查看原文
其他

重磅推出!IJMMM 结构与功能镁合金专刊 (2022年第7期)

结构与功能镁合金专刊

客座主编

黄原定  高级研究员

德国亥姆霍兹镁合金创新中心

蒋斌  教授

重庆大学



序言

镁合金有诸多优良性能如高比强度,良好的铸造性能及阻尼性能, 作为轻量化结构材料在交通运输业及航空业有广泛的应用前景。为了拓宽镁合金的应用前景,过去在如何进一步提高镁合金的高温性能和如何进一步改善镁合金的室温塑性与成型性方面进行了大量的研究。镁合金除了在结构方面的应用外,它们也可被开发为功能材料应用于相关领域。基于镁合金自身的腐蚀特点、良好的生物相容性与人体骨骼相近的弹性模量,其被研究开发为可降解医用材料应用于体内。除医疗方面的功能性应用外,镁合金在作为电池阳极材料和储氢材料方面也表现出巨大的潜在应用前景。

遗憾的是镁合金还存在几个方面的应用瓶颈,如室温塑性及成型差、形变不对称性、强度低。作为潜在医疗植入降解材料,其降解速度又过快。为了解决这些问题, 促进镁合金的广泛应用, 开发高性能镁合金结构材料及其功能材料已成为当前材料科学、生物科学及能源领域的研究热点。

因此,为了解镁合金开发及其应用方面的最新进展及考虑到进一步拓宽镁合金应用的重要性,我们推出了就镁合金开发、加工工艺、合金的表面处理、及作为储氢材料的专刊。本专刊共收录了17篇论文,包括1篇镁合金表面处理综述及16篇研究论文。希望通过本专刊收录的论文能够帮助相关研究人员对镁合金作为结构材料及功能材料的研究进展方面有综合全面的了解。




目录速览



结构与功能镁合金专刊绪论

黄原定,  蒋斌

引用本文:Yuanding Huang and Bin Jiang, Editorial for special issue on developments of magnesium alloys for structural and functional applications, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1307-1309. https://doi.org/10.1007/s12613-022-2515-3

▐  流道设计和增压压力对高压压铸Mg–3.0Nd–0.3Zn–0.6Zr镁合金微观组织的影响

张通通,于文波,马超胜,周玉琦,熊守美

引用本文:Tongtong Zhang, Wenbo Yu, Chaosheng Ma, Yuqi Zhou, and Shoumei Xiong, Effects of runner design and pressurization on the microstructure of a high-pressure die cast Mg–3.0Nd–0.3Zn–0.6Zr alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1310-1316. https://doi.org/10.1007/s12613-021-2386-z

▐  Fe杂质诱发Mg–Al系合金异质形核

廖恒斌,莫丽玲,周雄,袁志钟,杜军

引用本文:Hengbin Liao, Liling Mo, Xiong Zhou, Zhizhong Yuan, and Jun Du, Revealing the nucleation event of Mg–Al alloy induced by Fe impurity, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1317-1321. https://doi.org/10.1007/s12613-021-2406-z


▐  通过引入双模态组织和织构再取向工艺来提高AZ31镁合金的室温弯曲性能

何超,张逸冰,袁明,蒋斌,王庆航,柴炎福,黄光胜,张丁非,潘复生

引用本文:Chao He, Yibing Zhang, Ming Yuan, Bin Jiang, Qinghang Wang, Yanfu Chai, Guangsheng Huang, Dingfei Zhang, and Fusheng Pan, Improving the room-temperature bendability of Mg–3Al–1Zn alloy sheet by introducing a bimodal microstructure and the texture re-orientation, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1322-1333. https://doi.org/10.1007/s12613-021-2384-1


▐  弯曲变形和拉伸变形对Mg–Zn–RE–Zr合金织构演变和拉伸成形性能的影响

Yuya Ishiguro,Xinsheng Huang,Yuhki Tsukada, Toshiyuki Koyama,Yasumasa Chino

引用本文:Yuya Ishiguro, Xinsheng Huang, Yuhki Tsukada, Toshiyuki Koyama, and Yasumasa Chino, Effect of bending and tension deformation on the texture evolution and stretch formability of Mg–Zn–RE–Zr alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1334-1342. https://doi.org/10.1007/s12613-021-2398-8


▐  通过斜坡挤压实现Mg–3Al–1Zn合金板材力学性能的显著提升

杨华宝,柴炎福,蒋斌,何超,何俊杰,杨青山,袁明

引用本文:Huabao Yang, Yanfu Chai, Bin Jiang, Chao He, Junjie He, Qingshan Yang, and Ming Yuan, Enhanced mechanical properties of Mg–3Al–1Zn alloy sheets through slope extrusion, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1343-1350. https://doi.org/10.1007/s12613-021-2370-7


  轴向预应力对挤压AZ31镁合金自由端扭转力学性能的影响

李群,孟丹,付志昌,赵辉,杨冲,彭艳,石宝东

引用本文:Qun Li, Dan Meng, Zhichang Fu, Hui Zhao, Chong Yang, Yan Peng, and Baodong Shi, Effect of axial preloading on mechanical behavior during the free-end torsion of an extruded AZ31 magnesium alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1351-1360. https://doi.org/10.1007/s12613-022-2417-4


▐  错距旋压AZ31镁合金管材的微观组织演变及耐蚀性能

郑凡林,陈洪胜,张媛琦,王文先,聂慧慧

引用本文:Fanlin Zheng, Hongsheng Chen, Yuanqi Zhang, Wenxian Wang, and Huihui Nie, Microstructure evolution and corrosion resistance of AZ31 magnesium alloy tube by stagger spinning, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1361-1372. https://doi.org/10.1007/s12613-021-2396-x


▐  不同应变速率下AZ80镁合金的高温力学性能

刘文君,蒋斌,向宏陈,叶青,夏胜奇,陈嗣强,宋江凤,麻彦龙,杨明波

引用本文:Wenjun Liu, Bin Jiang, Hongchen Xiang, Qing Ye, Shengqi Xia, Siqiang Chen, Jiangfeng Song, Yanlong Ma, and Mingbo Yang, High-temperature mechanical properties of as-extruded AZ80 magnesium alloy at different strain rates, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1373-1379. https://doi.org/10.1007/s12613-022-2456-x


▐  Li含量对挤压态Mg–1Zn合金显微组织与力学性能的影响

赵俊,蒋斌,王庆航,袁明,柴炎福,黄光胜,潘复生

引用本文: Jun Zhao, Bin Jiang, Qinghang Wang, Ming Yuan, Yanfu Chai, Guangsheng Huang, and Fusheng Pan, Effects of Li addition on the microstructure and tensile properties of the extruded Mg–1Zn–xLi alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1380-1387. https://doi.org/10.1007/s12613-021-2340-0

▐  高成形性镁合金板材的成分优化

曾卓然,边明哲,徐世伟,唐伟能,Chris Davies,Nick Birbilis,聂建峰

引用本文:Zhuoran Zeng, Mingzhe Bian, Shiwei Xu, Weineng Tang, Chris Davies, Nick Birbilis, and Jianfeng Nie, Optimisation of alloy composition for highly-formable magnesium sheet, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1388-1395. https://doi.org/10.1007/s12613-021-2365-4


▐  低成本高强韧性兼备的Mg−Al−Ca−Zn−Mn变形合金

杨坤,潘虎成,杜森,李曼,李景仁,谢红波,黄秋燕,莫华均,秦高梧

引用本文:Kun Yang, Hucheng Pan, Sen Du, Man Li, Jingren Li, Hongbo Xie, Qiuyan Huang, Huajun Mo, and Gaowu Qin, Low-cost and high-strength Mg−Al−Ca−Zn−Mn wrought alloy with balanced ductility, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1396-1405. https://doi.org/10.1007/s12613-021-2395-y


▐  双连续 Ti2AlNx MAX 相增强镁基复合材料的制备及性能研究

陈宛彤,于文波,张鹏程,皮旭锋,马超胜,马国政,张林

引用本文:Wantong Chen, Wenbo Yu, Pengcheng Zhang, Xufeng Pi, Chaosheng Ma, Guozheng Ma, and Lin Zhang, Fabrication and performance of 3D co-continuous magnesium composites reinforced with Ti2AlNx MAX phase, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1406-1412. https://doi.org/10.1007/s12613-022-2427-2


▐  利用表面纳米化技术改善AZ31镁合金的弯曲性能

Jianyue Zhang,Xuzhe Zhao,孟德安,Qingyou Han

引用本文:Jianyue Zhang, Xuzhe Zhao, Deʼan Meng, and Qingyou Han, Utilization of surface nanocrystalline to improve the bendability of AZ31 Mg alloy sheet, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1413-1424. https://doi.org/10.1007/s12613-022-2414-7



▐  纳米SiO2部分取代氧化石墨烯作为水基润滑添加剂在镁合金/钢界面的摩擦学性能研究

谢红梅,戴甲洪,周丹

引用本文:Hongmei Xie, Jiahong Dai, and Dan Zhou, Tribological behaviors of graphene oxide partly substituted with nano-SiO2 as lubricant additives in water for magnesium alloy/steel interfaces, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1425-1434. https://doi.org/10.1007/s12613-022-2465-9


▐  镁及其合金中磷酸盐基转化膜的研究进展

Debasis Saran,Atul Kumar,Sivaiah Bathula,David Klaumünzer, Kisor K Sahu

引用本文:Debasis Saran, Atul Kumar, Sivaiah Bathula, David Klaumünzer, and Kisor K Sahu, Review on the phosphate-based conversion coatings of magnesium and its alloys, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1435-1452. https://doi.org/10.1007/s12613−022-2419-2


▐  碳酸盐添加剂对Mg–9Li–3Al合金等离子电解氧化涂层显微组织和耐蚀性的影响

靳思远,马晓春,巫瑞智,李廷取,王甲秀,Boris L Krit,侯乐干,张景怀,王桂香

引用本文:Siyuan Jin, Xiaochun Ma, Ruizhi Wu, Tingqu Li, Jiaxiu Wang, Boris L Krit, Legan Hou, Jinghuai Zhang, and Guixiang Wang, Effect of carbonate additive on the microstructure and corrosion resistance of plasma electrolytic oxidation coating on Mg–9Li–3Al alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1453-1463. https://doi.org/10.1007/s12613-021-2377-0


▐  构建负载于石墨烯纳米片的FeOOH纳米粒子用于改善氢化镁的储氢性能

宋孟臣,张刘挺,郑家广,于子冬,王胜男

引用本文:Mengchen Song, Liuting Zhang, Jiaguang Zheng, Zidong Yu,  and Shengnan Wang, Constructing graphene nanosheet-supported FeOOH nanodots for hydrogen storage of MgH2, Int. J. Miner. Metall. Mater., 29(2022), No. 7, pp. 1464-1473. https://doi.org/10.1007/s12613-021-2393-0



END



期刊简介ABOUT US

《矿物冶金与材料学报(英文版)》(InternationalJournal of Minerals, Metallurgy and Materials,IJMMM)是由教育部主管、北京科技大学主办、Springer Nature合作出版的英文学术期刊,1994年创刊,月刊。主要刊载矿物、冶金和材料领域的原创研究论文和特约综述等。被SCIE,EI,CAS,Scopus,ProQuest,OCLC,INSPEC等国际著名文摘或检索系统作为文献源期刊收录。入选中科院期刊分区二区。2020 JCR影响因子为2.232,在冶金与冶金工程学科位于Q2区,2021实时JCR影响因子为3.77(2022年3月31日数据)。2021 CiteScore为4.7,在材料科学-金属与合金类期刊中排名第27位(共155种期刊),位于Q1区。入选《有色金属领域高质量科技期刊分级目录》T1级别;《冶金工程技术领域高质量科技期刊分级目录》T1级别。

联系我们CONTACT US

加入学科微信群

为了更好地为专家提供服务,促进学术交流,我们建立了“矿物”“冶金”“材料”三个学科微信群”。微信群定位为期刊作者和读者提供与期刊编辑在投审稿、编校和文章宣传推广、论文写作与投稿技能等方面进行交流的互动平台,同时也是相关学科专家们进行学术交流互动的平台。

想加入群的作者和专家,请加右侧各专业的微信负责人微信,并留言想要加入的群(备注:名字+单位),营销广告人员请勿扰!

矿物学科:

负责人:杜焱

微信号:mcgrady2006duyan

冶金学科

负责人:陈佩仙

微信号:flywincpx

材料学科:

负责人:潘璐

微信号:panlu151017



其他联系方式

网址:http://ijmmm.ustb.edu.cn

http://www.springer.com/journal/12613

邮箱:journal@ustb.edu.cn

电话:+86 010 62332875

关注我们




您可能也对以下帖子感兴趣

文章有问题?点此查看未经处理的缓存