文章摘要
工艺参数对防护梁绕弯成形的壁厚影响研究
Research on the Influence of Process Parameters on the Wall Thickness of the Protective Beam after Rotary Draw Bending
Received:December 29, 2020  
DOI:10.3969/j.issn.1674-6457.2021.02.017
中文关键词: 绕弯成形  “日”字形截面型材  正交试验  有限元仿真  工艺参数
英文关键词: rotary draw bending  profile with “日”-shaped section  orthogonal experiment  the finite element simulation analysis  process parameters
基金项目:
Author NameAffiliation
DING Li-bo Baicheng Vecational and Technical College, Baicheng 137000, China 
LIANG Tian College of Materials Science and Engineering, Jilin University, Changchun 130000, China 
LI Ming-jie Baicheng Vecational and Technical College, Baicheng 137000, China 
LIANG Ji-cai College of Materials Science and Engineering, Jilin University, Changchun 130000, China 
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中文摘要:
      目的 探究“日”字形截面型材绕弯成商用车防护梁时工艺参数对型材壁厚的影响,以提高防护梁制件的产品质量。方法 基于有限元仿真分析,利用正交试验设计模拟出不同工艺参数配比下型材的成形过程,并对型材弯曲段外侧壁厚减薄量和内侧壁厚增厚量进行极差分析。结果 工艺参数中弯曲半径和芯模的芯头个数对外侧减薄率和内侧增厚率影响极大,其余参数相对影响较小。依据正交试验结果并综合分析,最终确立了较好的防护梁绕弯成形方案,并通过试验验证了模拟结果的有效性。结论 证明了选择合适的工艺参数配比可以显著减轻型材的壁厚变化,从而极大提高防护梁制件的产品质量。
英文摘要:
      The purpose of this article is to explore the influence of process parameters on the wall thickness of the profile with “日”-shaped section when the profile is rotary draw bending into the protective beam for commercial vehicles, so as to improve the product quality of the protective beam. Based on the finite element simulation analysis, the orthogonal experimental design was used to simulate the forming process of the profile under different process parameters ratio, and the range analysis on the thickness reduction of the outer wall and the increase of the inner wall thickness in the bending area of the profile are conducted. Finally, the research shows that the bending radius and the number of core heads of mandrel have a great influence on the outer thinning rate and inner thickening rate, and other parameters have relatively little influence. Based on the results of the orthogonal experiment and comprehensive analysis, a better rotary draw bending plan of the protective beam is finally established and the validity of the simulation results is verified through experiments. Studies have proved that selecting the appropriate combination of process parameters ratio can significantly reduce the wall thickness changes of the profile, thereby greatly improving the product quality of the protective beam.
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