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5052铝合金空心铆钉与半空心铆钉的自冲铆接强度对比研究
英文标题:Comparative study on self-piercing riveting strengths of hollow rivet and semi-hollow rivet for aluminum alloy 5052
作者:黄志超 李绍杰 黄秋雯 
单位:华东交通大学 
关键词:自冲铆接  空心铆钉  半空心铆钉  拉伸实验  接头质量 
分类号:TG938
出版年,卷(期):页码:2017,42(11):159-163
摘要:
分别采用高度为7和8 mm的空心铆钉和半空心铆钉对厚度为3 mm+3 mm的5052铝合金板料进行了铆接实验,并通过接头表面和接头截面对各自连接接头质量进行了分析;利用万能实验机对铆接件进行了拉伸实验,并分析其接头失效形式。实验结果表明:半空心铆钉铆接接头质量优于空心铆钉铆接接头,随着铆钉高度的增加两者的接头质量也更接近;半空心铆钉铆接静强度大于空心铆钉铆接静强度。当铆钉高度由7 mm增加到8 mm时,空心铆钉铆接件承受的最大载荷由半空心铆钉铆接件的85%提高到了87%,失效位移由半空心铆钉铆接件的50%提高到了80%。
The riveting experiments of aluminum alloy 5052 sheets with 3 mm+3 mm thickness were carried out by hollow rivets and semi-hollow rivets with heights of 7 and 8 mm respectively, and the quality of joints was analyzed by analysis on the joint surface and joint cross section. Then, the tensile tests of riveting joints were carried out by universal testing machine, and the failure forms of joints were analyzed. The experimental results show that the quality of semi-hollow riveting joints is better than that of hollow riveting joints. With the increase of rivet height, the quality of both joints tends toward the same, and the strength of joints with semi-hollow rivets is higher than that of the joints with hollow rivets. When the rivet height increases from 7 mm to 8 mm, the riveting pieces of hollow rivets can withstand the maximum load from 85% to 87% of the riveting pieces of semi-hollow rivets and withstand the failure displacement from 50% to 80% of the riveting pieces of semi-hollow rivets.
基金项目:
国家自然科学基金资助项目(51565014)
作者简介:
作者简介:黄志超(1971-),男,博士,教授 E-mail:hzcosu@163.com
参考文献:
[1]郭玉琴, 朱新峰, 杨艳,等. 汽车轻量化材料及制造工艺研究现状[J]. 锻压技术, 2015, 40(3):1-6.

Guo Y Q, Zhu X F, Yang Y, et al. Research status of automobile lightweight material and manufacturing technology[J].Forging & Stamping Technology, 2015, 40 (3):1-6[2]陈超, 赵升吨, 韩晓兰,等. 轻质合金无铆塑性连接方式及其关键技术的探讨[J]. 锻压技术, 2016, 41(1):1-6.

Chen C, Zhao S D, Han X L, et al. Discussion on the connection method and its key technology of lightweight alloy without riveting plastic connection[J]. Forging & Stamping Technology, 2015,41 (1): 1-6.

[3]黄志超. 板料连接技术进展[J]. 锻压技术, 2006, 31(4):119-122.

Huang Z C. Advances in sheet meal connection technology[J]. Forging & Stamping Technology, 2006, 31 (4): 119-122.

[4]吴小丹, 王敏, 孔谅,等. SPR自冲铆接技术研究现状及应用前景[J]. 电焊机, 2016, 46(4):31-36.

Wu X D, Wang M, Kong L, et al. Research status and application prospect of SPR self-piercing riveting technology [J]. Electric Welding Machine, 2016, 46 (4): 31-36.

[5]张学奇, 董万鹏. 半空心铆钉自冲铆接的研究进展[J]. 热加工工艺, 2016,45(9):5-8.

Zhang X Q, Dong W P. Study on self-piercing riveting of semi-hollow rivet[J]. Hot Working Technology, 2016,45(9): 5-8.

[6]万淑敏, Hu S Jack, 李双义,等. 半空心铆钉自冲铆接的工艺参数及铆接质量的判定[J]. 天津大学学报:自然科学与工程技术版, 2007, 40(4):494-498.

Wan S M, Hu S Jack, Li S Y, et al. Determination of process parameters and riveting quality of semi-hollow rivet riveting[J]. Transactions of Tianjin University:Science and Technology, 2007, 40(4):494-498.

[7]万淑敏, 胡仕新, 张连洪,等. 模具工艺参数对自冲铆接工艺过程及铆接质量的影响[J]. 机械设计, 2008, 25(4):62-65.

Wan S M, Hu S X, Zhang L H, et al. Effect of mold process parameters on self-piercing process and riveting quality[J]. Machine Design, 2008, 25 (4): 62-65.

[8]金鑫, 李永兵, 楼铭,等. 基于正交试验的铝合金一高强钢异种金属自冲铆接工艺优化[J]. 汽车工程学报, 2011, 1(4):185-191.

Jin X, Li Y B, Lou M, et al. Optimization of self-piercing riveting process of dissimilar metal for aluminum alloy-high strength steel based on orthogonal test[J]. Chinese Journal of Automotive Engineering,2011, 1 (4): 185-191.

[9]Mori K, Abe Y, Kato T. Self-pierce riveting of multiple steel and aluminium alloy sheets[J]. Journal of Materials Processing Technology, 2014, 214(10):2002-2008.

[10]Franco G D, Fratini L, Pasta A. Influence of the distance between rivets in self-piercing riveting bonded joints made of carbon fiber panels and AA2024 blanks[J]. Materials & Design, 2012, 35:342-349.

[11]严柯科, 何晓聪, 张玉涛,等. 单搭自冲铆接过程的数值模拟及质量评价[J]. 机械设计与制造工程, 2011, 40(19):76-78.

Yan K K, He X C, Zhang Y T, et al. Numerical simulation and quality evaluation of single-pass self-piercing process[J]. Machine Design and Manufacturing Engineering, 2011, 40 (19): 76-78.
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