2690
当前位置: 首页   >  成果及论文
成果及论文

[1] Peirong R, Weiqing H*, Zhengxing Z, Dongwei L, Chengzhang Z, Kangjie Y. "High Cycle Fatigue Analysis and Modelling of Cast Al-Si Alloys Extracted from 

Cylinder Heads Considering Microstructure Characteristics." Journal of Materials Research and Technology, 2022, 19: 3004-3017.

[2] Ren PR, Zuo ZX, Huang WQ*, et al. "Effects of axial profile on the main bearing performance of internal combustion engine and its optimization using multi-objective optimization algorithms." Journal of Mechanical Science and Technology, 2022, 35:3519-3531.

[3] Kang-jie YanWei-qing Huang*Zheng-xing ZuoPei-rong RenDong-wei LiCheng-zhang Zhao, Jia-nan SongXiao-bo Zhang. "Microstructure based analysis and predictive modeling of cast Al7Si1.5Cu0.4Mg alloy mechanical properties." Materials Today Communications, 2022, 30: 103102.

[4] Li Y, Liu JX, Huang WQ*, Wu YH. "Failure Analysis of a Diesel Engine Exhaust Manifold." International Journal of Metalcasting, 2022.

[5] Dong-wei LiWei-qing Huang*Jin-xiang LiuPei-rong RenZheng-xing ZuoLing-jun Zhang. "Study on scatter in mechanical properties of cylinder head with complex structure characters." Engineering Failure Analysis, 2022, 135: 106114.

[6] Li Y, Liu JX, Huang WQ*, Zhang S. "Microstructure related analysis of tensile and fatigue properties for sand casting aluminum alloy cylinder head." Engineering Failure Analysis2022, 136: 106210.

[7] Zhao CZ, Huang WQ*, Liu JX. "An investigation on tensile and fatigue properties of cast Al-7Si-1.5Cu alloy applied in cylinder head considering size effect phenomenon." Materials Today Communications2022, 31: 103271.

[8] Li DW, Huang WQ*, Liu JX. "Prediction of mechanical properties of ZL702A based on neural network and regression analysis." Materials Today Communications2022, 32: 103679.

[9] Dong-wei LiJin-xiang Liu, Wei-qing Huang*Zheng-xing ZuoYi Shi, Wen-jun Bai. "Machine learning-based prediction for time series damage evolution of Ni-based superalloy microstructures." MaterialToday Communications, 2022, 33104533.

[10] Qinzheng YangXiaoguang YangWeiqing HuangYi ShiDuoqi Shi"Small fatigue crack propagation rate and behaviours in a powder metallurgy superalloy: Role of stress ratio and local microstructure." International Journal of Fatigue, 2022, 160: 106861.

[11] Yang QZ, Yang XG, Huang WQ. "Propagation Behaviors of Small Cracks in Powder Metallurgy Nickel-Based Superalloy FGH4096."Acta Metallurgica Sinica

2022, 58, 683-694.

[12] Pei-rong, Ren, Wei, Song, Gu, Zhong, Wei-qing, Huang*, Zheng-xing, Zuo, Cheng-zhang, Zhao, and Kang-jie, Yan. "High-cycle fatigue failure analysis of cast Al-Si alloy engine cylinder head." Engineering Failure Analysis 105546, no. N(2021).

[13] Peirong, Ren, Weiqing, Huang*, Xiaoguang, Yang, Jia, Huang, Yi, Shi, and Yongsheng, Fan. "A modified constitutive model considering microstructure degradation of Ni-based superalloys and its application to microstructural damage calculation." Journal of Alloys and Compounds 882, no. 160605(2021).

[14] Li, Yuan, Liu, Jinxiang, Zhong, Gu, Huang, Weiqing*, and Zou, Run. "Analysis of a diesel engine cylinder head failure caused by casting porosity defects." Engineering Failure Analysis 127, (2021).

[15] Li, Yuan, Liu, Jinxiang, Zhang, Qiang, and Huang, Weiqing*. "Casting defects and microstructure distribution characteristics of aluminum alloy cylinder head with complex structure." Materials Today Communications 27, (2021).

[16Weiqing, Huang, Shaolin, Li, Xiaoguang, Yang, Duoqi, Shi, and Hongyu, Qi. "Experimental investigation and modelling of microstructure degradation in a DS Ni-based superalloy using a quantitative cross-correlation analysis method." Journal of Alloys and Compounds 762, (2018): 488-499.

[17] Huang, Wei-Qing; Yang, Xiao-Guang; Li, Shao-Lin, Evaluation of service-induced microstructural damage for directionally solidified turbine blade of aircraft engine, Rare Metals, 2019, 38(2): 157-164.