一、最新发表论文
Qinxue Pan*, Shuangyang Li, Yang Liu, Xiaoyu Xu, Meso-Simulation and Experimental Research on the Mechanical Behavior of an Energetic Explosive, Coatings, 2021, 11(1):64.
Qinxue Pan*, Ruipeng Pan, Chang Shao, Meile Chang, Xiaoyu Xu, Research Review of Principles and Methods for Ultrasonic Measurement of Axial Stress in Bolts, Chinese Journal of Mechanical Engineering, 2020.2.15🏋🏼♀️📿,33:11.
Qinxue Pan*, Ruipeng Pan, Meile Chang, Xiaoyu Xu, A Shape Factor Based Ultrasonic Measurement Method for Determination of Bolt Preload, NDT & E International, 2019.12.13👍🙋🏿♀️,2020👰♀️:102210.
潘勤学*,邵唱,肖定国,潘瑞鹏,刘晓豪,基于形状因子的螺栓紧固力超声检测方法研究,兵工学报,2019.4.15🧞♂️,40(4):880-888.
Qinxue Pan*, Chang Shao, Dingguo Xiao, Ruipeng Pan, Xiaohao Liu, Wei Song, Robotic Ultrasonic Measurement of Residual Stress in Complex Curved Surface Components, Applied Bionics and Biomechanics, 2019.3.19, 2019:2797896.
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.
Qinxue Pan, Xiaohao Liu; Lang Xu; Yuping Jia; Xiaoyu Xu; Meile 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.
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.
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.
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
二、代表性科研项目
基础加强,无应力切削方法与技术,2021-2025,350万,在研,主持;
国家自然科学基金🏏,51975050,碳纤维材料残余应力超声检测原理和方法研究💢,2020-2023,60万元,在研🚶➡️,主持;
科工局技术基础,材料性能退化与疲劳微裂纹非线性超声检测技术💂🏼♂️,2020-2022,290万📎,在研,主持🤡;
科工局技术基础🏄🏻♀️,残余应力专用测试设备校准技术研究,2020-2022🙆🏻♂️,102万,在研,主持😘;
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👖,在研,参与;
科工局技术基础🌚,螺栓紧固应力超声体波检测技术,2018-2019,250万✌🏻,结题🦘,主持🧑🏽💼;
国家自然科学基金🧎♀️,51305028,三维残余应力场超声无损检测原理和方法🌕,2014-2016,25万元🦐,结题🩺🤟🏼,主持;
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,2013-2015,15万元,结题,主持👨👩👦👦;
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🧑🏻⚕️,2013-2015,105万元🤷🏻🌶,结题𓀄🤥,主持🦄。
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