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周幗彥
E-mail: zhougy@ecust.edu.cn 職位: 職稱: 教授
個(gè)人簡(jiǎn)介: 1977年11月生于山西,2000年6月南京化工大學(xué)過(guò)程裝備與控制工程專業(yè)獲工學(xué)學(xué)士學(xué)位,2003年6月于南京工業(yè)大學(xué)化工過(guò)程機(jī)械專業(yè)獲工學(xué)碩士學(xué)位,2007年6月于華東理工大學(xué)化工過(guò)程機(jī)械專業(yè)獲工學(xué)博士學(xué)位,2007年7月迄今任教于華東理工大學(xué)77779193永利官網(wǎng)。2009年8月-9月在韓國(guó)中央大學(xué)(Chun-Ang University)進(jìn)行合作研究,2012年10月-2013年10月在美國(guó)西北大學(xué)(Northwestern University)進(jìn)行訪學(xué)研究。 聯(lián)系方法: 上海市梅隴路130號(hào)華東理工大學(xué)402信箱,郵編:200237,電話:021-64253513 研究方向 面向核電、空天、艦船、燃料電池等領(lǐng)域,致力于高端熱力裝備先進(jìn)結(jié)構(gòu)設(shè)計(jì)與制造技術(shù)前沿研究,以高效設(shè)計(jì)、可靠制造、安全運(yùn)維為目標(biāo),重點(diǎn)解決多場(chǎng)耦合作用下機(jī)械結(jié)構(gòu)的高效能、長(zhǎng)壽命精確設(shè)計(jì)問(wèn)題,先進(jìn)能源系統(tǒng)的微連接和特種制造問(wèn)題,在役熱力裝置能效評(píng)價(jià)及故障診斷問(wèn)題。主要研究方向包括: (1)新型能源設(shè)備設(shè)計(jì) (2)熱學(xué)-力學(xué)耦合設(shè)計(jì) (3)先進(jìn)連接/表面技術(shù) (4)性能衰減預(yù)警及故障診斷技術(shù) 承擔(dān)科研項(xiàng)目 作為項(xiàng)目負(fù)責(zé)人主持或完成包括國(guó)家自然科學(xué)基金、軍科委項(xiàng)目、科技部項(xiàng)目、教育部項(xiàng)目、上海市及企業(yè)合作項(xiàng)目數(shù)十項(xiàng)。近年主要項(xiàng)目包括: 1. 國(guó)家重點(diǎn)研發(fā)計(jì)劃項(xiàng)目,小微樣品尺寸效應(yīng)及其評(píng)價(jià)材料標(biāo)準(zhǔn)力學(xué)性能方法,2022-2027; 2. 國(guó)家重點(diǎn)研究計(jì)劃項(xiàng)目,摻氫天然氣燃料重整與SOFC熱電聯(lián)供系統(tǒng)的能流匹配與管控,2022-2025; 3. 基礎(chǔ)加強(qiáng)項(xiàng)目,XXX基礎(chǔ)研究,2019-2023; 4. 國(guó)家自然科學(xué)基金,熱振蕩誘發(fā)的核承壓設(shè)備疲勞損傷機(jī)理及壽命預(yù)測(cè)方法,2021-2024; 5. 國(guó)家自然科學(xué)基金,釬焊接頭微區(qū)蠕變行為及壽命預(yù)測(cè)研究,2017-2020; 6. 中廣核工程設(shè)計(jì)有限公司,核電廠換熱器熱工水力計(jì)算算法和軟件開(kāi)發(fā),2022-2024; 7. 中國(guó)石油化工股份有限公司,加氫裝置高壓換熱系統(tǒng)風(fēng)險(xiǎn)控制技術(shù)研究,2019-2021; 8. 江蘇省特種設(shè)備安全監(jiān)督檢查研究院,智能換熱器的設(shè)計(jì)、制造及安全檢驗(yàn)與監(jiān)管技術(shù)研究,2020-2022。 獲獎(jiǎng)成果獲國(guó)家科技進(jìn)步二等獎(jiǎng)(2013,排名第10)、中國(guó)石油和化學(xué)工業(yè)聯(lián)合會(huì)科技發(fā)明一等獎(jiǎng)(2013,排名第3)、上海市自然科學(xué)二等獎(jiǎng)(2020,排名第2)、上海市技術(shù)發(fā)明二等獎(jiǎng)(2012,排名第6)、教育部高等學(xué)??茖W(xué)研究?jī)?yōu)秀成果獎(jiǎng)科技進(jìn)步二等獎(jiǎng)(2011,排名第8)等獎(jiǎng)勵(lì)。 代表性著作近五年發(fā)表論文節(jié)選: Xu S, Yan Z, Jang K-I, Huang W, Fu HR, Kim JH, Wei ZJ, Flavin M, McCracken J, Wang RH, Badea A, Liu YH, Xiao DQ, Zhou GY, Lee JW, Chung HU, Cheng HY, Ren W, Banks A, Li XL, Paik U, Nuzzo RG, Huang YG, Zhang YH and Rogers JA. Assembly of micro/nanomaterials into complex, three-dimensional architectures by compressive buckling. Science, 2015, 347(6218): 154-159 Gao L, Zhang Y, Malyarchuk V, Jia L, Jang KI, Webb RC, Fu H, Shi Y, Zhou GY, Shi L, Shah D, Huang X, Xu B, Yu C, Huang Y, Rogers JA. Epidermal photonic devices for quantitative imaging of temperature and thermal transport characteristics of the skin. Nature Communications, 2014, 5, 4938 Zhou Guo-yan*, Wu Mengdan, Zhang Ning, Tu Shan-tung. Structural optimization of gas-solid separator used in TMSR-SF based on computational fluid dynamics. Nuclear Engineering and Design, 2023, 421: 113097 Duan Peng-Yang, Zhou Guo-Yan*, Tu Shan-Tung. Study on peeling performance of T-type brazing joints based on energy method. Metals, 2024, 14(1): 115 Sun Wei, Li Ming*, Wen Zhi-Xun*, Zhou Guo-Yan *, Yue Zhu-Feng, Tu Shan-Tung. Uncertainties in and recommendations to small punch tensile and creep tests for ductile materials. Engineering Fracture Mechanics, 2023, 289: 109443 Ma HY, Duan PY, Zhou GY*, Tu ST. Fracture mechanism of 316?L/BNi-2 brazed joints using experiment and microstructure-based model. Journal of Manufacturing Processes, 2023, 101: 1167-1175 Zhou WT, Zhou GY*, Xiong XY, Xuan FZ, Tu ST. Uniaxial ratcheting behavior and microstructure evolution of 316H stainless steel under the random cyclic loads. Materials Characterization, 2023, 203: 113165 Sun Wei, Li Suo, Zhou Guo-Yan*, Li Ming*, Wen Zhi-Xun*, Yue Zhu-Feng, Tu Shan-Tung. Interpretation of non-conventional miniaturized creep test: derivation of equivalent gauge length. Journal of materials Research and Technology, 2023, 24: 4390-4404 Liao Pengpeng, Zhou Guo-Yan *, Zhang Kun, Ma Hanyang, Duan Pengyang, Zhang Xiancheng, Tu Shan-Tung. Phase diagram-guided composition design and property investigation of Ni-based filler metals. Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing, 2024, 891: 145946 Liu ZQ, Xiong XY, Zhou GY*, Pan YP, Zhou WT, Xuan FZ. Numerical Study on thermal stress fluctuation caused by coaxial-jet flow for the lower head of central measurement column. International Journal of Pressure Vessels and Piping, 2022, 199: 104757 Sun K, Zhou GY*, Luo X, Tu ST, Huang YY. Study on enhanced heat transfer performance of open-cell metal foams based on a hexahedron model. Numerical Heat Transfer-Part A: Applications, 2022, 82(7): 335-355 Liao PP, Zhang YC, Zhou GY*, Zhang XC, Jiang WC, Tu ST*. Creep life assessment of aero-engine recuperator based on the continuum damage mechanics. Frontiers of Mechanical Engineering, 2022, 17(4): 46 Zhu HS, Zhai JG, Zhou GY. The unified theory of tubesheet design-Part III: Comparision with ASME method and case. Journal of Pressure Vessel Technology, 2022, 144: 021305 Ma HY, Liu ZP, Zhou GY*, Tu ST. Study on element diffusion behaviour of vacuum-furnace brazing 316L/BNi-2 joints based on Boltzmann-Matano model. Welding in the World, 2021, 65(11): 2239-2246 Ma H Y, Zhou GY*, Duan P, Liao P, Tu ST. Effect of temperature on metallurgical reactions and microstructure evolution of 316L/BNi-2 brazed joints. Journal of Materials Engineering and Performance, 2021: 1-11 Han X, Yu HY, Zhou GY*, Zhuang FK, Tu ST*. Research on creep behavior of three-point bending specimen with fixed constraints at the large deformation stage. ASME Journal of Pressure Vessel Technology, 2022, 144: 041502 Yu HY, Zhou GY*, Tu ST*, Zhuang FK. A new approach to evaluate material creep properties by C-shape ring specimen with fixed constraints. International Journal of Pressure Vessel and Piping, 2021, 191: 104357 Wang HX, Zhou GY*, Luo X, Kabelac S, Tu ST. The single-blow transient test technique using pulse change inlet condition with optimized pulse width and matching time. Heat and Mass Transfer, 2020, 56: 963–972 Yu H, Zhou GY*. A new method to determine the beam bending creep critical displacement of three-point bending specimen with fixed constraints. International Journal of Mechanical Sciences, 2019, 161-162, 105045 Yu H, Zhou GY*, Zhuang FK. Research on the conversion relationships for three-point bending specimen with fixed constraints in the large deformation stage. ASME Journal of Pressure Vessel Technology, 2019, 141(6): 064503
著作:
Sun W, Yue ZF, Zhou GY, Wen ZX, Li M. High Temperature Miniature Specimen Test Methods. Elsevier, 2023 蔣文春, 周幗彥, 鞏建鳴. 板翅結(jié)構(gòu)換熱裝置設(shè)計(jì)制造技術(shù). 北京: 科學(xué)出版社, 2020.12
專利:
周幗彥, 馬寒陽(yáng), 段鵬洋, 王濤, 賈云飛, 涂善東, 談建平. 一種釬焊接頭斷裂韌性試樣制備和計(jì)算方法. 申請(qǐng)?zhí)枺?02110986664.X,2021.08.26,授權(quán)公告日: 2022.08.26(發(fā)明) 周幗彥,余海洋,涂善東,談建平,韓笑. 采用固支C型環(huán)小試樣測(cè)量材料蠕變力學(xué)性能的方法. 申請(qǐng)?zhí)枺?01910373066.8,2018.06.14,授權(quán)公告日: 2021.10.22(發(fā)明) 周幗彥,秦宏宇,王俊崎,涂善東,余海洋. 運(yùn)用固支直桿小試樣蠕變?cè)囼?yàn)確定材料蠕變參數(shù)的方法. 申請(qǐng)?zhí)枺?01810252775.6,2018.03.26,授權(quán)公告日: 2021.03.23(發(fā)明) 周幗彥,王俊崎,余海洋,涂善東,談建平,王瓊琦. 確定固支直桿小試樣彎曲蠕變小變形臨界位移的方法. 申請(qǐng)?zhí)枺?01811171006.X,2018.10.09,授權(quán)公告日: 2020.10.27(發(fā)明) 周幗彥,武夢(mèng)丹,涂善東,熊雪瑤. 一種用于釷基熔鹽堆的氣固分離裝置. 發(fā)明專利,申請(qǐng)?zhí)枺?01811584594.X,2018.12.24,授權(quán)公告日: 2021.09.28(發(fā)明)
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網(wǎng)頁(yè)發(fā)布時(shí)間: 2019-05-16
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