代表性著作
[1] Chao Liu, Hairui Wu, Anrui He*, et al, Effect of uneven distribution of material property on buckling behavior of strip during hot finishing rolling, ISIJ International, 2023, 63(1).
[2] Chao Liu, Hairui Wu, Anrui He*, et al. Formation mechanism and control strategy of M-shaped and W-shaped profile defects in hot rolling of aluminum plate. Metallurgical Research & Technology. 2023, 120(1).
[3] Chao Liu, Anrui He*, Zhenli Mi, et al, Online roll force model for non-oriented electrical steel considering temperature-transformation-roll force coupling effect, Materials Transactions, 2020, 61(4): 641-646.
[4] Chao Liu, Anrui He*, Zhenli Mi, et al, Effects of temperature and phase transformation on post-buckling behavior of non-oriented electric steel during hot finishing rolling, ISIJ International, 2020, 60(2): 318-323.
[5] Chao Liu, Anrui He*, Yi Qiang, et al, Constitutive model and micro hardening and softening mechanism for non-oriented electrical steel, Physics of Metals and Metallography, 2019, 120(1): 69-77.
[6] Chao Liu, Anrui He*, Yi Qiang, et al, Effect of internal stress of incoming strip on hot rolling deformation based on finite element and infinite element coupling method, Metals, 2018, 8(2): 80-92.
[7] Chao Liu, Anrui He*, Yi Qiang, et al, High-temperature united constitutive model of non-oriented electrical steel based on transformation kinetics equation and dislocation density theory, Steel Research International, 2017, 88(11): e201700097.
[8] Chao Liu, Anrui He*, Yi Qiang, et al, Effect of volume changes on hot rolling deformation behavior of non-oriented electrical steel, ISIJ International, 2017, 57(9): 1595-1602.
[9] Chao Liu, Anrui He*, Yi Qiang, et al, Effect of phase transformation and latent heat on hot rolling deformation behavior of non-oriented electrical steel, ISIJ International, 2017, 57(5): 857-865.
[10] 金属带材中残余应力分析与控制,编委,2022,ISBN号:978-7-5024-9093-5.
获奖
[1] 6N超高纯铝制备工艺与装备及产业化应用, 中国有色金属工业科学技术奖, 省部级一等奖, 2023年
[2] 高精度冷连轧数字孪生与信息物理系统(CPS)关键技术研发及应用, 冶金科学技术奖, 省部级一等奖, 2023年
[3] 面向高品质薄规格轧制的薄板坯连铸连轧过程控制关键技术及应用, 安徽省科学技术奖, 省部级二等奖, 2022年
[4] 宽带钢热连轧智能化过程控制关键技术及应用, 高等学校科学研究优秀成果奖, 省部级二等奖, 2022年
专利
[1] 刘超, 吴冠南, 何安瑞. 一种变接触工作辊及其辊形设计方法. ZL202110663316.9
[2] 刘超, 吴冠南, 何安瑞. 一种高强度板带断面轮廓和高次浪形协同控制的方法. ZL202210434505.3
[3] 刘超, 林佳巍, 何安瑞. 一种兼顾多种宽度板带轧制的变接触支持辊辊形设计方法. 专ZL202110808491.2
[4] 刘超, 吴冠南, 何安瑞. 一种宽幅铝板带热轧W型断面的控制方法. ZL202111372020.8
[5] 刘超, 吴冠南, 何安瑞. 一种热连轧冲击速降补偿系数计算方法及补偿方法. ZL202210324217.2
[6] 刘超, 吴冠南, 何安瑞. 一种线性降低板带边降的工作辊以及辊形设计方法. ZL202210441373.7
[7] 刘超, 吴海瑞, 何安瑞. 一种消除板带局部高点的多机架工作辊窜辊方法. ZL202210385450.1
[8] 刘超, 吴冠南, 何安瑞. 一种消除板带局部高点的工作辊辊形及设计方法. ZL202210239086.8