网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
基于Deform宽板弯曲应力中性层位置的数值分析及模拟
英文标题:Numerical analysis and simulation on stress neutral layer position of bending for wide plate based on Deform
作者:金敦水 董途 
单位:安徽电子信息职业技术学院 安徽天思朴超精密模具股份有限公司 
关键词:宽板 应力中性层 变薄系数 内移系数 弯曲变形 
分类号:THl62
出版年,卷(期):页码:2021,46(11):270-274
摘要:

 为了确定宽板弯曲变形过程中应力中性层位置、提高弯曲件的成形精度,通过对宽板弯曲时其截面微元体的受力情况进行分析,采用经典的力学分析假设建立了微分方程,确定了应力中性层位置和相对弯曲半径以及变薄系数之间的数学关系,发现了宽板在弹塑性弯曲变形过程中,应力中性层位置向板材内层移动,同时,应力中性层位置与中宽板中心层位置之差随着弯矩的增大而增大,通过Deform软件和弯曲模具设计实验,验证了理论研究结果,弯曲件工艺设计中可根据材料的变形程度得到变薄系数和内移系数的取值范围,进而指导实际生产。

 In order to determine the position of stress neutral layer in the bending process of wide plate and improve the forming accuracy of bending parts, by analyzing the stress of the micro element at the section of wide plate during bending, the differential equation was established by the classical mechanical analysis hypothesis, and the mathematical relationship among the position of stress neutral layer, the relative bending radius and the thinning coefficient was determined to obtain that the position of stress neutral layer shifted to the inner layer of plate during the elastic-plastic bending deformation process of wide plate. At the same time, the difference between the position of stress neutral layer and the position of center layer of medium wide plate increased with the increasing of bending moment. Furthermore, the theoretical research results were verified by software Deform and bending die design experiments, and in the process design of bending parts, the value ranges of thinning coefficient and inward shift coefficient were obtained according to the deformation degree of materials so as to guide the actual production.

基金项目:
安徽省高校自然科学重点研究项目(KJ2018A0780,KJ2019A1066);安徽省高校优秀拔尖人才资助项目(gxbjZD2020124)
作者简介:
作者简介:金敦水(1984-),男,硕士,副教授,E-mail:181539444@qq.com
参考文献:

 [1]Hill R.The Mathematical Theory of Plasticity[M].London: Oxford University Press1950.


[2]Gardiner F J. The springback of metals[J]. Trans ASME, 1957791-9.


[3]Crafoord R. Plastie Sheet Bending[M].Goteborg,1970.


[4]官英平, 李洪波,王凤琴. 板材弯曲最小相对弯曲半径计算方法探讨[J].金属成形工艺,2003,21(5):52-54.


Guan Y P, Li H B, Wang F Q. Discussion about calculation methods of the minimum relative bending radius for plate bending[J]. Metal Forming Technology,2003,21(5):52-54.


[5]贺广零,李倩妹,洪芳, .宽板弯曲成形过程中板厚变化精化模型[J].塑性工程学报,2007,14(6):205-208.


He G L, Li Q M, Hong F, et al. Fine model of wide sheet thickness variation in bending forming[J] Journal of Plasticity Engineering, 2007,14(6):205-208.


[6]苏胜伟,李纬民,顾勇飞,等.小曲率板材弹塑性校正弯曲回弹分析[J].塑性工程学报,201926(3):197-202.


Su S W, Li W M, Gu Y F, et al. Springback analysis on elasticplastic bending of smaller curvature sheet metal[J]. Journal of Plasticity Engineering,201926(3):197-202.


[7]官英平, 赵军.板料弹塑性弯曲应力应变中性层位置关系探讨[J].塑性工程学报,2002,9(2):39-41.


Guan Y P, Zhao J. Research on place of stress and strain neutral layer in elastic plastic bending of plate[J]. Journal of Plasticity Engineering,2002,9(2):39-41.


[8]胡一博, 程培元,朱兴元.宽板弯曲应变中性层内移及板厚变薄规律的探讨[J].锻压装备与制造技术,2016, 51(4):51-56.


Hu Y B, Cheng P Y, Zhu X Y. Discussion about the change laws of strain neutral layer and plate thickness during wide plate bending process[J].China Metalforming Equipment & Manufacturing Technology2016, 51(4):51-56.


[9]贺广零. 宽板弯曲成形过程中的板厚变化规律[J].塑性工程学报, 2006,13(6):48-51.


He G L. Thickness variation of wide sheet in bending forming[J].Journal of Plasticity Engineering, 2006,13(6):48-51.


[10]秦泗吉,闫红艳.宽板弯曲问题的应力中性层与应变中性层[J].燕山大学学报,2002,26(3):213-215.


Qing S J,Yan H Y.The neutral surfaces of stress and strain in wide plate bending process[J].Journal of Yanshan University, 2002, 26(3):213-215.


[11]白图娅, 梁培.损伤对JCO成形弯曲回弹计算的影响[J].塑性工程学报, 2020,27(4):75-82.


Bai T Y, Liang P. Effects of damage on bending springback calculation of JCO forming[J].Journal of Plasticity Engineering, 2020,27(4):75-82.


[12]Nayebi Ali, Shahabi Mehdi. Effect of continuum damage mechanics on springback prediction in metal forming processes[J]. Journal of Mechanical Science and Technology, 2017, 31(5):2229-2234.


[13]Dai H L, Jiang H J. Investigation on the influence of damage to springback of Ushape HSLA steel plates[J]. Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solidstate Chemistry and Physics, 2017,70(8):575-586.

服务与反馈:
本网站尚未开通全文下载服务】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9