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个人简介

1979.09-1983.07:哈尔滨工业大学 本科 1983.09-1986.07:哈尔滨工业大学 硕士研究生 1986.10-1990.03:哈尔滨工业大学 博士研究生 1996.09-1997.05:日本东北大学 高级访问学者

研究领域

(1)先进材料和异种材料连接 (2)电子封装微连接技术、材料及可靠性 (3)材料涂层技术 (4)新型钢铁材料熔化焊接物理冶金 (5)材料焊接/连接新技术 (6)材料的粉末冶金制备

(1)先进材料和异种材料连接 (2)电子封装微连接技术、材料及可靠性 (3)材料涂层技术 (4)新型钢铁材料熔化焊接物理冶金 (5)材料焊接/连接新技术 (6)材料的粉末冶金制备

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

(1) Yufeng Zhang,Jihua Huang*, Hai Chi,Nan Cheng, Zhi Cheng, Shuhai Chen." Study on welding–brazing of copper and stainless steel using tungsten/metal gas suspended arc welding", Materials Letters, 2015. 156: 7-9. (2) Wanli Wang, Dongyu Fan, Jihua Huang*, Bing Cui, Shuhai Chen, Xingke Zhao."A new partial transient liquid-phase bonding process with powder-mixture interlayer for bonding Cf/SiC composite and Ti–6Al–4V alloy", Materials Letters, 2015. 143: 237-240. (3) Dongyu Fan, Xiaojun Liu, Jihua Huang*, Ren Fu, Shuhai Chen, Xingke Zhao."An ultra-hard and thick composite coating metallurgically bonded to Ti–6Al–4V", Surface and Coatings Technology, 2015. 278: 157-162. (4) Meng Han, Jihua Huang*, Shuhai Chen," The influence of interface morphology on the stress distribution in double-ceramic-layer thermal barrier coatings", Ceramics International, 2015. 41(3):4312-4325. (5) Meng Han, Jihua Huang*, Shuhai Chen. “Behavior and mechanism of the stress buffer effect of the inside ceramic layer to the top ceramic layer in a double-ceramic-layer thermal barrier coating”,Ceramics International, 2014, 40(2): 2901-2914. (6) Bing Cui, Jihua Huang*, Chuang Cai, Shuhai Chen, Xingke Zhao. “Microstructures and mechanical properties of Cf/SiC composite and TC4 alloy joints brazed with (Ti–Zr–Cu–Ni)+W composite filler materials”, Composites Science and Technology, 2014, 97: 19-26. (7) Meng Han, Guodong Zhou, Jihua Huang*, Shuhai Chen. “Optimization selection of the thermal conductivity of the top ceramic layer in the Double-Ceramic-Layer Thermal Barrier Coatings based on the finite element analysis of thermal insulation”, Surface and Coatings Technology, 2014, 240: 320-326. (8) Shuhai Chen, Jihua Huang*, Ke Ma, Xingke Zhao and Anupam Vivek. “Microstructures and Mechanical Properties of Laser Penetration Welding Joint With/Without Ni-Foil in an Overlap Steel-on-Aluminum Configuration”, Metallurgical and Materials Transactions A, 2014, 45A: 3064-3073. (9) Meng Han, Jihua Huang*, ShuHai Chen. “A parametric study of the Double-Ceramic-Layer Thermal Barrier Coating Part II: Optimization selection of mechanical parameters of the inside ceramic layer based on the effect on the stress distribution”, Surface and Coatings Technology, 2014, 238: 93-117. (10) Meng Han, Guodong Zhou, Jihua Huang*, Shuhai Chen. “Optimization selection of the thermal conductivity of the top ceramic layer in the Double-Ceramic-Layer Thermal Barrier Coatings based on the finite element analysis of thermal insulation”, Surface and Coatings Technology, 2014, 156: 199-207 (11) Bing Cui, Jihua Huang*, Jinhui Xiong, Shuhai Chen, Xingke Zhao, “Reaction- composite brazing of carbon fiber reinforced SiC composite and TC4 alloy using Ag–Cu–Ti–(Ti+C) mixed powder”, Materials Science and Engineering: A 2013,562:203-210. (12) Meng Han, Guodong Zhou, Jihua Huang*, ShuHai Chen. “A parametric study of the double-ceramic-layer thermal barrier coatings part I: Optimization design of the ceramic layer thickness ratio based on the finite element analysis of thermal insulation (take LZ7C3/8YSZ/NiCoAlY DCL-TBC for an example)”, Surface and Coatings Technology, 2013, 236: 500-509. (13) Chen Shuhai, Huang Jihua*, Xia Jun, Zhang Hua, Zhao Xingke, “Microstructural characteristics of a stainless steel/copper dissimilar joint made by laser welding”, Metallurgical and Materials Transactions A, 2013, 44(8): 3690-3696 (14) Jianying Xiang, Shuhai Chen, Jihua Huang*, Hua Zhang, Xingke Zhao. “Phase structure and thermophysical properties of co-doped La2Zr2O7 ceramics for thermal barrier coatings”, Ceramics International, 2012, 38(5): 3607-3612. (15) Shuhai Chen, Jihua Huang*, Donghai Cheng, Hua Zhang, Xingke Zhao. “Superplastic deformation mechanism and mechanical behavior of a laser-welded Ti–6Al–4V alloy joint”, Materials Science and Engineering: A, 2012,541: 110-119.13.

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