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以短切碳纤维为增强纤维,采用湿法工艺研制成功一种新型无石棉纸基摩擦材料,采用TG-DTA热分析方法、定速摩擦试验和惯量摩擦研究了摩擦材料耐热性能、摩擦性能和磨损性能.试验结果表明,新研制的炭纤维增强纸基摩擦材料的起始分解温度和失重速率等耐热性能指标优良,动摩擦系数高达0.136~0.149,且摩擦系数稳定,磨损率低,是一种理想的新型无石棉纸基摩擦材料.

参考文献

[1] LamRoertC;Yesnik Marc A;Chen Yih-Fang .[P].US 5998307,1999.
[2] YesnikMarcA .Process for producing two-ply friction material[P].US:6194059,2001.
[3] AndrewKearsey;Dagobert Wagner .Carbonfiberforwetfrictionapplications[R].SAE Technical Paper,1997.
[4] 刘立平.新型碳纤维摩擦材料[J].工程机械,2000(04):35-36.
[5] KitaharaShun;Umezawa;Shigeki .Wet friction material[P].US 6130177,2000.
[6] Yesnik;MarcA .Friction material comprising powdered phenolic resin and method of making the same[P].US:5529666,1996.
[7] KatsuhiroIto;Keith A Barker;Masamitsu Kubota;Shigekata Yoshida.Designingpapertypefrictionmaterialforhighstrengthanddurability[J].SAE Technical Paper,1998:982034.
[8] TakayukiMatsumoto.Astudyoftheinfluenceofporosityandresiliencyofapaper-basedfrictionmaterialonthefrictioncharacteristicsandheatresistanceofthematerial[J].SAE Technical Paper,1993:932924.
[9] TakayukiMatsumoto .Theinfluenceofpaper-basedfrictionmaterialporosityontheperformanceofawetclutch[R].SAE Technical Paper 9410321994 SAE Technical Paper,1993.
[10] Holderson;J Lundberg .Engagementbehaviorofapaper-basedwetclutchPartⅠ:Influenceofdrivetorque[J].Proceedings of the Institution of Mechanical Engineers,1999,213:341-348.
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