
[LABEL]
姓名:侯龙
职称: 副研究员
联系方式:houlongg@163.com
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标题:个人简介
长期致力于磁场下材料制备与性能调控研究,核心方向涵盖高熵合金、高温合金、特殊钢及镍钛基智能合金等先进金属材料。研究手段结合了前沿的机器学习与材料信息学方法,旨在探索多物理场耦合下材料的微观演化规律,实现高性能材料的精准设计与高效制备。相关研究结果已发表论文60余篇,SCI检索60篇,被SCI他引1200余次,H-index为20,3篇入选ESI(Highly Cited Papers)数据库。以第一/通讯作者分别于国际材料和物理领域期刊 Acta Materialia、Scripta Materialia、Applied Physics Letters、Journal of Materials Science & Technology、IUCrJ发表相关工作结果。主持国家自然科学基金面上项目、青年基金、中国博士后基金特别资助以及中国博士后基金面上基金一等,参与包括国家自然科学基金重大项目等国家级项目8项。参加国内外学术会议10余次,邀请报告4次。与领域内宝武钢铁集团、永钢集团、东方汽轮机集团等企业开展产学研合作,从事新型超高速激光熔覆冶金复合管、低温轧制无缝钢管、高温合金涡轮叶片等项目的研发。
研究方向:
材料基因组学与人工智能驱动的先进金属材料精准设计
高性能高温合金的损伤演化机制、服役寿命评价与再生修复
多物理场耦合下智能金属材料的组织精准控制与多功能化研究
先进金属材料(特殊钢/高熵合金)的受控制备与强韧化机理
数字化驱动的材料成型加工、表面改性与全寿命周期质量监控
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标题:代表论文
[1].Wang HL, Li ZB*, Hou L*, Li X*, Yan HL, Yang B, Zuo L. Large elastocaloric effect covering a broad temperature window in a composition-graded Ni50Mn31.5Ti18.5 alloy prepared by magnetic field-assisted directional solidification, Acta Materialia 2024, 274: 120020.
[2].Hou L, Dai YC, Fautrelle Y, Li ZB, Ren ZM, Li X. Control of microstructure using magnetic field and study on mechanical behavior in Ni-rich Ni-Mn-Ga alloy. Acta Materialia. 2020, 199: 383-396.
[3].Wang Y, Yang S, Zhou T, Hou L*, Ba L, Fautrelle Y, Ren ZM, Zhu YY, Li ZB, Li X*. Microstructure evolution and mechanical behavior of Ni-rich Ni-Mn-Ga alloys under compressive and tensile stresses. Journal of Materials Science & Technology 2022; 97:113-22.
[4].Niu Y, Wang Y, Hou L*, Ba LS, Dai YC, Fautrelle Y, Li ZB, Ren ZM, Li X*. The effect of γ phase on the mechanical behavior and detwinning evolution of directionally solidified Ni-Mn-Ga alloys under uniaxial compression. Journal of Materials Science & Technology 2021, 66: 91-96.
[5].Hou L, Niu Y, Dai YC, Ba LS, Fautrelle Y, Li ZB, Yang B, Esling C, Li X. Stress-induced detwinning and martensite transformation in an austenite Ni-Mn-Ga alloy with martensite cluster under uniaxial loading. IUCrJ. 2019, 6: 366-72.
[6].Hou L, Dai YC, Fautrelle Y, Li ZB, Ren ZM, Esling C, Li X. Correlation of microsegregation and variant distribution in directionally solidified Ni-Mn-Ga alloys. Scripta Materialia. 2018, 156: 95-100.
[7].Hou L, Dai YC, Fautrelle Y, Li ZB, Ren ZM, Esling C, Li X. Evolution of microstructure and microsegregation in Ni-Mn-Ga alloys directionally solidified under axial magnetic field. Journal of alloys and compounds. 2018, 758: 54-61.
[8].Hou L, Tong H, Dai Y, Fautrelle Y, Moreau R, Ren Z, et al. Correlation between microstructures and mechanical properties in Ni-rich Ni–Mn–Ga high-temperature shape-memory alloys. Materials Science and Technology. 2018, 34(6): 712-717.
[9].Hou L, Dai YC, Fautrelle Y, Li ZB, Ren ZM, Esling C, Li X. Detwinning of hierarchically structured martensitic variants in a directionally solidified non-modulated Ni-Mn-Ga alloy under uniaxial loading. Scripta Materialia. 2017, 134: 85-90.
[10].Hou L, Lu ZY, Dai YC, Zuo KH, Xia YF, Ren ZM, Wu J, Lu XG, Zeng YP, Li X. Self-assembled growth of BiFeO3 meso-octahedral particles synthesized by a facile surfactant-free hydrothermal method. Journal of Crystal Growth. 2016, 434: 42-46.
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