利用电子扫描电镜、拉伸仪、耐疲劳性能试验机等分析测试方法研究铅浴等温淬火工艺对超细高强高碳钢丝组织和力学性能的影响.结果表明:对含碳量0.92%、直径Φ0.84 mm的钢丝,升高加热温度、降低铅浴温度、提高过冷度有利于奥氏体化均匀,促进珠光体转变,导致先共折铁素体和二次网状渗碳体减少、珠光体片层间距减小、晶粒尺寸约20~30 μm,后道湿拉拔至直径Φ0.12 mm,断丝率降低至4~7次/t,钢丝最终强度达4080 MPa.
参考文献
[1] | 张熹,王春旭,史庆南.子午线轮胎钢帘线用钢丝的工艺现状[J].钢铁研究学报,2007(01):1-5. |
[2] | Tarui T;Maruyama N;Takahashi J et al.Microstruture control and strengthening of high-carbon steel wires[J].Nippon Steel Techn Rep,2005,91(01):56. |
[3] | 胡东辉,程晓茹.高碳低合金钢丝拉拔杯锥断口的成因[J].武汉科技大学学报(自然科学版),2005(01):21-23. |
[4] | 曹秀岭,焦小鹏,翟振华.超高强度钢帘线的生产试制[J].金属制品,2010(05):7-10. |
[5] | 徐萍,王伯健,马雪姣.高碳钢丝生产中的失效分析[J].材料开发与应用,2008(04):8-12. |
[6] | Shi Z M;Dong J H;Ma W .Research on plastic inclusion control for steel cord[J].Advances in Materials Research,2013,602-604:390. |
[7] | CUI Huai-zhou,CHEN Wei-qing.Effect of Boron on Morphology of Inclusions in Tire Cord Steel[J].钢铁研究学报:英文版,2012(04):22-27. |
[8] | V. V. Parusov;R. V. Starov;I. V. Derevyanchenko;A.B. Sychkov;O. L. Kucherenko .A Decade of Quality Steel Production: Developing a Production Technology for Steel Used in-Metal-Cord Manufacture[J].Steel in Translation,2010(1):82-87. |
[9] | Tashiro H;Tarui T .State of the art for high tensile strength steel cord[J].Nippon Steel Techn Rep,2003,88(01):87. |
[10] | Enomoto M;Huang W K;Ma H .Modeling pearlite transformation in super-high strength wire rods:Modeling and simulation in Fe-C-X ternary alloys[J].Iron Steel Inst Jpn,2012,52(04):626. |
[11] | 王章忠.材料科学基础[M].北京:机械工业出版社,2005 |
[12] | 孟宪成,刘雅政,王勇,范广彬.等温转变对72A帘线钢线材直拉能力的影响[J].材料热处理学报,2010(04):71-75. |
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