代表性著作
[1] 王曉晨, 楊荃. UCM軋機非對稱板形調(diào)控特性與廣義整體板形控制策略研究. 機械工程學報, 2012, 48(4): 58~65 (EI: 20121114853189)
[2] 王曉晨, 楊荃, 劉瑞軍,孟潔,郭德福,孫友昭. 基于ANSYS有限元法的熱卷箱內(nèi)中間坯溫度場分析. 北京科技大學學報, 2013, 35(4): 454~458 (EI:20132516433170)
[3] 王曉晨, 何峰, 楊荃, 王海玉, 王曉東, 李華, 董立杰. 熱軋定寬壓力機板坯側(cè)彎形成規(guī)律有限元仿真. 北京科技大學學報, 2013, 35(11):1521~1526 (EI: 20135217144212)
[4] 王曉晨, 楊荃, 孫友昭. 冷連軋設(shè)定控制系統(tǒng)綜合優(yōu)化研究. 機械工程學報, 2014, 50 (6): 39~47 (EI: 20142217763710)
[5] 王曉晨, 楊荃, 孫友昭. 六輥冷軋機的彎輥力組合板形控制. 北京科技大學學報, 2014, 36(6): 825~830 (EI: 20142817935762)
[6] 李成偉, 王曉晨, 楊荃, 王連生. 熱軋帶鋼金屬橫向流動及影響因素研究. 北京科技大學學報, 2013, 35(2): 222~227 (EI: 20131116114383)
[7] Wang Xiaochen, Mao Zewei, Yang Quan. Research on High Pressure Abrasive Water Jet for Cold Rolling Descaling. Advanced Materials Research, 2012, 572: 31~36 (EI: 20124715701694)
[8] Xiao-chen Wang, Zhi-guo Liang, Quan Yang, Xiao-zhong Du, Hua-qiang Liu, Yun Zhang. Asymmetric shape control theory and practice in cold strip mills. Advanced Materials Research, 145: 204~209 (EI: 20110113553979)
[9] Xiao-chen Wang, Quan Yang, Yun-tao Zhao. Research on Hybrid PSODE with Three Populations Based on Multiple Differential Evolutionary Models. ICECE2010, 1692~1696 (EI: 20111013722125)
[10] Xiao-chen Wang, Quan Yang, Zhiguo Liang, Fei He. Research on Generalized Overall Shape Setting Control Models with Asymmetric Shape Control Function for UCM Mill. Advanced Materials Research. 478, 415~417 (EI: 20115214644604)
[11] Liu, Shuang, Wang, Xiaochen;Yang, Quan;Sun, Youzhao. Design and applications on automatic gauge control and automatic tension control for continuous tandem cold mill. Advanced Materials Research, 572, 143-147 (EI: 20124715701713)
[12] 王曉晨, 楊荃, 彭鵬, 孫文權(quán), 劉天武. 基于屈曲失穩(wěn)判據(jù)的冷連軋斷面形狀可變域求解. 北京科技大學學報, 2009, 31(11): 1447~1451
[13] 王曉晨, 楊荃, 彭鵬, 劉天武, 孫文權(quán). 八輥五機架冷連軋機液壓壓下控制系統(tǒng)控制效能的提高. 冶金自動化, 2009, 33(5): 22~28
[14] 劉洋, 王曉晨, 楊荃, 周春. 基于預測函數(shù)算法的冷連軋邊降滯后控制研究. 機械工程學報, 2015, 51(18): 64~70
[15] 劉洋, 王曉晨, 楊荃, 彭勁松. 萬能凸度軋機中間輥偏移板形調(diào)控能力分析. 機械工程學報. 2016, 52(4): 82-89
[16] Wang X*, Yang Q, He H, et al. Effect of work roll shifting control on edge drop for 6-hi tandem cold mills based on finite element method model[J]. The International Journal of Advanced Manufacturing Technology, 2020: 1-15.
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[18] Feng X, Wang X, Sun J, et al.Analysis of tapered work roll shifting technique in 5-stand UCMW tandem cold rolling process [J].Australian Journal of Mechanical Engineering, 2019: 1-9.EI檢索.Access number:20191806845359.
[19] 馮夏維,王曉晨,楊荃,等.六輥軋機工作輥輥形邊降調(diào)控能力分析[J].機械工程學報, 2019, 55(12).EI檢索.
[20] 王曉晨*, 馮夏維, 徐冬,等. 薄帶冷連軋工作輥竄輥邊降調(diào)控功效[J]. 工程科學學報, 2020, v.42;No.310(02):110-116.
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[23] Shang W, Xiaochen W, Quan Y, et al. Destructive behavior of iron oxide in projectile impact[C]//IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2017, 282(1): 012011.
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[29] Zhang Y, Wang X, Yang Q, et al. Nondestructive Evaluation Method of Average Grain Size in TWIP Steel by Laser Ultrasonic[C]//Materials Science Forum. Trans Tech Publications, 2018, 913: 324-330. 已發(fā)表. EI刊源. EI檢索. 20181104912204
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[35] He H N, Wang X C, Yang Q, et al. Research and application of approximate rectangular section control technology in hot strip mills [J]. Journal of Iron and Steel Research, International.審稿中.SCI刊源.
[36] He H N, Wang X C, Yang Q. High-precision section control technology for high-strength yoke steel strip [C]. Materials Science Forum.已發(fā)表.EI刊源.已檢索. 20191106616847
[37] Wu Z D, Wang X C, Yang Q, et al. Deformation resistance prediction of tandem cold rolling based on grey wolf optimization and support vector regression[J]. Journal of Iron and Steel Research International, 2023: 1-18. 已發(fā)表. SCI刊源. SCI檢索. 檢索號: 000931918200001.
[38] Wu Z D, Wang X C, Yang Q, et al. Research on the Pre-Control of Side Scrap Blockage Failure during Trimming with the Side Trimmer[J]. Metals, 2023, 13(10): 1725. 已刊未檢. SCI刊源.
[39] Wu Z D, Wang X C, Yang Q, et al. Research on the effect of thickness difference of weld seam on strip breaking during rolling in PL-TCM[J]. International Journal of Modeling, Simulation, and Scientific Computing, 2022: 2350022. 已發(fā)表. EI刊源. EI檢索. 檢索號: 20223012392844.
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[41] Zhang J, Wang X*, Xu D, et al. Prediction of volume fraction of primary α phase in dual-phase titanium alloy based on laser ultrasonic[J]. Measurement, 2022, 195:111115.
[42] Zhao J W, Wang X C, Yang Q, et al. High Precision Shape Model and Presetting Strategy for Strip Hot Rolling[J]. Journal of Materials Processing Technology. 2019, 20: 99-111. 已發(fā)表. SCI刊源, 一區(qū)(Top). 已檢索. DOI: 10.1016/j.jmatprotec.2018.10.005.
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[44] Zhang J , Wang X , Hua L , et al. Analysis of fatigue fracture and strength improvement of backup rolls[C]. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2020, 772(1): 012068. 已發(fā)表.
[45] 王曉晨,毛星,張佳敏,等.基于激光超聲的金屬材料晶粒尺寸在線無損檢測技術(shù)[J].航空制造技術(shù),2022,65(20):54-62. 已發(fā)表.
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[48]王曉晨,徐言東,程知松,等.長材智能工廠建設(shè)的架構(gòu)設(shè)計與關(guān)鍵技術(shù)[J].冶金自動化, 2022(6):57-66.
[49]王曉晨,劉洋,楊荃,等.長材(棒線材)庫區(qū)智能化無人化管控技術(shù)[J].中國科技成果, 2022, 23(12):25-28.
[50] Li J D, Wang X C, Yang Q, et al. IoT-based framework for digital twins in steel production: A case study of key parameter prediction and optimization for CSR[J]. Expert. Syst. Appl. 2024, 250: 123909.
[51] Li J D, Wang X C, Zhao J W, et al. Predicting mechanical properties lower upper bound for cold-rolling strip by machine learning-based artificial intelligence[J]. ISA. T. 2024, 147: 328-336.
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[55] Wang Jiashu, Yang Quan, Wang Xiaochen, Mao Xing. Laser ultrasonic system for metal pipe wall thickness measurement: Differential signal processing and geometric compensation calculation model[J]. Optics and Lasers in Engineering, 2025, 184(1): 108625.