近年来代表性科研论文: 1.        GW Dong, GQ. Zhao,   YJ Guan, GL Wang, XX Wang. The cell forming process of microcellular   injection-molded parts. J. Appl. Polym. Sci., 2014,   131(12):40365-40376. 2.        GW Dong, GQ Zhao, YJ   Guan, S Li, XX Wang. Formation mechanism and structural characteristics of   unfoamed skin layer in microcellular injection-molded parts. J. Cell. Plast.,   2015, 52(4):419-439. 3.        GW Dong, GQ Zhao, L   Zhang, JJ Hou, B Li and GL Wang. Morphology Evolution and Elimination   Mechanism of Bubble Marks on Surface of Microcellular Injection-Molded Parts   with Dynamic Mold Temperature Control. Ind. Eng. Chem.   Res., 2018, 57(3):1089-1101. 4.        GW Dong, GQ Zhao, JJ   Hou, GL Wang, Y Mu. Effects of dynamic mold temperature control on melt   pressure, cellular structure and mechanical properties of microcellular   injection molded parts: an experimental study. Cell. Polym., 2019,   57(4):545-559. 5.        GL Wang, GQ Zhao, GW Dong, Y Mu, CB Park.   Lightweight and strong microcellular injection molded PP/talc nanocomposite. Compos.   Sci. Tech. 2018, 168, 38–46. 6.        GL Wang, GQ Zhao, GW Dong, LB Song, CB Park.   Lightweight, thermally insulating, and low dielectric microcellular   high-impact polystyrene (HIPS) foams fabricated by high-pressure foam   injection molding with mold opening. J. Mater. Chem. C 2018, 6,   6847–6859. 7.        GL Wang, GQ Zhao, GW Dong, Y Mu, CB Park, Guizhen   Wang. Lightweight, super-elastic, and thermal-sound insulation bio-based PEBA   foams fabricated by high-pressure foam injection molding with moldopening. Eur.   Polym. J. 2018, 103, 68–79. 8.        JJ Hou, GQ Zhao, GL Wang, GW Dong, JJ Xu. A novel   gas-assisted microcellular injection molding method for preparing lightweight   foams with superior surface appearance and enhanced mechanical performance. Mater.   Design, 2017,127: 115-125. 9.        JC Wang, GL Wang, JC Zhao, AM Zhang, GW Dong,   et al. Research on cellular morphology and   mechanical properties of microcellular injection-molded BCPP and its blends. Int. J Adv. Manuf. Tech.,   2021, 116: 2223-2241. 10.   L   Zhang, GQ Zhao, GL Wang, GW Dong, et al. Investigation on   bubble morphological evolution and plastic part surface quality of   microcellular injection molding process based on a multiphase-solid coupled   heat transfer model. Int. J Heat Mass Tran. 2017,104: 1246-1258. 近年来代表性教研论文: 1.      Guiwei Dong. Research progress   and trend of training excellent engineering talents in China. Integration of Industry and Education Journal, 2022, 1:   8–18. 2.      董桂伟, 等. 我国虚拟仿真实验教学的发展与趋势研究---基于近十年中国知网文献的知识图谱分析,中国大学教学(CSSCI),2021.7 3.      董桂伟, 等. 基于雨课堂和BOPPPS模型的有效教学模式探索,高等工程教育研究(CSSCI),2020.6 4.      董桂伟, 等. 基于SolidWorks的跟踪剪切机虚拟仿真设计系统的开发与应用,实验技术与管理,2021.4 5.      董桂伟, 等. 科研成果转化为实验教学资源的探索,实验技术与管理,2019.2 6.      董桂伟, 等. 材料成形及控制工程专业实验教学方法探索与构建,实验室研究与探索,2019.6 7.      董桂伟, 等. 产学研协同的塑料改性、加工与性能测试一体化综合实验设计与实践,实验室研究与探索,2020.2 8.      董桂伟, 等. 基于雨课堂的虚拟仿真实验教学模式设计与实践,实验室研究与探索,2021.10 9.      董桂伟, 等. 面向“新工科”建设的材料成型及控制工程专业层次化实验教学体系设计与实践,实验室科学与技术,2020.6 10.  董桂伟, 等. 基于BOPPPS模型的工科专业实验有效教学设计,黑龙江教育(高教研究与评估),2020.6 授权的代表性发明专利: 1.      赵国群,董桂伟,张磊,管延锦. 一种超临界流体计量注入装置及注入方法,2014.6.18,中国,201210430223.2 2.      赵国群,董桂伟,张磊,管延锦. 一种超临界流体增压计量装置,2015.4.22,中国,201210432233.X 3.      赵国群,董桂伟,管延锦,李帅,张磊. 一种聚合物微孔发泡注塑成型用螺杆,2016.5.18,中国,201410625465.6. 4.      董桂伟,赵国群,王桂龙,侯俊吉,李博. 一种用于聚合物间歇发泡的超临界流体多阶压力控制系统及方法,2019.1.7,中国,201910012729.3 5.      董桂伟,赵国群,王桂龙,侯俊吉. 一种聚合物微孔发泡材料的注塑成型装置和工艺及其应用,2019.5.13,中国,201910394094 .8 6.      董桂伟,赵国群,丁汪洋,王桂龙,张磊. 一种双峰泡孔聚合物泡沫材料的制备装置及方法和应用,2019.5.13,中国,201910394060 .9 7.      董桂伟,刘建峰,张海超,马冰,祁鹏飞. 一种跟踪剪切机主机的参数化设计方法及系统,2019.12.30,中国,201911396376.8 8.      董桂伟,赵国群,王桂龙. 一种模具型腔高压气体控制系统与控制方法,2021.3.31,中国,202110350906.6 9.      王桂龙,赵国群,董桂伟,张磊. 一种轻量化导电隔热复合材料及其制备方法、系统,2017.12.26,中国,201711433855.3 10.  王桂龙,赵国群,侯俊吉,董桂伟. 一种压力流体辅助发泡注塑成型工艺,2018.4.20,中国,ZL 201711433926.X 登记的软件著作权: 1.          董桂伟,马冰,祁鹏飞,刘建峰,张海超. 剪切机设计系统V1.0,2020SR0045450. 2.           董桂伟. 超临界流体计量控制系统 V1.0,2021SR0597040  |