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
6061铝合金灯具散热底座芯轴挤压成形研究
英文标题:Research on extrusion forming of 6061 aluminum alloy spindle for lamp cooling holder
作者:张侠 钱进浩 龚小涛 成国发 於孝谦 
单位:常州信息职业技术学院 
关键词:6061铝合金 LED散热底座芯轴 杯-杆复合挤压 挤压成形速度 DEFORM-3D 
分类号:TG316
出版年,卷(期):页码:2020,45(1):125-130
摘要:

 为了满足6061铝合金LED灯具散热底座芯轴精密制坯要求,根据零件的形状结构特点,制定了复合挤压成形工艺方案;并利用DEFORM-3D有限元分析软件,分别对不同铝坯规格和挤压成形速度下的挤压工艺进行了模拟仿真计算,研究分析了各种方案模拟结果的行程-载荷曲线及金属流线分布。最终确定相对较优的制坯规格尺寸为Φ56 mm×43 mm,挤压速度为30 mm·s-1。然后进行了设备调试及生产验证。实践表明,挤压成形件与模拟结果基本吻合,产品质量合格、稳定,性能得到提高;与原切削加工方法相比,节省原材料66%。

 In order to meet the precision blanking requirement of LED lamp cooling holder spindle for 6061 aluminum alloy, the compound extrusion forming process scheme was designed according to the characteristics of the shape and structure of part. Then, the extrusion processes under different aluminum blank sizes and extrusion speeds were simulated by FEA software DEFORM-3D, and the simulation results of stroke-load curve and metal flow distribution for above different processes were researched. Finally, the relatively optimal size of Φ56 mm×43 mm and the extrusion speed of 30 mm·s-1 were selected, and the equipment debugging and production verification were conducted. The results show that the extruded parts are basically consistent with the simulation results, and the quality and performance are stable and improved. Compared with the original cutting process, the raw material is saved by 66%.

基金项目:
作者简介:
作者简介:张侠(1984-),女,硕士,讲师 E-mail:645318805@qq.com
参考文献:

 [1]钱进浩,刘春,张露. 铝合金灯座芯棒温挤成形工艺及模具寿命[J].锻压装备与制造技术,201348(1):73-74.


Qian J H, Liu C, Zhang L. Warm extrusion process and die life of Al alloy lamp holder spindle[J]. China Metalforming Equipment & Manufacturing Technology, 201348(1):73-74.[2]赖周艺,钱进浩,胡亚民. 一种大功率LED插地灯灯体精密锻造成形工艺[P].中国:CN201510571837.6, 2016-07-27.


Lai Z Y, Qian J H, Hu Y M. Precision forging process for one larger power LED lamp holder[P]. China:CN201510571837.6, 2016-07-27.


[3]王祝唐,田荣璋. 铝合金及其加工手册[M].3. 长沙:中南大学出版社,2005.


Wang Z T, Tian R Z. Aluminum Alloy Processing Manual[M]. The Third Edition. Changsha: Central South University Press, 2005.


[4]李长胜,刘鹏,武良臣. 铝合金球底筒形件挤压成形力学分析[J].锻压装备与制造技术,2004,39(1):46-48.


Li C S, Liu P, Wu L C. Mechanics analysis on extrusion shaping of Al alloy cylindrical cup with spherical bottom[J]. China Metalforming Equipment & Manufacturing Technology, 2004,39(1):46-48.


[5]张志强,张晓凯,何东野. 6016铝合金热冲压数值模拟研究[J].锻压技术,2018,43(12):16-19.


Zhang Z Q, Zhang X K, He D Y. Research on numerical simulation of hot stamping for 6016 aluminum alloy[J]. Forging & Stamping Technology, 2018,43(12):16-19.


[6]胡亚民. 锻造工艺过程及模具设计[M]. 北京:北京大学出版社, 2008.


Hu Y M. Forging Technology Process and Die Design[M]. Beijing: Beijing University Press, 2008.


[7]姚泽坤. 锻造工艺学与模具设计[M].2. 西安:西北工业大学出版社, 2007.


Yao Z K. Forging Technology and Die Design[M]. The Second Edition. Xian: Northwestern Polytechnical University Press, 2007.


[8]雷同飞,张宏. 汽车发动机用6A02铝合金管材挤压速度仿真优化[J].热加工工艺,2013,42(15):108-109,112.


Lei T F, Zhang H. Optimization of extrusion speed of 6A02 aluminum alloy tube for automotive engine on FE[J]. Hot Working Technology, 2013,42(15):108-109,112.


[9]胡亚民. 精锻模具图册[M].北京: 机械工业出版社,2002.


Hu Y M. Precision Forging Dies Atlas[M]. Beijing: China Machine Press, 2002.


[10]刘静安, 黄凯,谭炽东. 铝合金挤压工模具技术[M].北京:冶金工业出版社,2009.


Liu J A, Huang K, Tan Z D. Aluminum Alloy Extrusion Tooling Technology[M]. Beijing: Metallurgical Industry Press, 2009.


[11]陈学慧. 铝合金分流器等温锻造工艺设计[J].锻造与冲压,2019,(5):38-42.


Chen X H. Isothermal forging process design of Al alloy shunt[J]. Forging and Metalforming, 2019,(5):38-42.


[12]钱进浩. 70型汽车空调AL6061铝合金高压气缸温挤压成形工艺[J].精密成形工程,2012,4(4):57-58.


Qian J H. Warm extrusion process of AL6061 alloy high pressure air cylinder for model 70 automobile AC[J]. Journal of Netshape Forming Engineering,2012,4(4):57-58.

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