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GCr15轴承钢线材冷拔工艺优化的实践

Practice of Cold Drawing Process Optimization of GCr15 Bearing Steel Rod
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摘要 分析了GCr15轴承钢(1.01%C,1.58%Cr)Φ11 mm线材的减面率、拉拔模角度和定径带长度,拉拔速率对拉拔应力和拉拔表面精度的影响。得出Φ11 mm盘条冷拉至Φ10.2 mm线材的优化工艺,即Φ11 mm线材(HB193)-等温球化退火(785℃4.5 h→750℃3 h)-冷拔至中10.4 mm盘条-740℃4.5 h去应力退火-冷拔至Φ10.2 mm棒材成品(HB205);冷拔速度35 m/min,油性润滑等工艺措施可获良好的表面质量。 The effect of draft, cone angle and length of sizing belt of drawing die, and drawing speed on drawing stress and drawing surface accuracy of bearing steel GCr15 (1. 01% C, 1.58% Cr) Ф11 mm rod coil has been analyzed. The optimization process for Ф11 mm rod coil cold drawing to Ф10. 2 mm rod is obtained, i.e. Ф11 mm rod coil (HB193)- isothermal spheroidizing annealing (at 785 ℃ for4. 5 h→ at 750 ℃ for 3 h)- cold drawing to 10. 4 mm rod- de-stress annealing at 740 ℃ for 4. 5 h- cold drawing to Ф10. 2 mm rod products (HB205) ; the nice surface quality is ob- tained by using the process measures including with cold speed 35 m/mitt and drawing oil lubricant.
出处 《特殊钢》 北大核心 2015年第6期16-19,共4页 Special Steel
关键词 GCr15轴承钢线材 联合拉拔机 冷拔 减面率 模具 应力 等温球化退火 润滑 Rod Products of GCrl5 Bearing Steel, Combined Drawing Machine, Cold Drawing, Draft, Die, Stress, Isothermal Spheroidizing Annealing, Lubricating
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