高端工程机械与矿山装备研究所

王朝华

发布时间:2026年03月09日 09:33    作者:    来源:    点击率:

王朝华

职称:副教授 硕士生导师

办公地址:主校区博学楼15层

电子邮箱:wangzhaohua@tyust.edu.cn

学术兼职

教育部学位论文评审专家,中国振动工程学会青年委员,山西省振动工程学会理事,国际仿生工程学会会员,Symmetry期刊客座编辑,矿业研究与开发、矿产保护与利用期刊青年编委,Engineering Structures、Applied sciences、Minerals、科学技术与工程等期刊审稿人。

教育背景

2015.09--2021.06,燕山大学,机械制造及其自动化,博士(硕博连读)

2011.09--2015.07,北京印刷学院,机械工程及其自动化,学士

工作履历

2023.12--至今,太阳成集团tyc122cc,太阳成集团tyc122ccvip,副教授

2023.11--2025.12,中信重工机械股份有限公司,博士后

2021.07--2023.12,太阳成集团tyc122cc,太阳成集团tyc122ccvip,讲师

2019.09--2019.12,加拿大曼尼托巴大学,应用力学系,访问学者

教学工作

本科生课程:有限元分析、人机工程学、矿山生产工艺学

科研工作

1)研究领域

结构优化与轻量化设计(拓扑优化、传力路径、仿生设计、疲劳寿命预测等)

多功能点阵结构性能调控(点阵结构、夹芯结构、超材料、增材制造等)

矿山装备绿色低碳技术(离散元流固耦合、高效磨矿技术、高效筛分技术等)

2)承担项目

A.纵向课题

(1) 国家自然科学基金面上项目,52575303,力链基点阵结构热力耦合跨尺度行为与功能协调优化方法研究,2026.01-2029.12,在研,主持

(2) 国家自然科学基金青年C类项目,52205278,力流导引的隐式曲面点阵结构传力性能评价与优化方法研究,2023.01-2025.12,在研,主持

(3) 山西省基础研究计划青年项目,202103021223290,点阵结构载荷传递机理及刚度强度协调设计研究,2022.01-2024.12,已结题,主持

(4) 山西省来晋工作优秀博士奖励资金,矿用自卸车厢斗结构仿生设计与优化方法研究,2022.06-2025.06,已结题,主持

(5) 山西省高等学校科技创新项目,2021L291,基于力流分析的变密度点阵结构优化方法研究,2021.09-2023.09,已结题,主持

(6) 太阳成集团tyc122cc博士科研启动基金,20212040,面向增材制造的点阵结构轻量化设计,2021.07-2024.06,已结题,主持

(7) 燕山大学课外科研立项,201802,基于仿生融合的汽车转向总成轻量化设计,2018.05-2019.05,已结题,主持

(8) 秦皇岛市大学生科技创新创业专项资金项目,20180813,内燃机缸体拓扑优化软件平台开发,2018.01-2018.12,已结题,主持

(9) 河北省研究生创新资助项目,CXZZSS2017045,基于传力路径分析的飞机翼肋结构布局优化研究,2017.01-2017.12,已结题,主持

B.横向课题

(1) 2026.01-2026.12,2300XPA回转平台设计研究及开发,主持

(2) 2024.08-2026.12,高端矿山装备协同创新中心2024年技术服务,主持

(3) 2023.11-2025.12,基于离散元流固耦合的立式搅拌磨运行机理研究,主持

(4) 2023.04-2024.12,XX型椭圆筛分机仿真分析及结构优化研究,主持

(5) 2022.03-2023.03,高端矿山装备协同创新中心2022年技术服务,主持

(6) 2020.04-2021.06,超轻铝合金轮毂结构设计关键技术集成研发与应用,主要完成人

(7) 2018.08-2020.05,X3XJP耐久性仿真分析及试验,主要完成人

(8) 2018.06-2019.05,XXX舰艇架体轻量化设计,主要完成人

(9) 2018.01-2018.12,车轮小总成项上铝铸件仿生轻量化设计,主要完成人

(10) 2016.06-2016.10,汽车座椅调角器安全部件的轻量化设计,主要完成人

3)代表性成果

A.论文(近年来以第一/通讯作者发表学术论文40余篇,其中SCI收录20余篇,部分论文如下)

(1) Wang D,Wang ZH*, Zhao SJ, Wu N*, Feng RJ, Wu ZS. Stiffness design method of Gyroid functionally graded lattice structures based on variable porosity controlled by load path. Composite Structures, 2026, 377, 119794 (SCI二区)

(2) Ji HN,Wang ZH*, Ma LF,et al. Grinding efficiency model of vertical stirred mill constructed by the collision characteristics of grinding sphere based on DEM-CFD. Minerals Engineering, 2026, 236(2), 109962. (SCI二区)

(3) XiaoWJ, Li AF,Wang ZH*, Jin R, Wang ZS. Study on motion characteristics of screen mesh and particles for the triaxial elliptical vibrating screen. Chemical Engineering Science, 2026, 320: 122521 (SCI二区)

(4) Wang ZH, Wang CS, Wu FH*, Liu ZJ, Liu L, Wang D. Design Method of Gyroid Lattice Structure Based on the Load Paths Direction and Capacity. Additive Manufacturing. 2025, 97: 104586.(SCI一区TOP)

(5) Ji HN,Wang ZH*, Qu T, Song XZ, Tang BL, Li YJ, Ma LF. Grinding mechanism of wet vertical spiral stirred mill based on DEM-CFD: Role of grinding sphere motion. Particuology.2025, 103: 151-163. (SCI)

(6) Wang ZH*, Wang D, Zhang TQ, Liu L, Wu ZS. Design method of lattice structure with variable density unit cells guided by load paths. Journal of Mechanical Science and Technology, 2025, 39(10): 6011~6020. (SCI)

(7) 王朝华, 赵炎龙,瞿铁,宋现洲,纪昊男,马立峰*.基于离散元的立式螺旋搅拌磨机介质球运动轨迹研究.金属矿山. 2025, 587(05): 80-86.

(8) 瞿铁,马立峰,宋现洲,王朝华*,张升奇,赵炎龙,纪昊男.基于DEM−CFD的立式搅拌磨机耦合仿真方法及实验研究.矿产保护与利用, 2025, 45(1): 15−22.

(9) Wang ZH, Yang GB, Sun YX, Li YX, Wu FH*. An improved bare-bones particle swarm algorithm for multi-objective optimization with application to the engineering structures. Facta Universitatis-Series Mechanical Engineering, 2024, online first.(SCI一区TOP)

(10) 吴凤和,王超世,孙迎兵,刘磊,张同庆,王朝华*.基于功能原理的Gyroid点阵结构塑性屈服强度.复合材料学报, 2024, 41(10): 5646-5656.(卓越领军期刊,EI)

(11) Tang BL, Cheng B, Song XZ, Ji HN, Li YJ,Wang ZH*. Experimental Study on the Influence of Rotational Speed on Grinding Efficiency for the Vertical Stirred Mill. Minerals.2024; 14(12):1208.(SCI)

(12) Wu FH, Wang CS,Wang ZH*, Lian H, Sun YB. Research on the load-transferred law and load-bearing performance of solid structure based on load path density, Proceedings of the iMeche, Part C: Journal of Mechanical Engineering Science, 2024, published online. Indexed 2024-11-27.(SCI)

(13) Wu FH, Lian H,Wang CS,Yang CL,Wang ZH*. Adaptive Design of Implicit Surface Lattice Structure Based on Load path, 3D Printing and Additive Manufacturing, 2024, published online.(SCI)

(14) Zhang HL, Lian H, Wang CS, Wu FH, Wang ZH*. Optimization Method for Stiffened Plate Layout in Box Structures Based on Load Paths. Applied sciences-Basel.2024, 14(19): 8842. (SCI)

(15) Li AF, Jin R, Zhao YL, Wu FH,Wang ZH*. Topology optimization of wheel spoke under fatigue tests considering the rotation characteristics of automobile wheels, Proceedings of the institution of mechanical engineers part E-Journal of Process Mechanical Engineering, 2024, Early Access. (SCI)

(16) 王朝华,连辉,吴凤和*,等.基于半解析有限元的结构载荷传递规律可视化.计量学报, 2024, 45(8): 1184-1190.

(17) 张阳,张同庆,刘磊,王栋,王朝华*,基于BCC点阵填充的控制臂结构优化,机械设计,2024,41(06): 40-46.

(18) Wu FH, Lian H, Pei GB, Guo BS,Wang ZH*, Design and optimization of variable-density lattice structure based on load paths, Facta Universitatis-Series Mechanical Engineering, 2023, 21(2), 273-292.(SCI一区TOP)

(19) Wang ZH, Zhang TQ, Zhang Y, Jiang ZP, Wu FH*.Shape Optimization Method for Wheel Rim of Automobile Wheels Based on Load Path Analysis, Proceedings of the institution of mechanical engineers part C-journal of mechanical engineering science, 2023, 237(2), 267-280. (SCI)

(20) Liu JL,Wang ZH*, Wu FH, Sun YB. Failure analysis and structural optimization for rotary mechanism of large sling based on thermal-mechanical coupling analysis, AIP Advances, 2023, 13(3), 035121. (SCI)

(21) 王朝华,吴凤和*,刘加亮,连辉.考虑损伤累积的铝合金轮毂疲劳寿命预测及试验研究.机械强度, 2023, 45(4): 970-976.

(22) Liu JL, Wang ZH*, Wu FH, Kou BF.Design and optimization of a novel multifunctional sling for super-heavy castings and forgings, AIP Advances 2022, 12(8), 085012. (SCI)

(23) Wu FH,Wang ZH*, Song DZ, Lian H. Lightweight design of control arm combining load path analysis and biological characteristics. Reports in Mechanical Engineering,2022, 3(1): 71-82.

(24) 王朝华,吴凤和*.基于传力路径分析的铝合金轮辋结构优化,第十八届中国CAE工程分析技术年会论文集,中国,厦门, 2022.11.18(会议论文)

(25) Wang ZH, Wang QG, Wu Nan, Guo BS, Wu FH*. Structural improvement of vehicle component based on the load path and load distribution analysis. International Journal of Automotive Technology. 2021. 22(3): 787-798. (SCI)

(26) 王朝华,吴凤和*,郭保苏.基于传力路径分析的结构承载性能评价与优化.制造技术与机床,2021.09: 38-42.

(27) Wang ZH, Wu N, Wang QG, Li YX, Yang QW, Wu FH*. Novel bionic design method for skeleton structures based on load path analysis. Applied sciences-Basel. 2020, 10(22): 8251. (SCI)

B.专利:

(1) 一种重型板式给料机落料收集装置,ZL202211038015.8,发明专利授权,2025.09.02

(2) 一种立式旋转自分级搅拌磨机, ZL202311073540.8,发明专利授权,2025.08.29

(3) Device and method for measuring internal load transfer law of structure, LU508044,卢森堡国际专利授权, 2025.02.20

(4) 一种矿物皮带运输机重型滚筒移运装置,ZL202410517181.9,发明专利授权,2024.06.21

(5) 一种运动构件疲劳寿命预测方法, ZL20221049698 18,发明专利授权,2024.02.29

(6) 一种立式分级搅拌磨装置. ZL202222090356.1,实用新型专利授权,2022.11.22.

(7) 用于悬臂结构的弯曲疲劳试验装置,ZL201910575223.3,发明专利授权,2022.07.15

(8) 用于增材制造的三周期极小曲面变密度点阵结构设计方法,ZL202010827391.X,发明专利授权,2022.03.15

(9) 车轮轮辋形状优化方法,ZL202011014572.7,发明专利授权,2022.03.15

(10) 一种结构仿生轻量化设计方法, ZL201810841539.8,发明专利授权,2021.05.07

(11) 仿生轮毂,ZL202030691700.6,外观专利授权,2021.04.06

(12) 一种力流导向的装备轻量化仿生方法及系统, ZL201810643879.X,发明专利授权,2020.11.06

C.软件著作权:

(1)隐式曲面点阵结构参数化建模软件V1.0,2023SR0523636,2023.02.20.

(2)齿轮参数化建模软件V1.0,2023SR0523635,2023.02.20

(3)承载结构的传力骨架提取与评价软件V1.0, 2017SR641543,2017.09.01.

D.著作

(1) 《智能制造车间与调度》.化学工业出版社 (主编)

(2) 《矿山机械与智能化技术》.机械工业出版社(参编)

(3) 《机械装备结构轻量化设计方法及应用》.燕山大学出版社(第四著作人)