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热轧钢球轧辊孔型优化设计 被引量:1

Groove Optimum Design for the Hot Rolling Steel Balls
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摘要 本文以斜轧钢球孔型设计第二原则为优化目标,使孔型参数满足孔型设计第一原则、轧件咬入条件、凸棱强度条件、螺距递增等要求,对孔型凸棱单侧变导程法设计的孔型进行了优化设计。使用该优化设计方法可以大大提高设计孔型的效率和质量。 Taking the second principle of groove design as the object of optimization. the groove designed by the method for variable lead of single edge of groove rib is optimized in this paper.The high design efficienty and quality is gained by this method.
作者 王全先
出处 《华东冶金学院学报》 1994年第3期48-53,共6页
关键词 轧辊 孔型设计 优化设计 s: Skew rolling Groove Optimization.
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同被引文献11

  • 1乔沙林,胡正寰.螺旋孔型斜轧轴向断面变形的探讨及云纹实验研究[J].武汉钢铁学院学报,1994,17(2):143-150. 被引量:2
  • 2Skinner K C. Method and Apparatus for Production Rolled Metal Balls from Bars or Rods: United States, 3878701 [ P]. 1975 - 04 - 22.
  • 3Wang Quanxian, Wang Qiping, Xiao Jianming. Study on the Method for Groove Design in the Helical Rolling of Steel Balls [ J ]. Journal of Materials Processing Technology, 1995, 55 (3) : 340 - 344.
  • 4川井謙一.特造におけるひずみ分布と残留庇力坊解析へのフブロチ[J].塑性と加工,1978,19 (205) :141 -147.
  • 5Shi Xiaomin, Wang Baojian. Numerical Simulation of Al Ball Forming Process in Skew Rolling [ J ]. Materials Science Forum,2012,704 -705:151 - 154.
  • 6Pater Z, Tomczak J, Bartnicki J, et al. Experimental and Numerical Analysis of Helical - Wedge Rolling Process for Producing Steel Balls [ J ]. International Journal of Machine Tools and Manufacture, 2013, 67:1 -7.
  • 7Qian Dongsheng, Pan Yan. 3D Coupled Macro -Mi- croscopic Finite Element Modelling and Simulation for Combined Blank - Forging and Rolling Process of Alloy Steel Large Ring [ J ]. Computational Materials Sci- ence,2013,70:24 - 36.
  • 8Pater Z, Kazanecki J. Complex Numerical Analysis of the Tube Forming Process Using Diescher Mill[ J]. Ar- chives of Metallurgy and Materials. 2013,58 ( 3 ) : 717 - 724.
  • 9Yin Fei, Hua Lin, Mao Huajie, et al. Constitutive Mod- eling for Flow Behavior of GCrl5 Steel Under Hot Compression Experiments [ J ]. Materials & Design, 2013,43:393 -401.
  • 10周永平,王宝雨,胡正寰.斜轧磷铜球成形过程的数值模拟[J].北京科技大学学报,2008,30(2):161-164. 被引量:10

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