| 查看: 1317 | 回复: 7 | |||
| 【有奖交流】积极回复本帖子,参与交流,就有机会分得作者 meconnie 的 3 个金币 ,回帖就立即获得 1 个金币,每人有 1 次机会 | |||
[交流]
期刊Crystals(JCR Q2, 影响因子2.589)纳米结构材料的专刊邀稿
|
|||
|
期刊“Crystals”(JCR Q2, 影响因子2.589)的Special Issue "High-Performance Heterogeneous Nanostructured Materials" https://www.mdpi.com/journal/cry ... tructured_materials Special Issue Information Dear Colleagues, A variety of key fields (including aerospace, advanced manufacturing, new energy, deep-sea technology, and transportation, etc.,) have created an urgent need for the design, fabrication, and service evaluation of new high-performance metallic structural materials. Uniformly reducing the grain size to the nanometer scale has been well recognized to substantially improve the strength of metals. However, the strengthened homogeneous nanograined metals will inevitably sacrifice other properties to a significant extent, such as ductility and thermal stability. In recent years, a new class of nanomaterials called heterogeneous nanostructured materials possessing the soft and hard mixed regions have been designed to a unique architecture, e.g., gradient phases/composition/grain size/twin spacing/lamellar, hierarchically structural grains/twins, and nanoprecipitates/second phases, from the nanometer scale to the macroscale in bulk specimens. Owing to the particular cooperative effects of strain/stress partitioning between different domains, heterogeneous structures can harvest the high strength from the hard domains and the high ductility from the soft domains, thus leading to the high strength–ductility synergy. Since some pioneering works (such as from Lu’s, Zhu’s, and Wu’s groups) reported in Nature and Science, heterogeneous nanostructured materials have been proven to effectively achieve high-performance mechanical properties, e.g., strength–ductility synergy, excellent strain hardening, enhanced resistance of fatigue, creep, and wear, and remarkable mechanical and thermal stabilities. In addition to the unprecedented mechanical properties, the heterogamous nanostructuring strategy is also beneficial for developing various multifunctional materials. The current Special Issue aims to summarize the state of the art of research progress of various high-performance heterogeneous nanostructured metals and alloys, including (i) mechanical properties (e.g., strength, ductility, fatigue, creep, phase transformation, and wear behaviors), (ii) advanced fabrication methods (e.g., severe plastic deformation techniques, laser treatment/additive manufacturing, machining technology, etc.), and (iii) microstructure characterizations responsible for the formation and underlying plastic deformation mechanisms. Research papers related to experiments, computational simulations/high-throughput computing, and theoretical modeling are all welcomed. Dr. Xusheng Yang Prof. Dr. Honghui Wu Prof. Dr. Jiaming Zhu Guest Editors |
» 猜你喜欢
博士自荐
已经有6人回复
博士推荐
已经有4人回复
求环氧树脂研发1名
已经有10人回复
280求调剂
已经有5人回复
什么是人一生最重要的?
已经有10人回复
面上可以超过30页吧?
已经有13人回复
为什么中国大学工科教授们水了那么多所谓的顶会顶刊,但还是做不出宇树机器人?
已经有13人回复
版面费该交吗
已经有17人回复
【博士招生】太原理工大学2026化工博士
已经有8人回复
» 本主题相关商家推荐: (我也要在这里推广)
» 抢金币啦!回帖就可以得到:
长春工业大学课题组招收硕士调剂生(化工、化学、材料、环境、制药、生物等方向)
+1/576
侯旭课题组(化学、化工、环境、能源相关方向)欢迎你的加入
+1/173
求助哪里可以做光催化产氢的放大实验
+1/83
长春工业大学化学工程学院招收26年硕士调剂生
+1/80
山东理工大学材料学院泰山学者青年专家招收2026年调剂硕士研究生
+1/77
吉林师范大学宽禁带半导体材料生长与器件实验室招收2026年入学申请考核制博士生4名
+2/44
西工大控制科学博后招聘
+1/42
澳门理工大学人工智能智慧康养方向26 年9月入学博士招生有奖学金
+1/34
同济大学 环境科学与工程学院 国家级青年人才团队 诚聘脱产博士后
+1/29
26年启明计划
+1/17
【青岛大学】2026年生物与医药申请考核制博士生招生(含少数民族骨干人才)
+1/13
推荐一款可以AI辅助写作的Latex编辑器SmartLatexEditor,超级好用,推荐试试
+1/10
求DNAstar 破解版
+1/10
杨亚研究员课题组(广西大学-纳米能源研究中心)招收2026年物理学专业学术型博士
+1/6
澳科大诚招2026年秋季药物递送/生物材料方向硕士研究生(倒计时最后一周)
+1/5
【全奖博士招生】美国科罗拉多大学科罗拉多斯普林斯分校----固体与结构力学
+1/4
郑州大学材料学院招收博士一名
+1/3
中科院合肥物质研究院招聘水系锌电博士后(长期有效)诚聘海内外优秀博士后
+1/2
青岛科技大学高分子学院--让我们一起做有趣的研究
+1/2
新加坡南洋理工大学- 光电/ 智能传感/ 脑机接口方向 博士后
+1/1
简单回复
tzynew2楼
2021-09-08 09:43
回复
meconnie(金币+1): 谢谢参与
i 发自小木虫Android客户端
bjdxyxy3楼
2021-09-08 09:53
回复
meconnie(金币+1): 谢谢参与
。 发自小木虫Android客户端
wl8023124楼
2021-09-08 10:03
回复
2021-09-08 11:12
回复
2021-09-08 23:24
回复
meconnie(金币+1): 谢谢参与
nono20097楼
2021-09-09 00:18
回复
meconnie(金币+1): 谢谢参与
。 发自小木虫Android客户端
jjijjj8楼
2021-09-09 00:58
回复
meconnie(金币+1): 谢谢参与
顶 发自小木虫IOS客户端













回复此楼
