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多台阶轴头短流程冷精锻成形工艺
英文标题:Short process of multistep spindle head in cold precision forging
作者:刘百宣 刘华 
单位:郑州机械研究所 
关键词:多台阶轴头 短流程冷精锻成形 高分子润滑剂 有限元模拟分析 
分类号:TG376.3
出版年,卷(期):页码:2017,42(6):21-26
摘要:

针对某型号多台阶轴头形状尺寸及冷精锻工艺特点,采取挤压、镦粗、缩径等不同工艺在工序内结合应用的方法,制定了多台阶轴头短流程冷精锻成形工艺。通过数值模拟和实验研究相结合的方法,对所制定的工艺进行分析研究,最终获得了两道工序成形8个台阶尺寸的多台阶轴头短流程冷精锻成形工艺,并在实验过程中采用了高分子润滑剂,进一步缩短了从下料到最终成形的整个工艺流程。结果表明:通过合理分配各工序变形量、工序内多种冷锻工艺结合应用的方法,可有效减少台阶轴冷精锻成形工序总数,实现在普通压力机上的高效率生产;Deform-3D模拟软件对工艺的模拟结果与实验结果相一致,说明有限元模拟对成形效果、压力大小的预测是可行的。

 

For the characteristics of shape size and cold precision forging process of a certain type of multistep spindle head, a cold precision forging process with short flow was worked out by combining different cold forging processes such as extrusion,upsetting and ironing in one step. Then, the process was analyzed and studied by comparing numerical simulation with experimental study, and finally the cold precision forging process with short flow for multistep spindle head with twostep forming and eightstep size was obtained. Furthermore, the high polymer lubricant was used to further shorten the whole process flow from the billet to final forming. Results show that the total numbers of cold forging forming process of multistep spindle head are reduced effectively by a reasonable arrangement on deformation values of every process and combined application of different cold forging processes in one step, and as a result, high efficiency production is achieved with common press. Thus, the simulation results of the Deform3D are consistent with the experimental results, and it shows that the finite element simulation is feasible to predict the forming effect and the pressure size.

基金项目:
郑州市重大科技专项(152PZDZX007)
作者简介:
刘百宣(1973-),男,硕士,高级工程师
参考文献:


[1]毕宇,陈柏金.轴类锻件直径嵌入式在线测量系统研究[J].锻压技术,2016,41(6):104-108.


Bi Y, Chen B J. Research on embedded online diameter measurement system of axial forgings[J]. Forging & Stamping Technology, 2016,41(6):104-108.



[2]陈荷,龚小涛. 汽车半轴热摆辗成形凹模温度场有限元分析[J].锻压技术,2015,40(9):125-127.


Chen H, Gong X T. Finite element analysis on temperature field of die for hot rotary rolling of auto semi-axle[J]. Forging & Stamping Technology, 2015,40(9):125-127.



[3]胡启,金俊松,王新云,等. 阶梯轴多工步缩径挤压成形工艺研究[J].锻压技术,2014,39(2):68-72.


Hu Q,Jin J S,Wang X Y,et al. Study on multi-step ironing process of multi-diameter shaft[J]. Forging & Stamping Technology, 2014,39(2):68-72.


[4]徐伟,夏巨谌,胡国安,等. 轿车变速箱轴类件多工位冷精锻工艺及模具研究[J].锻压技术,2007,32 (4): 33-36.


Xu W,Xia J C,Hu G A,et al. Study on multistage cold precision forging process and die of the shaft in gearbox [J].Forging & Stamping Technology,2007,32 (4): 33-36.



[5]李伟.汽车变速箱轴类件多工位冷精锻关键技术研究 [D].武汉: 华中科技大学,2009.


Li W.Study on Key Technology of Multistage Cold Precision Forging of the Shaft in Gearbox [D]. Wuhan: Huazhong University of Science and Technology,2009.



[6]陈继红, 龚洪浪. 阶梯形零件的冷挤压工艺研究[J]. 模具制造, 2006,(9):45-48.


Chen J H, Gong H L. Cold extruding process research for laddershaped parts[J].Die & Mould Manufacture,2006,(9):45-48.



[7]杨长顺. 冷挤压工艺实践[M]. 北京:国防工业出版社,1984.


 Yang C S. Cold Extrusion Practice[M]. Beijing: National Defence Industry Press, 1984.



[8]洪深泽. 挤压工艺及模具设计[M].北京:机械工业出版社,1996.


 Hong S Z. Extrusion Process and Die Design[M]. Beijing:China Machine Press,1996.



[9]洪慎章. 冷挤压实用技术[M]. 北京:机械工业出版社,2005.


 Hong S Z. Practical Technology of Cold Extrusion[M].Beijing: China Machine Press, 2005.



[10]刘百宣,孙红星,刘华. 电力金具球头冷锻成形的数值模拟和试验研究[J].锻压技术,2012,37(1):38-41.


Liu B X, Sun H X, Liu H. Simulation and experimental research of forging process for electrical fittings ball[J]. Forging & Stamping Technology, 2012,37(1):38-41.



[11]刘百宣,孙红星,刘华,等. 基于DEFORM-3D的汽车转向器输入轴锻造成形研究[J]. 热加工工艺,2012,41(9):129-131.


Liu B X, Sun H X, Liu H,et al. Research on forging process for automotive steering input shaft based on DEFORM-3D[J]. Hot Working Technology, 2012,41(9):129-131.



[12]温恩龙,周扬, 李蒙. 基于QFORM 的阶梯轴冷挤压工艺的计算机模拟[J]. 热加工工艺,2010,39(17):110-114.


Wen E L, Zhou Y, Li M. Computer simulation of cold extrusion process for stepped shaft based on QFORM[J]. Hot Working Technology, 2010, 39(17):110-114.



[13]阳鑫,袁玉红,杨宁,等. 阶梯轴挤压工艺设计及数值模拟[J]. 贵州大学学报,2013,30(6):57-60.


Yang X,Yuan Y H,Yang N,et al. Extrusion technology design and numerical simulation of stepped shaft[J]. Journal of Guizhou University, 2013,30(6):57-60.

 

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