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异形齿盘毂热锻成形工艺数值模拟与优化设计
英文标题:Optimization design and numerical simulation of hot forging process for special tooth disc-hub
作者:赵鹏展 魏良庆 
单位:重庆科创职业学院 
关键词:异形齿盘毂 热锻 正交设计 有限元分析 
分类号:
出版年,卷(期):页码:2016,41(1):146-149
摘要:

针对带有异形齿法兰的盘毂零件提出了热冷复合成形工艺。结合正交试验设计方法和有限元模拟技术对新工艺中热锻成形过程进行分析和工艺参数优化设计,以降低盘毂热锻成形峰值载荷、降低终锻件最大损伤值、减少模具磨损为评价指标,研究了坯料始锻温度、热锻件连皮厚度、下盲孔高度、挤压速度和润滑系数对热锻成形效果的影响,并获得了优化的工艺参数组合,即坯料始锻温度为1100 ℃、连皮厚度16.0 mm、下盲孔高度10.0 mm、挤压速度250 mm·s-1、摩擦系数0.2。经生产试验验证,优化后的盘毂热锻成形工艺能够为后续的冷精整工艺提供质量合格的锻件。

 The hot and cold composite forming technology was proposed to manufacture a kind of special tooth disc-hub. The hot forging process was analyzed and the process parameters were optimized by combining the orthogonal test with FEM. Regarding the reductions of the maximum forming load, the maximum damage and die wear as evaluation indexes, it was studied the influences of initial forming temperature, web thickness, the bottom blind hole height, extrusion velocity and lubricating factor on hot forging, and the suitable process parameters were obtained as follows: billet initial forming temperature 1100 ℃, web thickness 16.0 mm, the height of bottom blind hole 16.0 mm, extrusion velocity 250 mm·s-1 and lubricating factor 0.2. The technological practice shows that the optimized method can manufacture qualified hot forging parts for subsequent cold sizing process.

基金项目:
2014年重庆市高等教育教学改革研究项目(143139)
作者简介:
赵鹏展(1979-),男,工程硕士,讲师
参考文献:

[1]彭树杰,刘玉兰,杜鹃,等.汽车异形齿类零件复合挤压成形技术的优化[J].模具技术,2009,(5):34-37.

Peng S J, Liu Y L, Du J, et al. The optimization of composite forming technology for automobile special tooth part [J]. Die and Mould Technology, 2009,(5):34-37.

[2]彭树杰. 汽车离合器盘毂零件齿形成形技术的研究[J].汽车工艺与材料,2008,(12):19-21.

Peng S J. Research on forming technology of clutch disc-hub for automobile [J]. Automobile Technology & Material, 2008,(12):19-21.

[3]郑有想. 基于正交试验的铝合金筋板类锻件成形工艺参数多目标优化[J].热加工工艺,2015,44(9):168-172.

Zheng Y X. Muliti-objective optimization of process parameters of aluminium alloy rib-web forging based on orthogonal experiment [J]. Hot Working Technology, 2015,44(9):168-172.

[4]杜晨宇,张光胜,张威,等.汽车后地板工艺参数优化[J].锻压技术,2014,39(8):24-29.

Du C Y, Zhang G S, Zhang W, et al. Optimization of process parameters for panel lower back of automobile[J]. Foring & Stamping Technology, 2014,39(8):24-29.

[5]张先.正交异性钢桥面板抗疲劳设计研究[D].成都:西南交通大学,2013.

Zhang X. Research on Fatigue Design of Orthotropic Steel Anti Panel [D].Chengdu: Southwest Jiaotong University, 2013.

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