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科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
国家自然科学基金青年基金(51701086),在研,项目主持者。
国家自然科学基金青年基金(51501176), 已结题,参与研究。
江苏科技大学立项科研配套博士科研启动经费(1062921502),在研,项目主持者。
吉林省自然科学基金青年基金“编号:20140520127JH”,已结题,参与研究。
国家科技重大专项“高档数控机床与基础制造装备”子课题( 2013ZX04002021-003),汽油发动机裂解式连杆加工技术与成套设备研制及产业化应用,已结题,参与研究。
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
专利成果
杨宏宇, 刘林,邱丰,舒世立. 纳米碳管和纳米TiC混杂增强铝基复合材料及其制备方法. 中国发明专利,申请号:201811609884.5,申请日期:2018.12.27.
杨宏宇, 刘林,邱丰,舒世立.一种原位内生纳米(TiC-Al3Ti)/(Al-Ti)多孔复合材料及其制备方法. 中国发明专利,申请号:201811609107.0,申请日期:2018.12.27.
科研团队
获奖动态
论文著作
Liu, Shuan; Zhang, Xin; Peng, He LI; Han, Xing; Yang, Hong Yu *; Li, Tao Tao; Zhu, Lin; Zhang, Shuang; Qiu, Feng *; Bai, Zhi Hao; Chen, Shu Ming; Zhou, Wei; Jiang, Qi Chuan; In situ nanocrystals manipulate solidification behavior, and microstructu
Li, Tao Tao; Yang, Hong Yu *; Miao, Tian Jing; Peng, He Li; Chen, Xu; Zhu, Lin; Duan, Tao Tao; Qiu, Feng*; Bai, Zhi Hao; Chen, Shu Ming; Liu, Ying Ying; Han, Xue; Zhang, Shuang; Jiang, Qi Chuan. Microstructure refinement and strengthening of Al-Cu
Qiaoli Lin, Fan Yang, Hongyu Yang*, Ran Sui, Yu Shi, Jianbin Wang. Wetting of graphite by molten Cu-xSn-yCr ternary alloys at 1373 K. Carbon, 159(2020):561-569.
X. Han, Z.P. Zhang, Y.H. Rong, S.J. Thrush, G.C. Barber, H.Y. Yang*, F. Qiu. Bainite kinetic transformation of austempered AISI 6150 steel. Journal of materials research and technology. 2020, 9(2): 1357-1364. doi: 10.1016/j.jmrt.2019.11.062.
Hongyu Yang, Xin Yue, Zheng Wang, Yong Shao, Shili Shu. Strengthening mechanism of TiC/Al composites using Al-Ti-C/CNTs with doping alloying elements (Mg, Zn and Cu),Journal of Materials Research and Technology, doi: 10.1016/j.jmrt.2020.04
H.Y. Yang, Z. Wang, S.L. Shu, J.B. Lu. Effect of Ta addition on the microstructures and mechanical properties of in situ bi-phase (TiB2-TiCxNy)/(Ni-Ta) cermets. Ceramics international, 45(2019): 4408-4417. (SCI/ESI)
H.Y. Yang, E.T. Dong, B.Q. Zhang, L.Y. Chen, Y.X. Jin, S.L. Shu. Effects of of alloying elements on the phase constitution and microstructure of in-situ SiC/Al composites. International Journal of Modern Physics B, 33(2019), 1940048.
H.Y. Yang, P.J. Ji, C.H. Zhan, Y.X. Jin, S.L. Shu. Effects of Cu, Zn, W and Mo on the compression properties of in-situ naono-Ti5Si3/TiAl composite. International Journal of Modern Physics B, 33(2019), 1940051.
Yang H, Dong E, Zhang B, Yuan Y, Shu S, Fabrication and Characterization of In Situ Synthesized SiC/Al Composites by Combustion Synthesis and Hot Press Consolidation Method, scanning, 2017, 2017(9): 1-11
杨宏宇, 刘林, 舒世立, 等. 大功率半导体激光器有源区温度影响因素分析[J]. 江苏科技大学学报(自然科学版), 2017, 31(2):143-147.
Shili Shu, Hongyu Yang, Cunzhu Tong, et al. Fabrication of TiCx-TiB2/Al Composites for Application as a Heat Sink[J]. Materials, 2016, 9(8): 642.
杨宏宇, 舒世立, 刘林, 等. 半导体激光器模块散热特性影响因素分析[J]. 半导体光电, 2016, 37(6): 770-775.
Yang H, Kou S, Gao W, et al. Analysis on technology and defects of fracture splitting of automobile engine connecting rod[J]. Proceedings of the Institution of Mechanical Engineers Part B Journal of Engineering Manufacture, 2014.
寇淑清, 杨宏宇, 赵勇,等. 裂解连杆断裂面三维重构与缺损尺寸分析[J]. 东北大学学报(自然科学版), 2014, 35(4): 574-578.
Yang H Y, Kou S Q, Gao W Q, et al. Investigation of Crack Line Offset of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2014, 472:100-104.
寇淑清, 杨宏宇, 赵勇,等. 连杆裂解起裂及三维裂纹扩展分析[J]. 内燃机工程, 2013, 34(s1):58-64.
寇淑清, 杨宏宇, 高岩,等. 裂解连杆断裂结合面缺损面积定量描述与分析[J]. 吉林大学学报:工学版, 2013, 43(6):1541-1545.
Kou S Q, Yang H Y, Yang S H, et al. Quantitative Analysis of the Defect Dimension for Fracture Surface of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2013, 397-400:1059-1063.
教学随笔
当我们跨越一座高山,也就跨越一个真实的自己!
科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
国家自然科学基金青年基金(51701086),在研,项目主持者。
国家自然科学基金青年基金(51501176), 已结题,参与研究。
江苏科技大学立项科研配套博士科研启动经费(1062921502),在研,项目主持者。
吉林省自然科学基金青年基金“编号:20140520127JH”,已结题,参与研究。
国家科技重大专项“高档数控机床与基础制造装备”子课题( 2013ZX04002021-003),汽油发动机裂解式连杆加工技术与成套设备研制及产业化应用,已结题,参与研究。
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
专利成果
杨宏宇, 刘林,邱丰,舒世立. 纳米碳管和纳米TiC混杂增强铝基复合材料及其制备方法. 中国发明专利,申请号:201811609884.5,申请日期:2018.12.27.
杨宏宇, 刘林,邱丰,舒世立.一种原位内生纳米(TiC-Al3Ti)/(Al-Ti)多孔复合材料及其制备方法. 中国发明专利,申请号:201811609107.0,申请日期:2018.12.27.
科研团队
获奖动态
论文著作
Liu, Shuan; Zhang, Xin; Peng, He LI; Han, Xing; Yang, Hong Yu *; Li, Tao Tao; Zhu, Lin; Zhang, Shuang; Qiu, Feng *; Bai, Zhi Hao; Chen, Shu Ming; Zhou, Wei; Jiang, Qi Chuan; In situ nanocrystals manipulate solidification behavior, and microstructu
Li, Tao Tao; Yang, Hong Yu *; Miao, Tian Jing; Peng, He Li; Chen, Xu; Zhu, Lin; Duan, Tao Tao; Qiu, Feng*; Bai, Zhi Hao; Chen, Shu Ming; Liu, Ying Ying; Han, Xue; Zhang, Shuang; Jiang, Qi Chuan. Microstructure refinement and strengthening of Al-Cu
Qiaoli Lin, Fan Yang, Hongyu Yang*, Ran Sui, Yu Shi, Jianbin Wang. Wetting of graphite by molten Cu-xSn-yCr ternary alloys at 1373 K. Carbon, 159(2020):561-569.
X. Han, Z.P. Zhang, Y.H. Rong, S.J. Thrush, G.C. Barber, H.Y. Yang*, F. Qiu. Bainite kinetic transformation of austempered AISI 6150 steel. Journal of materials research and technology. 2020, 9(2): 1357-1364. doi: 10.1016/j.jmrt.2019.11.062.
Hongyu Yang, Xin Yue, Zheng Wang, Yong Shao, Shili Shu. Strengthening mechanism of TiC/Al composites using Al-Ti-C/CNTs with doping alloying elements (Mg, Zn and Cu),Journal of Materials Research and Technology, doi: 10.1016/j.jmrt.2020.04
H.Y. Yang, Z. Wang, S.L. Shu, J.B. Lu. Effect of Ta addition on the microstructures and mechanical properties of in situ bi-phase (TiB2-TiCxNy)/(Ni-Ta) cermets. Ceramics international, 45(2019): 4408-4417. (SCI/ESI)
H.Y. Yang, E.T. Dong, B.Q. Zhang, L.Y. Chen, Y.X. Jin, S.L. Shu. Effects of of alloying elements on the phase constitution and microstructure of in-situ SiC/Al composites. International Journal of Modern Physics B, 33(2019), 1940048.
H.Y. Yang, P.J. Ji, C.H. Zhan, Y.X. Jin, S.L. Shu. Effects of Cu, Zn, W and Mo on the compression properties of in-situ naono-Ti5Si3/TiAl composite. International Journal of Modern Physics B, 33(2019), 1940051.
Yang H, Dong E, Zhang B, Yuan Y, Shu S, Fabrication and Characterization of In Situ Synthesized SiC/Al Composites by Combustion Synthesis and Hot Press Consolidation Method, scanning, 2017, 2017(9): 1-11
杨宏宇, 刘林, 舒世立, 等. 大功率半导体激光器有源区温度影响因素分析[J]. 江苏科技大学学报(自然科学版), 2017, 31(2):143-147.
Shili Shu, Hongyu Yang, Cunzhu Tong, et al. Fabrication of TiCx-TiB2/Al Composites for Application as a Heat Sink[J]. Materials, 2016, 9(8): 642.
杨宏宇, 舒世立, 刘林, 等. 半导体激光器模块散热特性影响因素分析[J]. 半导体光电, 2016, 37(6): 770-775.
Yang H, Kou S, Gao W, et al. Analysis on technology and defects of fracture splitting of automobile engine connecting rod[J]. Proceedings of the Institution of Mechanical Engineers Part B Journal of Engineering Manufacture, 2014.
寇淑清, 杨宏宇, 赵勇,等. 裂解连杆断裂面三维重构与缺损尺寸分析[J]. 东北大学学报(自然科学版), 2014, 35(4): 574-578.
Yang H Y, Kou S Q, Gao W Q, et al. Investigation of Crack Line Offset of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2014, 472:100-104.
寇淑清, 杨宏宇, 赵勇,等. 连杆裂解起裂及三维裂纹扩展分析[J]. 内燃机工程, 2013, 34(s1):58-64.
寇淑清, 杨宏宇, 高岩,等. 裂解连杆断裂结合面缺损面积定量描述与分析[J]. 吉林大学学报:工学版, 2013, 43(6):1541-1545.
Kou S Q, Yang H Y, Yang S H, et al. Quantitative Analysis of the Defect Dimension for Fracture Surface of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2013, 397-400:1059-1063.
教学随笔
当我们跨越一座高山,也就跨越一个真实的自己!
科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
专利成果
科研团队
获奖动态
论文著作
教学随笔
科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
国家自然科学基金青年基金(51701086),在研,项目主持者。
国家自然科学基金青年基金(51501176), 已结题,参与研究。
江苏科技大学立项科研配套博士科研启动经费(1062921502),在研,项目主持者。
吉林省自然科学基金青年基金“编号:20140520127JH”,已结题,参与研究。
国家科技重大专项“高档数控机床与基础制造装备”子课题( 2013ZX04002021-003),汽油发动机裂解式连杆加工技术与成套设备研制及产业化应用,已结题,参与研究。
专利成果
杨宏宇, 刘林,邱丰,舒世立. 纳米碳管和纳米TiC混杂增强铝基复合材料及其制备方法. 中国发明专利,申请号:201811609884.5,申请日期:2018.12.27.
杨宏宇, 刘林,邱丰,舒世立.一种原位内生纳米(TiC-Al3Ti)/(Al-Ti)多孔复合材料及其制备方法. 中国发明专利,申请号:201811609107.0,申请日期:2018.12.27.
科研团队
获奖动态
论文著作
Liu, Shuan; Zhang, Xin; Peng, He LI; Han, Xing; Yang, Hong Yu *; Li, Tao Tao; Zhu, Lin; Zhang, Shuang; Qiu, Feng *; Bai, Zhi Hao; Chen, Shu Ming; Zhou, Wei; Jiang, Qi Chuan; In situ nanocrystals manipulate solidification behavior, and microstructu
Li, Tao Tao; Yang, Hong Yu *; Miao, Tian Jing; Peng, He Li; Chen, Xu; Zhu, Lin; Duan, Tao Tao; Qiu, Feng*; Bai, Zhi Hao; Chen, Shu Ming; Liu, Ying Ying; Han, Xue; Zhang, Shuang; Jiang, Qi Chuan. Microstructure refinement and strengthening of Al-Cu
Qiaoli Lin, Fan Yang, Hongyu Yang*, Ran Sui, Yu Shi, Jianbin Wang. Wetting of graphite by molten Cu-xSn-yCr ternary alloys at 1373 K. Carbon, 159(2020):561-569.
X. Han, Z.P. Zhang, Y.H. Rong, S.J. Thrush, G.C. Barber, H.Y. Yang*, F. Qiu. Bainite kinetic transformation of austempered AISI 6150 steel. Journal of materials research and technology. 2020, 9(2): 1357-1364. doi: 10.1016/j.jmrt.2019.11.062.
Hongyu Yang, Xin Yue, Zheng Wang, Yong Shao, Shili Shu. Strengthening mechanism of TiC/Al composites using Al-Ti-C/CNTs with doping alloying elements (Mg, Zn and Cu),Journal of Materials Research and Technology, doi: 10.1016/j.jmrt.2020.04
H.Y. Yang, Z. Wang, S.L. Shu, J.B. Lu. Effect of Ta addition on the microstructures and mechanical properties of in situ bi-phase (TiB2-TiCxNy)/(Ni-Ta) cermets. Ceramics international, 45(2019): 4408-4417. (SCI/ESI)
H.Y. Yang, E.T. Dong, B.Q. Zhang, L.Y. Chen, Y.X. Jin, S.L. Shu. Effects of of alloying elements on the phase constitution and microstructure of in-situ SiC/Al composites. International Journal of Modern Physics B, 33(2019), 1940048.
H.Y. Yang, P.J. Ji, C.H. Zhan, Y.X. Jin, S.L. Shu. Effects of Cu, Zn, W and Mo on the compression properties of in-situ naono-Ti5Si3/TiAl composite. International Journal of Modern Physics B, 33(2019), 1940051.
Yang H, Dong E, Zhang B, Yuan Y, Shu S, Fabrication and Characterization of In Situ Synthesized SiC/Al Composites by Combustion Synthesis and Hot Press Consolidation Method, scanning, 2017, 2017(9): 1-11
杨宏宇, 刘林, 舒世立, 等. 大功率半导体激光器有源区温度影响因素分析[J]. 江苏科技大学学报(自然科学版), 2017, 31(2):143-147.
Shili Shu, Hongyu Yang, Cunzhu Tong, et al. Fabrication of TiCx-TiB2/Al Composites for Application as a Heat Sink[J]. Materials, 2016, 9(8): 642.
杨宏宇, 舒世立, 刘林, 等. 半导体激光器模块散热特性影响因素分析[J]. 半导体光电, 2016, 37(6): 770-775.
Yang H, Kou S, Gao W, et al. Analysis on technology and defects of fracture splitting of automobile engine connecting rod[J]. Proceedings of the Institution of Mechanical Engineers Part B Journal of Engineering Manufacture, 2014.
寇淑清, 杨宏宇, 赵勇,等. 裂解连杆断裂面三维重构与缺损尺寸分析[J]. 东北大学学报(自然科学版), 2014, 35(4): 574-578.
教学随笔
当我们跨越一座高山,也就跨越一个真实的自己!
科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
国家自然科学基金青年基金(51701086),在研,项目主持者。
国家自然科学基金青年基金(51501176), 已结题,参与研究。
江苏科技大学立项科研配套博士科研启动经费(1062921502),在研,项目主持者。
吉林省自然科学基金青年基金“编号:20140520127JH”,已结题,参与研究。
国家科技重大专项“高档数控机床与基础制造装备”子课题( 2013ZX04002021-003),汽油发动机裂解式连杆加工技术与成套设备研制及产业化应用,已结题,参与研究。
专利成果
杨宏宇, 刘林,邱丰,舒世立. 纳米碳管和纳米TiC混杂增强铝基复合材料及其制备方法. 中国发明专利,申请号:201811609884.5,申请日期:2018.12.27.
杨宏宇, 刘林,邱丰,舒世立.一种原位内生纳米(TiC-Al3Ti)/(Al-Ti)多孔复合材料及其制备方法. 中国发明专利,申请号:201811609107.0,申请日期:2018.12.27.
科研团队
获奖动态
论文著作
Liu, Shuan; Zhang, Xin; Peng, He LI; Han, Xing; Yang, Hong Yu *; Li, Tao Tao; Zhu, Lin; Zhang, Shuang; Qiu, Feng *; Bai, Zhi Hao; Chen, Shu Ming; Zhou, Wei; Jiang, Qi Chuan; In situ nanocrystals manipulate solidification behavior, and microstructu
Li, Tao Tao; Yang, Hong Yu *; Miao, Tian Jing; Peng, He Li; Chen, Xu; Zhu, Lin; Duan, Tao Tao; Qiu, Feng*; Bai, Zhi Hao; Chen, Shu Ming; Liu, Ying Ying; Han, Xue; Zhang, Shuang; Jiang, Qi Chuan. Microstructure refinement and strengthening of Al-Cu
Qiaoli Lin, Fan Yang, Hongyu Yang*, Ran Sui, Yu Shi, Jianbin Wang. Wetting of graphite by molten Cu-xSn-yCr ternary alloys at 1373 K. Carbon, 159(2020):561-569.
X. Han, Z.P. Zhang, Y.H. Rong, S.J. Thrush, G.C. Barber, H.Y. Yang*, F. Qiu. Bainite kinetic transformation of austempered AISI 6150 steel. Journal of materials research and technology. 2020, 9(2): 1357-1364. doi: 10.1016/j.jmrt.2019.11.062.
Hongyu Yang, Xin Yue, Zheng Wang, Yong Shao, Shili Shu. Strengthening mechanism of TiC/Al composites using Al-Ti-C/CNTs with doping alloying elements (Mg, Zn and Cu),Journal of Materials Research and Technology, doi: 10.1016/j.jmrt.2020.04
H.Y. Yang, Z. Wang, S.L. Shu, J.B. Lu. Effect of Ta addition on the microstructures and mechanical properties of in situ bi-phase (TiB2-TiCxNy)/(Ni-Ta) cermets. Ceramics international, 45(2019): 4408-4417. (SCI/ESI)
H.Y. Yang, E.T. Dong, B.Q. Zhang, L.Y. Chen, Y.X. Jin, S.L. Shu. Effects of of alloying elements on the phase constitution and microstructure of in-situ SiC/Al composites. International Journal of Modern Physics B, 33(2019), 1940048.
H.Y. Yang, P.J. Ji, C.H. Zhan, Y.X. Jin, S.L. Shu. Effects of Cu, Zn, W and Mo on the compression properties of in-situ naono-Ti5Si3/TiAl composite. International Journal of Modern Physics B, 33(2019), 1940051.
Yang H, Dong E, Zhang B, Yuan Y, Shu S, Fabrication and Characterization of In Situ Synthesized SiC/Al Composites by Combustion Synthesis and Hot Press Consolidation Method, scanning, 2017, 2017(9): 1-11
杨宏宇, 刘林, 舒世立, 等. 大功率半导体激光器有源区温度影响因素分析[J]. 江苏科技大学学报(自然科学版), 2017, 31(2):143-147.
Shili Shu, Hongyu Yang, Cunzhu Tong, et al. Fabrication of TiCx-TiB2/Al Composites for Application as a Heat Sink[J]. Materials, 2016, 9(8): 642.
杨宏宇, 舒世立, 刘林, 等. 半导体激光器模块散热特性影响因素分析[J]. 半导体光电, 2016, 37(6): 770-775.
Yang H, Kou S, Gao W, et al. Analysis on technology and defects of fracture splitting of automobile engine connecting rod[J]. Proceedings of the Institution of Mechanical Engineers Part B Journal of Engineering Manufacture, 2014.
寇淑清, 杨宏宇, 赵勇,等. 裂解连杆断裂面三维重构与缺损尺寸分析[J]. 东北大学学报(自然科学版), 2014, 35(4): 574-578.
Yang H Y, Kou S Q, Gao W Q, et al. Investigation of Crack Line Offset of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2014, 472:100-104.
寇淑清, 杨宏宇, 赵勇,等. 连杆裂解起裂及三维裂纹扩展分析[J]. 内燃机工程, 2013, 34(s1):58-64.
寇淑清, 杨宏宇, 高岩,等. 裂解连杆断裂结合面缺损面积定量描述与分析[J]. 吉林大学学报:工学版, 2013, 43(6):1541-1545.
Kou S Q, Yang H Y, Yang S H, et al. Quantitative Analysis of the Defect Dimension for Fracture Surface of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2013, 397-400:1059-1063.
教学随笔
当我们跨越一座高山,也就跨越一个真实的自己!
科研项目
广东省基础与应用基础研究基金项目(2019A1515110268),在研,项目主持人。
国家自然科学基金青年基金(51701086),在研,项目主持者。
国家自然科学基金青年基金(51501176), 已结题,参与研究。
江苏科技大学立项科研配套博士科研启动经费(1062921502),在研,项目主持者。
吉林省自然科学基金青年基金“编号:20140520127JH”,已结题,参与研究。
国家科技重大专项“高档数控机床与基础制造装备”子课题( 2013ZX04002021-003),汽油发动机裂解式连杆加工技术与成套设备研制及产业化应用,已结题,参与研究。
专利成果
杨宏宇, 刘林,邱丰,舒世立. 纳米碳管和纳米TiC混杂增强铝基复合材料及其制备方法. 中国发明专利,申请号:201811609884.5,申请日期:2018.12.27.
杨宏宇, 刘林,邱丰,舒世立.一种原位内生纳米(TiC-Al3Ti)/(Al-Ti)多孔复合材料及其制备方法. 中国发明专利,申请号:201811609107.0,申请日期:2018.12.27.
科研团队
获奖动态
论文著作
Liu, Shuan; Zhang, Xin; Peng, He LI; Han, Xing; Yang, Hong Yu *; Li, Tao Tao; Zhu, Lin; Zhang, Shuang; Qiu, Feng *; Bai, Zhi Hao; Chen, Shu Ming; Zhou, Wei; Jiang, Qi Chuan; In situ nanocrystals manipulate solidification behavior, and microstructu
Li, Tao Tao; Yang, Hong Yu *; Miao, Tian Jing; Peng, He Li; Chen, Xu; Zhu, Lin; Duan, Tao Tao; Qiu, Feng*; Bai, Zhi Hao; Chen, Shu Ming; Liu, Ying Ying; Han, Xue; Zhang, Shuang; Jiang, Qi Chuan. Microstructure refinement and strengthening of Al-Cu
Qiaoli Lin, Fan Yang, Hongyu Yang*, Ran Sui, Yu Shi, Jianbin Wang. Wetting of graphite by molten Cu-xSn-yCr ternary alloys at 1373 K. Carbon, 159(2020):561-569.
X. Han, Z.P. Zhang, Y.H. Rong, S.J. Thrush, G.C. Barber, H.Y. Yang*, F. Qiu. Bainite kinetic transformation of austempered AISI 6150 steel. Journal of materials research and technology. 2020, 9(2): 1357-1364. doi: 10.1016/j.jmrt.2019.11.062.
Hongyu Yang, Xin Yue, Zheng Wang, Yong Shao, Shili Shu. Strengthening mechanism of TiC/Al composites using Al-Ti-C/CNTs with doping alloying elements (Mg, Zn and Cu),Journal of Materials Research and Technology, doi: 10.1016/j.jmrt.2020.04
H.Y. Yang, Z. Wang, S.L. Shu, J.B. Lu. Effect of Ta addition on the microstructures and mechanical properties of in situ bi-phase (TiB2-TiCxNy)/(Ni-Ta) cermets. Ceramics international, 45(2019): 4408-4417. (SCI/ESI)
H.Y. Yang, E.T. Dong, B.Q. Zhang, L.Y. Chen, Y.X. Jin, S.L. Shu. Effects of of alloying elements on the phase constitution and microstructure of in-situ SiC/Al composites. International Journal of Modern Physics B, 33(2019), 1940048.
H.Y. Yang, P.J. Ji, C.H. Zhan, Y.X. Jin, S.L. Shu. Effects of Cu, Zn, W and Mo on the compression properties of in-situ naono-Ti5Si3/TiAl composite. International Journal of Modern Physics B, 33(2019), 1940051.
Yang H, Dong E, Zhang B, Yuan Y, Shu S, Fabrication and Characterization of In Situ Synthesized SiC/Al Composites by Combustion Synthesis and Hot Press Consolidation Method, scanning, 2017, 2017(9): 1-11
杨宏宇, 刘林, 舒世立, 等. 大功率半导体激光器有源区温度影响因素分析[J]. 江苏科技大学学报(自然科学版), 2017, 31(2):143-147.
Shili Shu, Hongyu Yang, Cunzhu Tong, et al. Fabrication of TiCx-TiB2/Al Composites for Application as a Heat Sink[J]. Materials, 2016, 9(8): 642.
杨宏宇, 舒世立, 刘林, 等. 半导体激光器模块散热特性影响因素分析[J]. 半导体光电, 2016, 37(6): 770-775.
Yang H, Kou S, Gao W, et al. Analysis on technology and defects of fracture splitting of automobile engine connecting rod[J]. Proceedings of the Institution of Mechanical Engineers Part B Journal of Engineering Manufacture, 2014.
寇淑清, 杨宏宇, 赵勇,等. 裂解连杆断裂面三维重构与缺损尺寸分析[J]. 东北大学学报(自然科学版), 2014, 35(4): 574-578.
Yang H Y, Kou S Q, Gao W Q, et al. Investigation of Crack Line Offset of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2014, 472:100-104.
寇淑清, 杨宏宇, 赵勇,等. 连杆裂解起裂及三维裂纹扩展分析[J]. 内燃机工程, 2013, 34(s1):58-64.
寇淑清, 杨宏宇, 高岩,等. 裂解连杆断裂结合面缺损面积定量描述与分析[J]. 吉林大学学报:工学版, 2013, 43(6):1541-1545.
Kou S Q, Yang H Y, Yang S H, et al. Quantitative Analysis of the Defect Dimension for Fracture Surface of Fracture Splitting Connecting Rod[J]. Applied Mechanics & Materials, 2013, 397-400:1059-1063.
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