专 业 名 称
车辆工程、载运工具运用工程、机械工程
学 术 职 衔
博士生导师/硕士生导师
导 师 姓 名
陈秉智
所获最高学位及单位
博士 大连理工大学
 
教授
工 作 部 门
大连交通大学
联 系 电 话
0411-84106285
电 子 邮 箱
chenbingzhi06@126.com
研 究 方 向
轨道车辆虚拟样机性能仿真,多学科优化设计,生物力学
学习及工作经历
2023.3-至今    大连交通大学党委副书记、校长
2018.10-2023.2,大连交通大学党委常委、副校长
2018.06-2018.10,大连交通大学 教务处 处长
2013.06-2018.06,大连交通大学 交通运输工程学院 院长
2006.01-2013.06,大连交通大学 交通运输工程学院 副教授 教授
2003.01-2005.12,西安交通大学博士后
1997.09-2002.11,大连理工大学 工程力学系 博士研究生
1994.09-1997.07,大连铁道学院 机械工程研究所 硕士研究生
1990.09-1994.07,大连铁道学院 机车车辆系 本科
进修及访学经历
2003.07-2004.03 英国谢菲尔德大学访问学
承担科研项目情况
1.国家自然科学基金项目:仿生梯度多胞吸能结构的跨尺度设计及增材制造,2023-2027
2.中国国家铁路集团有限公司项目:基于增材制造的动车组吸能元件设计及仿真验证技术研究,2020-2023.
3.铁道部科技研究开发计划:八轴货运电力机车技术提升技术研究——HXD2型机车转向架焊接构架强度仿真分析,2019-2022.
4.大连市重点学科重大课题:高铁及城轨焊接结构抗疲劳设计多功能平台开发,2019.1-2021.12
2.国家自然科学基金项目:基于材料和结构一体化的高速列车吸能部件的抗撞性分析和优化,2013.01-2016.12
3.国家重点研发计划项目:轻量化材料复杂构件结构优化仿真技术研究, 201 6.07-2019.06
4.铁路总公司科研计划课题项目:基于模块化技术的多级可控能量吸收系统的吸能机理分析和优化, 2015.06-2017.12
5.国家自然科学基金项目:基于低频振动条件下的骨缺损在体力学模型研究, 2013.01-2016.12
6.企业单位委托科技项目:神华货车轴承高可靠性技术研究与全寿命周期管理项目--数据平台建设,2022-2023.
7.企业单位委托科技项目:高速铁路轮轨表面粗糙度测试分析,2022-2023.
8.企业单位委托科技项目:高原双源动力集中动车组内燃动力车耐碰撞计算,2020-2022.
9.企业单位委托科技项目:基于耐撞性需求防爬吸能装置开发,2023-2025.
10.企业单位委托科技项目:动车组撞泥石流脱线行为仿真研究,2023-2024.
11.企业单位委托科技项目:车体钢结构静强度、刚度及模态仿真分方析,2023-2024.
12.企业单位委托科技项目:台州市域铁路S1线一期工程车辆项目转向架构架建模及关键部件静强度、疲劳强度分析,2022-2025.
13.企业单位委托科技项目:高速飞行状态下起落架收放气动特性研究,2024-2025.
14.企业单位委托科技项目:基于司乘人员保护的司机室结构与列车吸能结构一体化技术研究,2024-2026.
15.企业单位委托科技项目:动集耐撞性关键技术研究,2025-2029.
16.企业单位委托科技项目:新一代拖车(客车)技术研究,2024-2025.
17.企业单位委托科技项目:太原市轨道交通2号线一期工程车辆碰撞计算,2019-2020
18.企业单位委托科技项目:内电共平台机车耐碰撞分析计算,2019-2020
19.企业单位委托科技项目:尼日利亚阿布贾城铁一期工程车辆碰撞计算,2019-2020
20.企业单位委托科技项目:适用于干线铁路的时速160Km城际列车项目碰撞计算,2019-2020
21.企业单位委托科技项目:美国不锈钢双层车吊装件强度及疲劳寿命分析研究,2018-2020
22. 企业单位委托科技项目:基于结构应立法的车体疲劳寿命评估技术研究,2017-2019
23.企业单位委托科技项目:标准化动车组防爬分析,2017.05- 2017.11
24.企业单位委托科技项目:厦门地铁碰撞分析,2017.05-2017.09
25.企业单位委托科技项目:西安机场线不锈钢点焊车体静强度、模态、疲劳强度、线性屈曲计算, 2017.03- 2018.07
26.企业单位委托科技项目:印度加尔各答地铁车体静强度、碰撞、模态及疲劳强度有限元分析, 2015.03- 2016.12
27.企业单位委托科技项目:CRH5AMC02原车车体强度精细分析,2015.04- 2016.12
28.企业单位委托科技项目:石家庄地铁1号线列车碰撞计算分析, 2015.04- 2016.12
29.企业单位委托科技项目:广州市轨道交通十三号线车辆车体有限元分析,2016.05- 2017.12
30.企业单位委托科技项目:出口新西兰内燃机车大变形碰撞仿真,2016.05- 2017.05
31.企业单位委托科技项目:万向轴保护架多方案静强度和碰撞仿真分析,2014. 01-2014.05
32.企业单位委托科技项目:北京市现代有轨电车西郊线车体静刚度、强度、模态及车体耐撞性计算,2014.01- 2014.12
33.企业单位委托科技项目:石家庄地铁1号线MP车车体结构有限元及优化,2015.07- 2015.12
申请专利情况
1.周韶泽,赵鹏飞(),陈秉智,杨世新(),一种无线便携展开式轨道车辆结构噪声测量系统及方法,发明专利,20211136616232022.
2.李永华,白肖宁(),陈秉智,智鹏鹏(),一种可收放式的多级碰撞吸能排障器,发明专利,CN110053645B2020.
3.陈秉智,秦睿贤,周俊先,一种轨道列车多级能量吸收的耐冲击优化设计方法,发明专利,CN107657112A2018.
4.李永华,智鹏鹏(),程杰(),陈秉智,王剑,一种动车组撒沙装置,发明专利,ZL201611029364.82018.
5.石姗姗,孙直(),陈秉智,郭旭(),胡晓智(),陈红杰(),一种芳纶短纤维增强的碳纤维预浸料、制备方法及应用,发明专利,20170915012566002017.
6.李永华,邵万珍,陈秉智,一种中药熏蒸医疗椅,发明专利,20141021232562015.
7.郭悦(),陈秉智,秦睿贤,张旭,郭宗春,一种复合式仿生轨道车辆吸能装置,实用新型,CN 219192199 U2023.
8.于洋,卢凯文(),陈秉智,刘春艳(),郭宗春(),一种适用于残疾人的双状态地铁座椅,实用新型,CN 219406452 U2023.
9. 周韶泽,冯显锟(),郭硕(),苏帅帅(),郝思奇(),赵鹏飞(),杜永康(),梁隆胤(),宁伟(),王悦东,陈秉智,兆文忠,一种振动监测传感器固定装置,实用新型,20212228509352022.
10.周韶泽,郭冠辰(),冯显锟(),邵力耕,陈秉智,张军,一种低功耗拼接式无线结构振动监测系统,实用新型,CN214277193U2021.
11.周韶泽,程培羽(),谢素明,陈秉智,兆文忠,采集模组、节点、节点组以及磁吸式无线监测系统,实用新型,CN214756312U2021.
12.李永华,王慎轩(),陈秉智,王登龙(),白肖宁(),一种多功能地铁座椅,实用新型,CN214295941U2021.
13.周韶泽,程培羽(),王悦东,陈秉智,张军,兆文忠,一种分布式无线结构振动采集装置及系统,实用新型,CN214502664U2021.
14.李永华,白肖宁(),陈秉智,张旭,宫琦,轨道车辆电机柔性架悬装置,实用新型,CN210822228U2020.
15.李永华,白肖宁(),温昕(),陈秉智,王剑,邱广宇,米莉艳(),李明(),一种动车组制动控制装置吊架,实用新型,CN210391165U2020.
16.李永华,李雨晗,陈秉智,张月,郭正阳,徐越. 地铁车齿轮箱维修分析软件V1.0,软件著作权,2018SR6287082018
17.李永华, 智鹏鹏, 陈秉智, 周峰, 宫琦. 高速铁路轴承RAMS分析软件V1.0,软件著作权,2016SR3217222016.
18.李永华,胡明广,陈秉智,王悦东,高明强. 动车组转向架可靠性分配软件V1.0,软件著作权,2016SR0881182016.
19.李永华,高磊,陈秉智,高明强. 高速动车组转向架系统RAMS评估软件V1.0, 软件著作权, 2015SR1632002015.
20.陈秉智,葛巍,李永华,李金颖,王剑,装箱架寿命周期费用估算软件V1.0,软件著作权,2015SR2047472015.
21. 周韶泽,兆文忠,陈秉智,马思群,CRH2动车组焊接构架数据可视化软件,软件著作权,2013SR0810712013.
22.周韶泽,兆文忠,马思群,陈秉智,虚拟检修模型转换软件,软件著作权,2013SR0811582013.
23.周韶泽,兆文忠,马思群,陈秉智,CRH3动车组转向架虚拟检修软件,软件著作权,2013SR0808302013.
24.周韶泽,兆文忠,陈秉智,马思群,CRH2动车组焊接构架寿命预测和数据管理软件,软件著作权,2013SR0811532013.
25.谢素明,兆文忠,李向伟,李晓峰,陈秉智,基于美国ASME2007)标准的复杂焊接结构疲劳寿命预测系统,软件著作权,2010SR0333342010.
近五年发表论文、著作情况
英文期刊
 [1]Y. W. Zhang, J. X. Zhou, R. X. Qin, S. S. Shi, Y. Z. Lu, X. Zhang, J. X. Xu and B. Z. Chen, Defect analysis and quality evaluation system for additive manufactured continuous fiber-reinforced polymer composites, JOURNAL OF MANUFACTURING PROCESSES, vol. 141, pp. 595-612, 2025.
 [2]Z. Y. Wang, J. X. Zhou, Y. Z. Lu, D. M. Li, D. Y. Yue, X. Zhang and B. Z. Chen, Mechanical properties and energy absorption of CoCrNi functionally graded TPMS cellular structures, JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, vol. 34, pp. 2772-2787, 2025.
 [3]X. Wang, S. Y. Wang, M. H. Huang, R. X. Qin and B. Z. Chen, Multifunctional strut-plate composite lattice metamaterial for integrated acoustic, energy, and vibration management, VIRTUAL AND PHYSICAL PROTOTYPING, vol. 20, pp. 2025.
 [4]H. Z. Niu, J. M. Lu, R. X. Qin, X. Wang, Q. J. Li, T. Y. Li and B. Z. Chen, A self-locked chiral honeycomb: In-plane compression behavior and energy absorption, EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, vol. 111, pp. 2025.
 [5]J. M. Lu, Q. J. Li, R. X. Qin, X. Wang, T. Y. Li, H. Z. Niu and B. Z. Chen, Enhanced energy absorption of assembled honeycomb system under in-plane compression, INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, vol. 299, pp. 2025.
 [6]M. H. Huang, X. Wang, R. X. Qin and B. Z. Chen, Crashworthiness Prediction and Optimization of Rib-Reinforcement Multi-Cell Tubes Based on Machine Learning Under Axial and Lateral Loadings, INTERNATIONAL JOURNAL OF APPLIED MECHANICS, vol. 17, pp. 2025.
 [7]L. Ding, Z. He and B. Chen, Strength assessment and lightweight optimization design of a bogie frame based on the structural stress method, International Journal of Structural Integrity, vol. 16, pp. 159-186, 2025.
 [8]Y. W. Zhang, S. S. Shi, Y. Z. Lu, R. X. Qin, X. Zhang, J. X. Xu and B. Z. Chen, A materials informatics framework based on reduced-order models for extracting structure-property linkages of additively manufactured continuous fiber-reinforced polymer composites, POLYMER COMPOSITES, vol. 45, pp. 6914-6932, 2024.
 [9]X. Zhang, T. Y. Guan, D. M. Li, X. C. Cui and B. Z. Chen, Effect of Cladding Fe-Based Coating on the Microstructure, Wear Resistance, and Dynamic Performance of CL60 Steel, JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, vol. pp. 2024.
  [10]Z. Y. Wang, D. Y. Yue, D. M. Li and B. Z. Chen, Process parameter optimization and mechanical properties for selective laser melting of AlSi10Mg alloy, INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, vol. 135, pp. 2173-2189, 2024.
  [11]X. Wang, R. X. Qin, J. M. Lu, M. H. Huang, X. Zhang and B. Z. Chen, Laser additive manufacturing of hierarchical multifunctional chiral metamaterial with distinguished damage-resistance and low-frequency broadband sound-absorption capabilities, MATERIALS & DESIGN, vol. 238, pp. 2024.
  [12]R. X. Qin, X. Wang, J. M. Lu, Q. J. Li, H. Z. Niu, X. Zhang and B. Z. Chen, Node-locked multi-cell honeycomb for efficient energy absorption, INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, vol. 268, pp. 2024.
  [13]H. Y. Lv, B. Z. Chen, S. S. Shi and Z. C. Wen, Minimum mass optimization of curved grid-honeycomb sandwich panels with cutouts under buckling constraints, STRUCTURES, vol. 63, pp. 2024.
  [14]J. M. Lu, X. Wang, R. X. Qin and B. Z. Chen, Design of energy-absorbing bionic workstation table for trains and research on occupant collision injury, INTERNATIONAL JOURNAL OF CRASHWORTHINESS, vol. 29, pp. 1118-1132, 2024.
  [15]D. M. Li, X. Zhang, R. X. Qin and B. Z. Chen, Crashworthiness analysis and uncertainty optimization of novel multi-wall tube, INTERNATIONAL JOURNAL OF CRASHWORTHINESS, vol. 29, pp. 151-162, 2024.
  [16]J. X. Zhou, C. Dong, B. Z. Chen, R. X. Qin and D. M. Li, Out-of-plane crushing performances of cell-based hierarchical honeycombs based on the evaluation criteria for ideal energy absorption, THIN-WALLED STRUCTURES, vol. 182, pp. 2023.
  [17]D. Y. Yue, R. X. Qin, D. M. Li, Z. Y. Wang, X. Zhang and B. Z. Chen, Numerical investigation of block support structures with different dimension parameters in laser powder bed fusion of AlSi10Mg, RESULTS IN PHYSICS, vol. 44, pp. 2023.
  [18]J. X. Xu, H. Fan, D. L. Du, D. M. Li and B. Z. Chen, Light-transmitting AlON carrier with enhanced photocatalytic degradation performance, CERAMICS INTERNATIONAL, vol. 49, pp. 24762-24770, 2023.
  [19]X. Wang, R. X. Qin, X. Zhang and B. Z. Chen, Quasi-static and dynamic behavior of additively manufactured metamaterial structures with layered-hybrid topologies, THIN-WALLED STRUCTURES, vol. 183, pp. 2023.
  [20]X. Wang, R. X. Qin and B. Z. Chen, Crashworthiness reinforcements of multi-cell thin-walled tubes through topology optimized lattice structures under axial and lateral loadings, MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, vol. 30, pp. 3662-3686, 2023.
  [21]X. Niu, X. Wang, Y. Z. Lu, X. S. Zhang and B. Z. Chen, Greatly improving the energy absorption capacity of pre-folded tubes via non-uniformizing structures, ACTA MECHANICA SINICA, vol. 39, pp. 2023.
  [22]D. M. Li, X. Zhang, R. X. Qin, J. X. Xu, D. Y. Yue and B. Z. Chen, Influence of processing parameters on AlSi10Mg lattice structure during selective laser melting: Manufacturing defects, thermal behavior and compression properties, OPTICS AND LASER TECHNOLOGY, vol. 161, pp. 2023.
  [23]J. X. Zhou, C. Dong, Z. Y. Wang, B. Z. Chen, R. X. Qin and X. Niu, Approaching ideal energy absorption through the multicellular structure with gradient material distribution, INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, vol. 225, pp. 2022.
  [24]Y. Yu, D. P. Wang, G. Z. Zhao, Y. H. Li and B. Z. Chen, Size optimization of mid-frequency vibro-acoustic systems in the framework of modal energy analysis, STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, vol. 65, pp. 2022.
  [25]J. X. Xu, D. L. Du, X. C. Pan and B. Z. Chen, Effect of carbon and a-Al2O3 on controlled synthesis of AlON powder, CERAMICS INTERNATIONAL, vol. 48, pp. 16764-16772, 2022.
  [26]J. Xu, X. Zhang, D. Li and B. Chen, Regulation of crystal defect concentration in AlON, Materialia, vol. 26, pp. 101622, 2022.
  [27]Z. Y. Wang, Y. Z. Lv, B. Z. Chen and J. X. Zhou, Research Progress of Additively Manufactured Energy-Absorbing Structures, RARE METAL MATERIALS AND ENGINEERING, vol. 51, pp. 2302-2315, 2022.
  [28]X. Wang, R. X. Qin, B. Z. Chen, X. Niu and J. X. Zhou, Multi-scale collaborative optimization of lattice structures using laser additive manufacturing, INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, vol. 222, pp. 2022.
  [29]X. Wang, R. X. Qin and B. Z. Chen, Crushing analysis under multiple impact loading cases for novel tailored-property multi-wall tubes, INTERNATIONAL JOURNAL OF CRASHWORTHINESS, vol. 27, pp. 1092-1110, 2022.
  [30]X. Wang, R. X. Qin and B. Z. Chen, Mechanical properties and energy absorption capability of a topology-optimized lattice structure manufactured via selective laser melting under axial and offset loading, PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, vol. 236, pp. 10221-10236, 2022.
  [31]Y.-Q. Shi, R.-X. Qin and B.-Z. Chen, Crashworthiness design and analysis for novel multi-corner square columns under axial loading, Mechanics of Advanced Materials and Structures, vol. 29, pp. 5843-5859, 2022.
  [32]D. M. Li, R. X. Qin, J. X. Xu, J. X. Zhou and B. Z. Chen, Improving Mechanical Properties and Energy Absorption of Additive Manufacturing Lattice Structure by Struts' Node Strengthening, ACTA MECHANICA SOLIDA SINICA, vol. 35, pp. 1004-1020, 2022.
  [33]D. M. Li, R. X. Qin, J. X. Xu, J. X. Zhou and B. Z. Chen, Topology optimization of thin-walled tubes filled with lattice structures, INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, vol. 227, pp. 2022.
  [34]D. M. Li, R. X. Qin, J. X. Xu, B. Z. Chen and X. Niu, Effect of heat treatment on AlSi10Mg lattice structure manufactured by selective laser melting: Microstructure evolution and compression properties, MATERIALS CHARACTERIZATION, vol. 187, pp. 2022.
  [35]J. X. Zhou, C. Dong, B. Z. Chen and X. Niu, Design and Numerical Simulation of Pyramidal Prefolded Patterned Thin-Walled Tubes, ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, vol. 2021, pp. 2021.
  [36]X. Wang, R. X. Qin and B. Z. Chen, Laser-based additively manufactured bio-inspired crashworthy structure: Energy absorption and collapse behaviour under static and dynamic loadings, MATERIALS & DESIGN, vol. 211, pp. 2021.
  [37]R. X. Qin, X. Wang, F. Gao and B. Z. Chen, Energy absorption performance of hexagonal multi-cell tube with hierarchy under axial loading, THIN-WALLED STRUCTURES, vol. 169, pp. 2021.
  [38]X. Niu, R. X. Qin, Y. Z. Lu and B. Z. Chen, Energy Absorption Behaviors of Laser Additive Manufactured Aluminium Alloy Thin-Walled Tube Tailored by Heat Treatment, MATERIALS TRANSACTIONS, vol. 62, pp. 278-283, 2021.
  [39]D. M. Li, R. X. Qin, B. Z. Chen and J. X. Zhou, Analysis of mechanical properties of lattice structures with stochastic geometric defects in additive manufacturing, MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, vol. 822, pp. 2021.
  [40]R. X. Qin and B. Z. Chen, Optimization Design on Functionally Graded Cem for Trains Based on LPM Model with Calibrated Parameters, SHOCK AND VIBRATION, vol. 2020, pp. 2020.
  [41]Q. Gong, B. Z. Chen, Y. H. Li and P. P. Zhi, Reliability Assessment Based on GO Method of Metro Traction System, ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, vol. 2020, pp. 2020.
中文期刊
 [1]刘海东,陈大伟,陈秉智,.不同导流罩作用下高速列车受电弓气动特性分析[J].铁道学报,2024,46(11):49-56.
 [2]时森,陈秉智,张旭,.基于子模型的镁合金车体刚度联合优化[J].大连交通大学学报,2024,45(02):44-50.
 [3]卢嘉茗,秦睿贤,王希,.列车乘员二次碰撞损伤及桌板参数优化[J].大连交通大学学报,2023,44(05):35-42.
 [4]陈宏烨,郭涛,侯茂锐,.内置轴箱转向架构架疲劳寿命分析[J].机械工程与自动化,2023,(05):24-27.
 [5]毕妤靖,秦睿贤,陈秉智.障碍物特性曲线参数反演及车辆碰撞性评估[J].铁道标准设计,2024,68(09):208-215.
 [6]吴同畅,侯茂锐,郭涛,.基于刚柔耦合的内置轴箱转向架动力学仿真[J].机械制造,2023,61(04):1-5+54.
 [7]张旭升,伊兆锋,秦睿贤,.基于遗传算法的AlSi10Mg合金本构方程参数反演[J].大连交通大学学报,2022,43(06):57-64.
 [8]季玲,刘海东,陈秉智.高速列车头型的减阻降噪多目标优化设计[J].大连交通大学学报,2022,43(05):35-40.
 [9]石越卿,秦睿贤,陈秉智.列车防撞柱结构耐撞性设计与优化[J].机械强度,2022,44(05):1134-1140.
  [10]白成林,何正平,陈秉智.某轨道列车电气柜焊缝疲劳及可靠性分析[J].机械工程师,2022,(10):22-25.
  [11]夏洪刚,宋明智,张亚文,.股骨转子间骨折术后固定强度的研究[J].空军航空医学,2022,39(04):148-152.
  [12]邱正成,邱广宇,陈秉智.基于子模型的车体断面拓扑优化设计[J].大连交通大学学报,2022,43(04):50-54+95.
  [13]马骏,张春光,毛俊,.基于SSM框架的列车智能调试平台的设计与开发[J].铁道机车车辆,2022,42(02):79-84.
  [14]李成,马超,张健健,.转轴空腔对增压器涡轮轴应力及传热影响的研究[J].车用发动机,2022,(02):23-29.
  [15]宫琦,陈秉智,李永华,.地铁电源模块故障分析及预测方法[J].东北大学学报(自然科学版),2022,43(01):8-16.
  [16]秦睿贤,高峰,王铁成,.纵向冲击下高速列车车体承载极限数值模拟[J].交通运输工程学报,2021,21(06):209-224.
  [17]胡义祥,陈秉智,梁攀,.变温马氏体相变动力学实验观察及立体图像模拟[J].大连交通大学学报,2021,42(06):76-82.
  [18]初彦彬,邱广宇,陈秉智.面向气动性能的高速列车头型多目标优化设计[J].大连交通大学学报,2021,42(06):31-36.
  [19]明鉴,石姗姗,陈秉智.多柔体车辆耦合系统对动力学性能的影响[J].大连交通大学学报,2021,42(05):35-40.
  [20]谭惠日,秦睿贤,陈秉智.多工况载荷下机车排障器拓扑和尺寸优化设计[J].大连交通大学学报,2021,42(04):28-32.
  [21]陈秉智,张雪青,邱广宇.时速400公里高速列车底架拓扑优化[J].机械设计与制造,2021,(07):272-275.
  [22]杨玉琦,王悦东,陈秉智,.基于接触分析的螺纹连接仿真研究[J].大连交通大学学报,2021,42(02):55-59.
  [23]周俊先,陈秉智,秦睿贤.梯度厚度多胞管的轴向冲击性能分析和优化设计[J].铁道学报,2021,43(03):52-61.
获奖及个人荣誉
1.陈秉智、李永华、王悦东、张旭、王剑、邱广宇、兆文忠,轨道车辆车体机构耐撞性分析和可靠性优化关键技术,辽宁省科学技术二等奖,2018
2.陈秉智,贯彻国家发展战略,面向国家重大需求,研究生创新能力培养模式探索与实践,辽宁省教学成果奖(研究生类)一等奖,2018
3.陈秉智,可靠预测轨道车辆焊接结构疲劳寿命的虚拟疲劳试验技术与工程应用,辽宁省科学技术三等奖,2015
4.陈秉智,现代轨道车辆工程专业卓越工程师培养的研究与实践,辽宁省教学成果一等奖,2012
5.辽宁省百千万人才工程百层次人选,2015
6.辽宁特聘教授,2018
7.大连市第二届最喜爱的青年教师,2013
8.辽宁省高等学校优秀班主任(导师),2012
9.大连交通大学个人先进标兵,2009
社会兼职情况
1.铁道学会 副主任编委,2025.10—至今
2.辽宁省力学学会 常务理事 2024.08—至今
指导研究生情况
已指导毕业研究生人数
博士:2  硕士:45
正在指导研究生人数
博士:13 硕士:15
所指导研究生获奖情况
希,2019年国家研究生奖学金
石越卿,2019年国家研究生奖学金
智鹏鹏,2019年国家研究生奖学金
张雪清,2018年国家研究生奖学金
徐元志,2017年国家研究生奖学金
 旭,2016年国家研究生奖学金
承担研究生课程名称