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利用旋转弯曲疲劳试验方法研究了三种重载齿轮钢渗碳后的疲劳性能.结果表明,添加铌能够细化重载齿轮钢组织,提高渗碳层硬度,从而提高其疲劳强度.同时,疲劳裂纹在渗碳层沿原奥氏体晶界扩展,铌微合金化重载齿轮钢的晶粒细化,从而可以阻碍疲劳裂纹的扩展.此外,扫描电镜观察疲劳断口发现,重载齿轮钢渗碳后疲劳裂纹起源于基体或夹杂物,夹杂物尺寸越小,疲劳性能越好.

参考文献

[1] Matlock D K;Alogab K A;Richards M D et al.Surface processing to improve the fatigue resistance of advanced bar steels for automotive applications[J].Materials Research,2007,8(04):453-459.
[2] Thompson R E;Matlock D K;Speer JG .The fatigue pedormance of high temperature vacuum carburized Nb medified8620 steel[R].,2007.
[3] Ma, L;Wang, MQ;Shi, J;Hui, WJ;Dong, H .Influence of niobium microalloying on rotating bending fatigue properties of case carburized steels[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):258-265.
[4] 刘燕;王毛球;樊刚 等.含Nb齿轮钢晶粒长大动力学[J].钢铁研究学报,2008,20(11):39-44.
[5] Murakami Y;Kodama S;Konuma S .Quantitative evaluation of effects of non-metallic inclusions on fatigue strergth of high strengsth steels,I:Basic fatigue mechanism and evaluation of correlation between the fatigue fracture stress and the size and location of non-metallic inclnsions[J].International Journal of Fatigue,1989,11(05):291-298.
[6] Murakami Y.Metal Fatigue:Effects of Small Defects and Nonmetallic Inclusioes[M].Amsterdam & Boston:Elsevier,2002
[7] 杨庆祥,赵言辉,许志强,姚枚,高玉魁,王仁智.渗碳及渗碳喷丸齿轮轮齿弯曲疲劳极限的定量分析[J].机械工程学报,2004(07):34-40.
[8] Kenan Genel;Mehmet Demirkol .Effect of case depth on fatigue performance of AISI 8620 carburized steel[J].International Journal of Fatigue,1999(2):207-212.
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