检测与控制研究所

检测与控制研究所

潘勤学

潘勤学



副教授

博导 硕导

专业

机械工程

办公地址

北京理工大学中关村校区1号教学楼301

100081

panqx@bit.edu.cn

个人简介与研究方向

个人简介:潘勤学,副教授,检测与控制研究所科研副所长,制造工程系党总支副书记。2010年日本香川大学获博士学位,同年入职北京理工大学任讲师,2016年晋升副教授。 2020年借调工信部装备工业一司1年,担任高档数控机床与基础制造装备国家科技重大专项管理岗位。学科方向是机械工程/智能制造工程,主要从事超声检测与控制、材料性能表征技术研究。主持国家自然基金青年、面上项目、国家重点研发计划课题、军科委基础加强重点项目课题、科工局技术基础等20余项科研项目,担任XX专项工程项目技术负责人,累计到校1558万元,年均311.6万元。获国防技术发明二等奖1项、机械工业科学技术进步二等奖1项。在Applied Surface ScienceNDT&E International等高水平期刊发表学术论文30余篇,第一发明人授权国家发明专利7项,第三发明人授权国际发明专利1项,成果转化到校经费225万元。作为核心起草人编制并获批国际标准1项、国家标准5项。获国家级一流本科课程、高校优质本科课程1项,校教学成果奖一等奖2项、二等奖3项,教育部主题案例2项。

研究方向:超声无损检测技术、残余应力检测与表征、疲劳微裂纹量化检测;

招收方向:欢迎具有机械/控制/检测/材料等背景同学报考硕士研究生。

代表性论文及研究项目

最新发表论文:

[1] Qinxue Pan*, Guangyuan Zhao, Haoshen Yu, Jiaqi Xu. Research on Stress Detection Method of Carbon Fiber Composites Based on Critical Refraction Longitudinal Wave[J]. Journal of Mechanical Engineering, 2025.

[2] Qinxue Pan*, Guangyuan Zhao, Haoshen Yu, Jiaqi Xu & Xiaoyou Zhou. Ultrasonic Measurement and Simulation Optimisation Method for Stress in Carbon Fibre Reinforced Polymer laminates based on Critically Refracted Longitudinal Waves[J]. Nondestructive Testing and Evaluation, 2025.

[3] Xinyi Yuan, Qinxue Pan, et al. Enhanced generation of quasi-static components of ultrasonic wave and its applications for stress assessment of additive manufacturing components[J]. Measurement Science and Technology, 2025, 36, 085601.

[4] Li Y, Zhou W, Huang Z, Pan Q*,et al. Flexible Ce-doped WO3 nanowire arrays with enriched oxygen vacancies for soft-packaged asymmetric supercapacitor[J]. Applied Surface Science, 2024, 655: 159616.

[5] Pan Q*, Pan R, Chang M, et al. A shape factor based ultrasonic measurement method for determination of bolt preload[J]. NDT & E International, 2020, 111: 102210.

[6] Song W Y, Xu C G, Pan Q X*, et al. The Residual Stress Relief and Deformation Control of Al Alloy Thin-Walled Antenna Components by Ultrasonic Regulation[J]. Actuators, MDPI, 2023, 12(3): 134.

[7] Yin P, Xu C, Pan Q*, et al. Study on ultrasonic regulation of the welding performance and defects of 7A52 aluminum alloy plate[J]. AIP Advances, 2022, 12(4).

[8] Lu Y, Xu C, Pan Q*, et al. Research on an ultrasonic longitudinal critically refracted wave detection method for the depth distribution of stress[J]. Metals, 2022, 12(10): 1602.(SCI)

[9] Yin P, Xu C, Pan Q*, et al. Effect of different ultrasonic power on the properties of RHA steel welded joints[J]. Materials, 2022, 15(3): 768.

[10] Song W Y, Xu C G, Pan Q X*, et al. The Residual Stress and Deformation Control of TC4 Thin-Walled Outer Ring Components by Ultrasonic Regulation[J]. Machines, 2022, 10(8): 598.

[11] Lu Y, Xu C, Pan Q*, et al. Research on Inherent Frequency and Vibration Characteristics of Sandwich Piezoelectric Ceramic Transducer[J]. Sensors, 2022, 22(23): 9431.

[12] Pan Q*, Li S, Liu Y, et al. Meso-simulation and experimental research on the mechanical behavior of an energetic explosive[J]. Coatings, 2021, 11(1): 64.

[13] Li P, Xu C, Pan Q*, et al. Denoising of lcr wave signal of residual stress for rail surface based on lifting scheme wavelet packet transform[J]. Coatings, 2021, 11(5): 496.

[14] Yin P, Xu C, Pan Q*, et al. Effect of ultrasonic field on the microstructure and mechanical properties of sand-casting AlSi7Mg0. 3 alloy[J]. Reviews on Advanced Materials Science, 2021, 60(1): 946-955.

[15] 潘勤学*, 常梅乐, 潘瑞鹏, . 螺栓轴向应力的非线性超声检测技术研究[J]. 机械工程学报, 2021, 57(22): 88-95.

[16] Pan Q*, Pan R, Shao C, et al. Research review of principles and methods for ultrasonic measurement of axial stress in bolts[J]. Chinese Journal of Mechanical Engineering, 2020, 33: 1-16.

[17] Pan Q*, Shao C, Xiao D, et al. Robotic ultrasonic measurement of residual stress in complex curved surface components[J]. Applied Bionics and Biomechanics, 2019, 2019(1): 2797896.

[18] 潘勤学*, 邵唱等. 基于形状因子的螺栓紧固力超声检测方法研究[J]. 兵工学报, 2019, 40(4): 880-888.

[19] Qinxue Pan, Guangyuan Zhao,Research on micro-crack detection technology of aluminum alloy based on ultrasonic mixing nonlinear. 2025 IEEE International Conference on Mechatronics and Automation (ICMA),Beijing, p1360-1365,2025

[20] Jiaqi Xu, Qinxue Pan, Research on Noise Reduction Algorithm for Nonlinear Ultrasonic Testing of Microcracks. 2024 IEEE International Conference on Mechatronics and Automation (ICMA),Tianjing, 2024

[21] Qinxue Pan, Haoshen Yu, Simulation and Experiment of Ultrasonic Critically Refracted Longitudinal Wave Penetration Depth of Carbon Fiber Composite. 2022 IEEE International Conference on Mechatronics and Automation (ICMA).

[22] Qinxue Pan, Sa Li, Research on Nonlinear Ultrasonic Testing Technology on Fatigue Process of Metal Materials. 2022 IEEE International Conference on Mechatronics and Automation (ICMA).

[23] Qinxue Pan, Meile Chang, Shuangyang Li, Xiaoyu Xu, Ruipeng Pan, Yunmiao Zhang. Evaluation of bolt axial stress based on nonlinear ultrasonic technique. 2020 IEEE International Conference on Mechatronics and Automation (ICMA), Beijing, p 547-51, 2020.

[24] Qinxue Pan, Xiaohao LiuLang XuYuping JiaXiaoyu XuMeile Chang. Prediction of Effective Elastic Modulus of Polymer Bonded Explosive Based on Digimat. 2019 IEEE International Conference on Mechatronics and Automation (ICMA), Tianjin, p 2407-11, 2019.

[25] Qinxue Pan, Xiaoyu Xu, Lang Xu, Yuping Jia, Xiaohao Liu, Dingguo Xiao. Microscopic Analysis of Ultrasonic Attenuation of Polymer Bonded Explosives. 2019 IEEE International Conference on Mechatronics and Automation (ICMA), Tianjin, p 2041-6, 2019.

[26] Qinxue Pan, Ruipeng Pan, Meile Chang, Chang Shao. Reliability Evaluation of Bolt Fastening Force Based on Ultrasonic Measurement Method. 2019 IEEE International Conference on Mechatronics and Automation (ICMA), Tianjin, p 2212-17, 2019.

[27] Qinxue Pan, Xiaoyu Xu, Lang Xu, Yuping Jia, Xiaohao Liu. Design of an Ultrasonic Nondestructive Testing System for Composite Materials. 2019 IEEE International Conference on Mechatronics and Automation (ICMA), Tianjin, p1621-5, 2019

代表性科研项目:

[1] 国家重点研发计划课题,多维度应力场高准确度定量表征方法研究,2022-2025350万,在研,主持。

[2] 军科委基础加强课题,无应力切削方法与技术,2021-2025320万,在研,主持。

[3] 科工局技术基础项目, 地面平台xx感知效应,2023-202660万,在研,主持。

[4] 国家自然科学基金面上项目,51975050,碳纤维材料残余应力超声检测原理和方法研究,2020-2023,结题,主持。

[5] 科工局技术基础项目,材料性能退化与疲劳微裂纹非线性超声检测技术,2020-2022290万,结题,主持;

[6] 科工局技术基础,残余应力专用测试设备校准技术研究,2020-2022102万,结题,主持。

[7] 国家自然科学基金联合基金,航天用弱刚度铝合金构件残余应力分布超声无损检测与高能声束原位调控技术,2018-2021,结题,参与;

[8] 科工局技术基础项目,螺栓紧固力超声体波检测技术,2018-2019250万,结题,主持。

[9] 国家自然科学基金青年基金,51305028,三维残余应力场无损检测原理和方法,2014-201625万,结题,主持。

[10] 北京市青年英才计划,金属构件超声法残余应力场检测技术研究,2013-201515万元,结题,主持;

[11] 科工局技术基础,火炮身管自紧应力现场测量方法与校准技术,2013-2015105万元,结题,主持。

成果及荣誉

[1] 国防发明技术奖二等奖1

[2] 机械工业科学技术进步二等奖1

[3] 制定国际标准1项,国家标准制定5

[4] 国家级一流本科课程1

[5] 北京高校优质本科课程

[6] 第七届中国国际互联网+”大学生创新创业大赛优秀指导教师奖

[7] 中国兵器工业集团兵工杯高校创新竞赛一等奖。

[8] 北京理工大学研究生优秀学位论文指导老师

[9] 北京理工大学机械与车辆学院优秀共产党员

社会职务

[1] 173重点项目总体组成员

[2] 中国合格评定国家认可委员会(CNAS)评审员

[3] 中国机械工程学会无损检测分会委员

[4] 中国计量测试学会空间计量专业委员会委员

[5] 中国机械工程学会无损检测分会超声专委会副主任委员

[6] 美国无损检测协会ASNT北京分布秘书长

[7] IEEE会员、ASNT会员