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
合金元素对铝合金带筋机械构件拉伸和冲击性能的影响
英文标题:Influence of alloying elements on tensile and impact properties of aluminum alloy mechanical components with reinforced bar
作者:丁代存 
单位:山东交通学院 
关键词:合金元素铟In 合金元素铈Ce 铝合金带筋机械构件 拉伸性能 冲击性能 
分类号:TG146
出版年,卷(期):页码:2018,43(1):164-169
摘要:

在Al-1Mg-0.6Si-0.3Cr铝合金带筋机械构件中添加不同含量的合金元素铟In和铈Ce,并进行了拉伸性能和冲击性能的测试与分析。结果表明:添加合金元素In和Ce,有助于改善铝合金带筋机械构件的拉伸性能和冲击性能。合金元素In和Ce含量分别优选为0.5wt%和0.4wt%。与不添加合金元素In相比,添加0.5wt% In时,试样的抗拉强度提高15%、屈服强度提高25%、断后伸长率提高28%、冲击吸收功提高41%。与不添加合金元素Ce相比,添加0.4wt% Ce时,试样的抗拉强度提高17%、屈服强度提高18%、断后伸长率提高30%、冲击吸收功提高22%。与不添加In和Ce的构件相比,复合添加0.5wt%In和0.4wt% Ce后,构件的抗拉强度增大35%、屈服强度增大47%、断后伸长率增大67%、冲击吸收功增大73%。

Aluminum alloy Al-1Mg-0.6Si-0.3Cr mechanical components with reinforced bar were added with various contents of alloying elements of indium and cerium, and the tensile and impact properties of components were tested and analyzed. The results show that the additional elements of indium and cerium can improve the tensile and impact properties of aluminum alloy mechanical components with reinforced bar. The optimized contents of indium and cerium is 0.5wt% and 0.4wt% respectively. Comparing with the component without indium, the tensile strength, yield strength, elongation after fraction and impact absorption energy of the component with indium of 0.5wt% increase by 15%, 25%, 28% and 41%, respectively. Comparing with the component without cerium, the tensile strength, yield strength, elongation after fraction and impact absorption energy of the component with cerium of 0.4wt% increase by 17%, 18%, 30% and 22%, respectively. Comparing with the component without indium and cerium, the tensile strength, yield strength, elongation after fraction and impact absorption energy of the component with indium of 0.5wt% and cerium of 0.4wt% increase by 35%, 47%, 67% and 73%, respectively.

基金项目:
山东省自然科学基金资助项目(BS2015ZZ005)
作者简介:
作者简介:丁代存(1974-),男,硕士,讲师,E-mail:274750166@qq.com
参考文献:

[1]陈超,桂枫,陈明安, .铝合金板材弯曲成形性能[J].锻压技术,2013,38(1):25-30.


Chen C, Gui F, Chen M A, et al. Bending formability of aluminum alloy sheet [J]. Forging & Stamping Technology, 2013,38(1):25-30.


[2]郑晖,赵曦雅.汽车轻量化及铝合金在现代汽车生产中的应用[J].锻压技术,2016, 41(2):1-6.


Zheng H, Zhao X Y. Lightweight automobile and application of aluminum alloys in modern automobile production [J].Forging & Stamping Technology, 2016, 41(2):1-6.


[3]金飞翔,陈晓辉,王广东, .汽车6016-T4铝合金板材成形性能实验及数值模拟[J].锻压技术,2017,42(2):28-33.


Jin F X, Chen X H, Wang G D, et al. Experiment and numerical simulation on formability of Al alloy 6016-T4 panel for automotive body [J].Forging & Stamping Technology, 2017, 42(2):28-33.


[4]张新明,周志乐,唐建国, .Cr元素对Al-Mg-Si-Cu铝合金组织与性能的影响[J].材料工程,2013,(12):49-53.


Zhang X M, Zhou Z L, Tang J G, et al. Effects of Cr on microstructure and properties of Al-Mg-Si-Cu aluminum alloy [J]. Journal of Materials Engineering, 2013, (12):49-53.


[5]李勇,朱应禄.SiMg元素对铝合金熔体采用细化剂效果的影响[J].轻合金加工技术,2005,33(11):21-23.


Li Y, Zhu Y L. Effect of small amount of magnesium and silicon elements on the refinement of aluminium grain [J]. Light Alloy Fabrication Technology, 2005, 33(11):21-23.


[6]廖郁国,韩晓祺,曾苗霞, .Cu元素对7XXX系列铝合金再结晶的影响[J].上海金属,2014,36(3):25-28.


Liao Y G, Han X Q, Zeng M X, et al. Influence of Cu content on the recrystallization of 7XXX aluminum alloy [J]. Shanghai Metals, 2014, 36(3):25-28.


[7]马景灵,文九巴,李光福,.Mn元素的铝合金牺牲阳极材料的研究[J].金属热处理,2008,33(8):57-60.


Ma J L, Wen J B, Li G F, et al. Study on aluminum alloy containing manganese element sacrificial anode material [J]. Heat Treatment of Metals, 2008, 33(8):57-60.


[8]唐仁奎.Zn含量对7XXX铝合金性能及微观组织影响[J].锻压技术,2017,42(4):184-187.


Tang R K. Influence of Zn contents on properties and microstructure of aluminum alloy 7XXX [J]. Forging & Stamping Technology, 2017,42(4):184-187.


[9]刘路,陈江华,夏申琳,.V元素对2519铝合金组织与力学性能的影响[J].材料热处理学报,2014,35(4):78-83.


Liu L, Chen J H, Xia S L, et al. Effect of element V on microstructure and mechanical properties of 2519 alloy [J]. Transactions of Materials and Heat Treatment, 2014, 35(4):78-83.


[10]冯静,丁冬雁,张俊超,.Ti元素对7072铝合金显微组织与性能的影响[J].上海有色金属,2013,34(1):1-6.


Feng J, Ding D Y, Zhang J C, et al. The effects of titanium addition on microstructure and performances of 7072 aluminum alloy [J]. Shanghai Nonferrous Metals, 2013, 34(1):1-6.


[11]刘志杰,康慧,曲平, .Ni元素在3A21铝合金真空钎焊中的作用[J].轻合金加工技术,2006,34(1):39-41.


Liu Z J, Kang H, Qu P, et al. The study of nickel in vacuum brazing aluminum alloy 3A21 [J]. Light Alloy Fabrication Technology, 2006, 34(1):39-41.


[12]GB/T 228.1—2010, 金属材料   拉伸试验   1部分:室温试验方法[S].


GB/T 228.1—2010, Metallic materials—Tensile testing—Part 1: Method of test at room temperature [S].


[13]GB/T 229—2007, 金属材料   夏比摆锤冲击试验方法[S].


GB/T 229—2007, Metallic materials—Charpy pendulum impact test method [S].


[14]张玉朵,张弛,汪海锋,等.CeReCoNiCrAlY合金1000 氧化行为的影响[J].稀有金属,2016,40(5):409-414.


Zhang Y D, Zhang C, Wang H F, et al. Oxidation behaviour of CoNiCrAlY at 1000 with Ce and Re additions[J]. Chinese Journal of Rare Metals, 2016,40(5):409-414.


[15]王雪丽,王强,杨勇彪,等.铸态AZ80+0.4Ce镁合金热加工图及微观组织研究[J].塑性工程学报,2017,24(1):174-179.


Wang X L, Wang Q, Yang Y B, et al. Processing map and microstructure of as-cast AZ80+0.4Ce magnesium alloy[J]. Journal of Plasticity Engineering,2017,24(1):174-179.

服务与反馈:
文章下载】【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