microscope. It was found that hard phase TiC was formed in the carburized layer, which contributed to increasing the hardness and wear resistance of the carburized surface. The improvement in the friction and wear behavior of the carburized specimen was attributed to the changes in the composition, structure, and hardness by the carburizing. %K titanium alloy %K double glow %K carburizing without hydrogen %K friction and wear behavior
炭纤维 %K 纸基摩擦材料 %K 绿色制备 %K 摩擦磨损性能 %U http://www.alljournals.cn/get_abstract_url.aspx?pcid=6E709DC38FA1D09A4B578DD0906875B5B44D4D294832BB8E&cid=5D344E2AD54D14F8&jid=2F467A5C6371C830162AAA01D7DAD07A&aid=CFF84571AB48D61C&yid=D0E58B75BFD8E51C&vid=B91E8C6D6FE990DB&iid=0B39A22176CE99FB&sid=9D453329DCCABB94&eid=5BC9492E1D772407&journal_id=1004-0595&journal_name=摩擦学学报&referenced_num=12&reference_num=14