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Title:Research on dimensional accuracy of ironing sliding bearing based on Simufact
Authors: Li Hui1 Yang Feng2  Bai Fan1 
Unit: (1.Department of Mining Engineering  Luliang College  Lyuliang 033000 China   2. College of Mechanical Engineering  North University of China  Taiyuan 030051  China) 
KeyWords: sliding bearing Simufact ironing dimensions accuracy material utilization 
ClassificationCode:TG376
year,vol(issue):pagenumber:2018,43(5):0-0
Abstract:

  In order to get the sliding bearing with highlevel dimensional accuracy ,two kinds of ironing process for sliding bearing were analyzed by using the method of finite element numerical simulation,and one ironing and three consecutive ironing of the same blank were numerically simulated respectively with the tin bronze as the processing material in Simufact finite element simulation software when the reduction ratio was the same. With dimensional accuracy (expansion of diameter,roundness error and straightness error) of sliding bearing after ironing and the material utilization (bell mouth length) as evaluation indexes, the best forming process was selected and the reliability of simulation was verified by test. The results show that for the tin bronze material, the expansion amount diameter, external roundness error and straightness error of inner axis for onetime ironing is relatively larger, but the straightness error of outer axis for onetime ironing is relatively smaller, and the material utilization rate is also relatively higher, which provides a theoretical basis for the selection of actual production process.

Funds:
吕梁学院科研基金项目(ZRQN201605)
AuthorIntro:
作者简介:李辉(1985-),男,硕士,讲师 Email:464956946@qq.com
Reference:

 
[1]白建雄, 陈先朝, 王江南, 等. 304不锈钢壳变薄拉深的组织结构与性能
[J]. 锻压技术, 2016,40(1): 32-37. 


Bai J X, Chen X C, Wang J N, et al. Microstructure and properties of stainless steel shell 304 in the ironing process
[J]. Forging & Stamping Technology, 2016,40(1): 32-37. 


[2]许江平, 柳玉起, 章志兵, 等. 变薄拉深过程模拟的有限元动力显式算法
[J]. 锻压技术, 2008,33(5):38-43. 

Xu J P, Liu Y Q, Zhang Z B, et al. Finite element dynamic explicit method in ironing process simulation
[J]. Forging & Stamping Technology, 2008,33(5): 38-43.


[3]李彦波, 刘荣丰, 刘红武, 等. 基于JSTAMP /NV的AA5042 薄壁筒形件变薄拉深仿真
[J]. 计算机辅助工程, 2012,21(6): 68-71. 

Li Y B, Liu R F, Liu H W, et al. Ironing simulation on AA5042 thin wall cylindrical workpiece based on JSTAMP/NV
[J]. Computer Aided Engineering, 2012,21(6): 68-71.


[4]苏娟华, 陈拂晓, 辛选荣. 变薄拉深过程的数值模拟
[J]. 锻压技术, 2001,26(2): 23-24. 

Su J H, Chen F X, Xin X R. Numerical simulation of ironing deep drawing process
[J]. Forging & Stamping Technology, 2001,26(2): 23-24.


[5]肖善超. 弹壳多模一次连续变薄拉深工艺研究
[D]. 秦皇岛, 燕山大学, 2012. 

Xiao S C. Research on Multimodeoneoff Ironing Process for Cartridge Cas
[D]. Qinhuangdao: Yanshan University, 2012.


[6]平欣, 平鹏. 圆度、同轴度和圆柱度误差的最小二乘评定法
[J]. 中国测试, 1997,(2): 44-46.

Ping X,Ping P. The least square estimation of roundness, coaxial and cylindrical errors
[J]. The Chinese Test,1997,(2): 44-46.


[7]GB/T 11336—2004, 直线度误差检测第6部分:任意方向的直线度误差
[S]. 

GB/T 11336—2004, Measurement of departures from straightnes—Part 6: Straightness error in any direction
[S].
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