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
大型贮箱壁板蠕变时效成形高效均匀传热模具结构优化
英文标题:Optimization on die structure with high efficient and uniform heat transfer for creep aging of large tank wall panels
作者:王建光 龚集响 李晓凯 胡蓝 张松 王孜力 杨有良  徐凌志 湛利华 
单位:1.上海航天设备制造总厂有限公司 2. 中南大学 轻合金研究院 
关键词:蠕变时效成形 模具 温度场 贮箱壁板 温度均匀性 
分类号:TG76
出版年,卷(期):页码:2022,47(9):196-202
摘要:

 模具型面的高效均匀升温对贮箱壁板蠕变时效成形效率及成形精度具有重要的影响。以贮箱壁板框架式模具为例,基于Fluent软件对壁板模具蠕变时效成形过程中的温度场进行仿真模拟。根据模具温度场数据及强度校核结果,对模具进行结构优化以提高模具型面升温的高效性及均匀性。结果表明:模具结构优化前,模具温度场呈现阶梯状分布,型面位置最大温差为25 ℃,存在最慢升温区域(SHA),模具质量为2414.5 kg;模具结构优化后,在等效应力及整体变形处于安全范围的条件下,模具升温速率显著提高,型面位置最大温差降为15 ℃,降低了40%,温度分布更加均匀,最慢升温区域消失,同时模具质量减少了17%。研究工作为蠕变时效成形高效均匀传热模具的优化设计提供了理论支撑。

 The heating with high-efficiency and uniformity of die surface has an important influence on the forming efficiency and forming accuracy of creep aging for tank wall panels. Therefore, for the frame die of tank wall panels, the temperature field of die for wall panels during creep aging process was simulated by software Fluent, and according to the data of die temperature field and the verification result of strength, the die structure was optimized in order to improve the high-efficiency and uniformity of die surface heating. The results show that before the optimization of die structure, the temperature field of die presents a stepped distribution, the maximum temperature difference in die surface position is 25 , there is the slowest heating area (SHA), and the die weight is 2414.5 kg. However, after the optimization of die structure, under the condition that the equivalent stress and overall deformation are within a safe range, the heating rate of die is significantly increased, the maximum temperature difference in die surface position is reduced to 15 with a decrease of 40%, the temperature distribution is more uniform, the slowest heating area disappears, and at the same time, the die weight is decreased by 17%. Thus, this research work provides theoretical support for the optimal design on die with high-efficient and uniform heat transfer for creep aging.

基金项目:
上海市技术带头人计划(21XD1431800)
作者简介:
王建光(1986-),男,硕士,高工 E-mail:501204510@qq.com 通信作者:湛利华(1976-),女,博士,教授 E-mail:yjs-cast@csu.edu.cn
参考文献:

 [1]曾元松,黄霞.大型整体壁板成形技术[J].航空学报,2008(3)721-727.


 


Zeng Y S, Huang X. Large scale integral wall forming technology[J].Acta Aeronautica et Astronautica Sinica, 2008(3)721-727.


 


[2]王秀凤, 郭晓丽,陈光南,等. 整体壁板成形评述 [J]. 现代制造技术与装备,2008(3)1-47.


 


Wang X F, Guo X L, Chen G N, et al. Review of integral wall panel forming [J].Modern Manufacturing Technology and Equipment, 2008(3): 1-47.


 


[3]湛利华,杨有良.大型构件蠕变时效成形技术研究[J].航空制造技术,2016(13):16-23.


 


Zhan L H, Yang Y L.Study on creep aging forming technology of large components[J]. Aviation Manufacturing Technology, 2016(13): 16-23.


 


[4]曾元松,黄遐,黄硕.蠕变时效成形技术研究现状与发展趋势[J].塑性工程学报,200815(3):1-8.


 


Zeng Y S, Huang X, Huang S.The research situation and the developing tendency of creep ageforming technology[J].Chinese Journal of Plasticity Engineering, 2008,15(3): 1-8.


 


[5]Gniatczyk J LAcuuilina G RDeaver D T.Composite molding tools and parts and processes of forming molding tools[P]. US:US09374330,2001-10-30.


 


[6]Michael C NMichael N. Composite Airframe Structures[M].5th Edition. Hong KongHong Kong Conmilit Press2005.


 


[7]赵一鸣,安鲁陵,匡海华,等.复合材料构件成形模具温度场均匀性改善研究[J].航空制造技术,201865):84-88,94.


 


Zhao Y M An L L Kuang H Het al. Research on improvement of temperature field uniformity of composite component forming mould[J]. Aeronautical Manufacturing Technology 2018615):84-88,94.


 


[8]杨春霞,王伟,张国伟,等.热压罐成形框架式模具温度场分析[J].电子机械工程,202036(3):48-52.


 


Yang C X, Wang W, Zhang G W, et al. Analysis of the temperature field of autoclave forming frame mold[J]. Electronic Mechanical Engineering, 202036(3): 48-52.


 


[9]张铖. 大型复合材料结构热压罐工艺温度场权衡设计 [D].哈尔滨: 哈尔滨工业大学,2009.


 


Zhang C. Curing Temperature Field Trade off Design Method of Large Scale Composite Material Structure in Autoclave Process[D]. Harbin: Harbin Institute of Technology, 2009.


 


[10]张铖,梁宪珠,王永贵,. 热压罐工艺环境对于先进复合材料框架式成型模具温度场的影响 [J]. 材料科学与工程学报,2011 29(4): 547-553.


 


Zhang C, Liang X Z, Wang Y G, et al. Rules of impact of autoclave environment on frame mould temperature field of advanced composites[J]. Journal of Materials Science and Engineering, 2011, 29(4): 547-553.


 


[11]张旭生,甘忠.热压罐时效成形模具温度场优化研究[J].中国制造业信息化,20114019):30-3237.


 


Zhang X S Gan Z. Research on optimization of temperature field of aging forming die for hot-pressing tank[J].Information Technology of China Manufacturing Industry, 20114019):30-3237.


 


[12]熊蓉,安鲁陵,花蕾蕾,等.热压罐成形过程中框架式模具温度场模拟与分析[J].宇航材料工艺,202050(1):15-21.


 


Xiong R, An L L, Hua L L, et al.Simulation and analysis of frame mold temperature field during autoclave forming process[J].Aerospace Materials & Technology, 2020,50(1):15-21.

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