
职务:工程力学系主任
出生年月:1980.01
职称:副教授/博士生导师
学历:博士研究生
办公室:工科D725
E -mail:huangxg@upc.edu.cn
电话:18765926339
研究领域
石油装备/结构完整性评价及数值仿真
疲劳断裂与损伤理论
微电子芯片热疲劳
教育经历
2008/09–2013/05,上海交通大学,固体力学,博士
2002/09–2005/07,bevictor1946韦德官网,工程力学,硕士
1998/09–2002/07,石油大学(华东),机械制造及自动化专业,学士
工作经历
2018/09–2019/08,澳大利亚皇家墨尔本理工大学,工程公司,访问学者
2015/12–至今,bevictor1946韦德官网,工程力学系,副教授
2008/01–2015/12,bevictor1946韦德官网,工程力学系,讲师
2005/07–2007/12,bevictor1946韦德官网,工程力学系,助教
主讲课程
本科:理论力学、材料力学、弹性力学、断裂力学
研究生:高等固体力学
学术兼职
应用力学学报青年编委
代表性论文
1.Zhou LC, Song WJ, Liu HH, Huang XG*. Fluid-structure coupling effect on the setting process of expansive downhole emergency packer. Journal of Mechanical Engineering and Sciences, 2025, 19(2):10631-10641
2.Huang XG*, Liu HH, Huang C, Cui JR, Xiao ZX, Zhu XX. Creep relaxation to relieve residual stress in girth-butt welded X80 pipelines: Simulation and experiment. Thin–Walled Structures, 2024, 205: 112597.
3.Zhou LC, Huang XG*, Song WJ, Huang C, Liu HH, Wang HX. Multi-factor corrosion model of TP110TS steel in H2S/CO2 coexistence and life prediction of petroleum casings. International Journal of Pressure Vessels and Piping, 2024, 209: 105204.
4.Huang XG, Zhou LC, Li YK, Du ZZ, Zhu QH, Han ZY. The synergistic effect of temperature, H2S/CO2 partial pressure and stress toward corrosion of X80 pipeline steel. Engineering Failure Analysis, 2023, 146: 107079.
5.Yin ZM, Li Z, Huang XG*. Scheme optimization of deepwater dual gradient drilling based on the fuzzy comprehensive evaluation method. Ocean Engineering, 2023, 281:114978.
6.Yin ZM, Li Z, Zhou LC, Wang YC, Huang XG*. A frequency-dependent high-cycle fatigue damage model and its application in crack nucleation of marine riser from corrosion pits. Fatigue & Fracture of Engineering Materials and Structures, 2023, 46: 1488-1499.
7.黄小光, 王志强, 张典豪, 程斌亮, 叶贵根. 一种低周疲劳损伤演化模型及裂纹成核缺口敏感性分析. 船舶力学, 2022, 26(3): 391-399.
8.Yu YQ, Huang XG*, Wang YC, Yang ZC*. Experiment and simulation of high-cycle corrosion fatigue damage evolution and corrosion pit tolerance analysis of
crack nucleation. Fatigue & Fracture of Engineering Materials and Structures, 2022; 45: 1435-1447.
9.Yu YQ, Yin ZM, Huang XG*. Experimental study of corrosion behavior between
the material-type and process-type super-high sucker rod steels in a near neutral high sulfide environment. Journal of Materials Research and Technology, 2022, 17: 2593-2600.
10.Huang XG, Yang J, Yang ZC. Thermo-elastic analysis of functionally graded graphene nanoplatelets (GPLs) reinforced closed cylindrical shells. Applied Mathematical Modelling, 2021, 97: 754-770.
11.Huang XG, Cheng BL, Zhang DH, Yu YQ. A unified theoretical solution of plastic limit load for the thin-walled pipeline with an incomplete welding defect. International Journal of Pressure Vessels and Piping, 2021, 191: 104358.
12.Huang XG, Gao K, Yang J. Fracture analysis of functionally graded multilayer grapheme nanoplatelets-reinforced composite strips. European Journal of Mechanics-A/Solids, 2020, 83: 104038.
13.Wang ZQ, Huang XG*, Zhang DH. Low cycle fatigue damage model and sensitivity analysis of fatigue crack initiation by finite element approach. Frattura ed Integrità Strutturale, 2020, 53: 81-91.
14.Han ZY, Huang XG*, Yang ZC. Effect of Al–Zn alloy coating on corrosion fatigue behavior of X80 riser steel. Materials, 2019, 12:1520.
15.Han ZY, Huang XG*. Investigations on corrosion behaviors of super-strength steel in high SO42- environment. Journal of Materials Research and Technology, 2019, 8(1): 788-794.
16.Han ZY, Huang XG*. Stress corrosion behavior of X80 pipeline steel in the natural seawater with different dissolved oxygen contents. Frattura ed Integrità Strutturale, 2019, 50: 21-28.
17.Huang XG, Wang ZQ. Durability method on corrosion fatigue performance of AH 32 steel. Frattura ed Integrità Strutturale, 2019, 48: 481-490.
18.Huang XG, Wang YC, Zhu QH, Du ZZ, Zhou LC, Liu HH. Thermal creep and fatigue failure of the sintered silver solder in a SiC-IGBT module under power cycling, Engineering Failure Analysis, 2023, 154: 107625.
19.Zhang DH, Huang XG*, Cheng BL, Zhang N. Numerical analysis and thermal fatigue life prediction of solder layer in a SiC-IGBT power module. Frattura ed Integrità Strutturale, 2021, 55: 278-288.
20.Huang XG, Wang ZQ, Yu YQ. Thermomechanical properties and fatigue life evaluation of SnAgCu solder for microelectronic power module application. Journal of Materials Research and Technology, 2020, 9(3): 5533-5541.
21.Huang XG, Wang ZQ. Thermal fatigue evaluation model of a microelectronic chip in terms of interfacial singularity. Journal of Electronic Packaging, 2020, 142(011013): 1-9.
22.Huang XG, Zhang DH, Wang ZQ. BP neural network in predicting thermal fatigue life of microelectronic chip. Journal of Microelectronics, Electronic Components and Materials, 2020, 50(1): 15-24.
23.Han ZY, Huang XG*. GA-BP in thermal fatigue failure prediction of microelectronic chips. Electronics, 2019, 8(542): 1-14.
24.Huang XG. Simulation on the interfacial singular stress-strain induced cracking of microelectronic chip under power on-off cycles. Journal of Microelectronics, Electronic Components and Materials, 2019, 49: 69-77.
专利与软件著作权
1.黄小光,周龙池,余焱群,等. 一种球阀式井下随钻封堵装置及使用方法(发明),中国,ZL202311236277.X,2026.06
2.黄小光,张典豪,李新建,等. 一种基于温度循环的湿热循环试验装置即方法(发明),中国,ZL202110144023.X,2023.01
3.黄小光,徐国强,王皓,等. 一种基于应变检测的管道安全评价装置与发法(发明),中国,ZL201711067679.6,2019.12
主要研究项目
1.国家重点研发项目子课题,深海钻井井控随钻环空封堵技术及装置研制
2.国家重点研发项目“极地重大技术装备产业化工程”课题,极地低碳零排放钻井方案及工艺技术研究
3.中海石油(中国)有限公司上海分公司,井筒及环空快速封堵装置加工与测试合同
4.中海石油(中国)有限公司北京研究中心,海上浅层井喷事故灾后井口装置安全风险及地层稳定性评价
5.bevictor1946韦德官网强基专项,油气管道应力腐蚀开裂损伤演化与完整性评价
6.山东省自然科学基金面上项目,油气管道低 pH 值应力腐蚀开裂机理及损伤演化理论模型
主要成果及获奖情况
1.金属材料腐蚀疲劳损伤机理及演化规律研究,青岛西海岸新区自然科学 奖二等奖
2.管柱/管道结构安全监测与防护关键技术及应用,中国发明协会发明创业奖成果奖一等奖
3.复杂工况下管柱/管道安全监测与智能防护关键技术,青岛市科学技术进步奖二等奖
联系地址
青岛开发区长江西路66号bevictor1946韦德官网储建公司工程力学系
备注
欢迎力学、机械等专业本科生报考研究生
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