重型装备及其智能化研究所

江连运

发布时间:2021年08月18日 15:17    作者:    来源:    点击率:

江连运

职 称:教授,博导、硕导,山西省青年学术带头人

职 务:重型装备及其智能化研究所党支部书记、所长

电子邮件:jiangly2023@126.com

教育背景

2011.09—2015.05,东北大学,工学博士

2008.09—2011.07,英国365平台,工学硕士

2004.09—2008.07,英国365平台,工学学士

工作履历

2022.12—至今,英国365平台,英国上市365平台,教授

2017.12—2022.12,英国365平台,英国上市365平台,副教授

2015.05—2017.12,英国365平台,英国上市365平台,讲师

教学工作

1)任教课程

本科生课程:机械工程分析方法、轧钢机械设计

研究生课程:优化理论与方法

科研工作

1)研究领域

高端冶金装备及其智能化,金属复合材料成形工艺及理论,工业机器人

2)承担项目

(1)国家自然科学基金(青年基金),厚规格高强船板蛇形/差温协同轧制非均匀变形机理研究,主持。

(2)国家自然科学基金(面上基金),金属板材蛇形/差温轧制复合接触行为与温控-形变耦合机理研究,主持。

(3)中央引导地方科技发展项目(自由探索),金属板材蛇形/差温短流程轧制复合工艺与变形行为研究,主持。

(4)山西省科技重大专项课题,智能化高强宽厚板精整装备检测及控制技术和工业机器人软件系统开发,主持。

(5)山西省科技重大专项课题,基于高可靠性服役条件的大直径复杂结构机车轮关键技术研究,50万元,主持。

(6)国家重点实验室开放课题,基于数字孪生的多场耦合智慧冷却系统的构建与应用,6万元,主持。

(7)企业合作项目,4300mm宽厚板产线精密热分段液压滚动剪切机成套技术开发,主持。

(8)企业合作项目,25MN压力矫平机开发设计,主持。

(9)山西省研究生优秀创新项目,变摩擦作用下蛇形/差温协同轧制力能参数建模分析与研究,指导教师。

(10)山西省研究生优秀创新项目,双层金属板材轧制复合应变建模分析与研究,指导教师。

3)代表性成果

论文:

(1) Lian-yun Jiang, et al. Modeling and analysis of deformation characteristics for the two-layered metal clad plate produced by asymmetric rolling [J], Journal of Materials Research and Technology, 2023.

(2) Lian-yun Jiang, et al. Modeling of layer thickness and strain for the two-layered metal clad plate rolling with the different roll diameters [J], Journal of Materials Research and Technology, 2023.

(3)Lian-yun Jiang, et al. The curvature mathematical modeling of the double‑layer metal clad plate by the asynchronous rolling [J],International Journal of Advanced Manufacturing Technology, 2023

(4)Lian-yun Jiang, et al. The theoretical model of the effective strain establishment for the plate during the snake rolling [J]. International Journal of Advanced Manufacturing Technology, 2023.

(5) Lian-yun Jiang, et al. A mathematical model to predict thickness ratio for the two‑layered metal clad plate produced by asymmetric rolling [J].International Journal of Advanced Manufacturing Technology,

(6)Lian-yun Jiang, et al. The curvature modeling for the double layered clad plate by asymmetric rolling with different diameters [J]. The International Journal of Advanced Manufacturing Technology, 2024.

(7) Lian-yun Jiang, et al. Hot rolled strip re-reddening temperature changing law for ultra-fast cooling [J]. Journal of Iron and Steel Research, International, 2015. (SCI)

(8)Lian-yun Jiang, et al. Hot rolled strip re-reddening temperature changing law for late ultra fast cooling in a CSP Line [J]. Metallurgical Research and Technology, 2015. (SCI)

(9) Lian-yun Jiang, et al. Thicker steel plate shape- changing law and control method during the snake rolling process [J]. Metallurgical Research and Technology, 2016. (SCI)

(10)Qing-Cheng Meng,Lian-yun Jiang, et al. The analytic study on the heavy steel plate snake rolling with the different roll diameters [J]. Metallurgical Research and Technology, 2019. (SCI,通讯作者)

(11) Lian-yun Jiang, et al. Themechanical parameters modeling of heavy steel plate snake/gradient temperature rolling with the same roll diameters [J]. Metallurgical Research and Technology, 2020. (SCI)

(12) Lian-yun Jiang, et al. The steel plate curvature analytic modeling for the snake rolling with the same roll diameters [J].Metallurgical Research and Technology, 2021. (SCI)

(13) Lian-yun Jiang, et al. Analytical modeling and evaluation of plate curvature in the snake rolling of heavy aluminum alloy with different deformation zones [J]. Rare Metal Materials and Engineering, 2021. (SCI)

(14) Lian-yun Jiang,et al. The cooling uniformity and optimal plate curvature achieving method during ultra-fast cooling in HSM [J], Materials and Technology, 2021. (SCI)

(15)Lian-yun Jiang, et al. Calculation and analysis of rolling force during aluminum alloy thick plate snake/gradient temperature rolling with different roll diameters [J]. International Journal of Advanced Manufacturing Technology, 2021. (SCI)

(16)Lian-yun Jiang, et al. The central strain analytical modeling and analysis for the plate rolling process[J], International Journal of Advanced Manufacturing Technology, 2021. (SCI)

(17)Lian-yun Jiang, et al. The central deformation calculation and analysis of the heavy steel plate for the gradient temperature rolling [J],Metallurgical Research and Technology 2022.(SCI)

(18)江连运,等.基于流函数法的铝合金板材异步轧制应变计算数学模型[J],稀有金属材料与工程,2022. (SCI)

已授权国家发明专利:

(1)江连运,等.一种用于热轧板带钢高压水除鳞装置,ZL201610826696.2,2018-03-27.

(2)江连运,等.一种用于径向锻造操作机的传动与制动装置,ZL201711062322.9,2019-05-28.

(3)江连运,等.一种用于热轧无缝钢管除磷装置,ZL201811087319.7,2020-04-10.

(4)江连运,等.一种厚钢板同径异速蛇形差温协同轧制力能参数计算方法,201911347746.9,2021-03-23.

(5)江连运,等.一种厚钢板同径异速蛇形轧制力能参数的计算方法,ZL201810047123.9,2021-04-06.

(6)江连运,等.一种采用新型工作原理及传动方式的金属板材原位翻板机,ZL202010014740.6,2021-05-14.

(7)江连运,等.一种求解厚钢板同速异径蛇形轧制力能参数的方法,ZL201910066452.2,2022-04-15.

(8)江连运,等.一种厚板同径异速蛇形轧制轧后弯曲曲率计算模型及方法,ZL202010015982.7,2022-05-13.

(9)江连运,等.一种用于提高热轧板带钢变形均匀性的蛇形差温轧制方法,ZL202010541103.4,2022-04-26.

(10) 江连运,等.一种“以窄代宽”厚板实验轧机,ZL202010656456.9,2022-04-26.

(11)江连运,等.一种求解铝合金厚板在同速异径蛇形轧制下曲率的方法,202110170315.0,2022-08-16.

(12)江连运,等.一种实现宽厚板自动压力矫平的方法,202011342349.5,2022-12-02.

(13)江连运,等.垫板自动放置装置及基于此装置的宽厚板压力矫平方法,202110006241.7,2023-01-06.

(14)江连运,等.一种用于热轧H型钢高压水除鳞装置,202011047356.2,2023-01-24.

软件著作权:

(1)江连运,等.板带材非对称轧制轧后弯曲曲率半径计算系统V1.0,2020SR1073485,2020-09-10.

(2)江连运,等.板带材蛇形/差温轧制力计算系统V1.0,2020SR1073513,2020-09-10.

(3)江连运,等.同速异径蛇形轧制轧后弯曲曲率半径计算系统V1.0,2021SR0023750,2021-01-06.

(4)江连运,等.板带材同速异径蛇形/差温轧制力能参数计算系统V1.0,2021SR0023749,2021-01-06.

获奖:

(1)山西省技术发明一等奖,特宽特厚高强钢板压力矫平成套技术装备开发及应用,排名2.

(2)中国机械工业科学技术一等奖,高品质宽厚钢板自动压力矫平成套技术装备开发及应用,排名6

(3)教育部高等学校科学研究优秀成果奖科技进步奖二等奖,4300mm宽厚板轧制技术与成套设备研制及应用,排名7.