2023:
[1] 李海宾; 王成兵; 马玉豪; 江磊. 一种粗铣刀周齿分屑槽的数控磨削工艺算法, 机械科学与技术, 2023,42(09):1430-1435
[2] Yong Li, Guofu Ding, Zhihui Yang, Changjiu Xia, Lei Jiang. A grinding process method of solid end mills groove with segmentedunequal helical angles by cutting edges offset and interference. Journal of Manufacturing Processes, 102 (2023) 849- 864.
[3] Yongbing Zhou, Guofu Ding, Yuexinkai Zhang and Lei Jiang. Research on the novel hardware configuration methods of the contact R-test based on the constraint models. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. 2023, 237(11):1748-1760.
[4] 阳智麾, 李勇, 刘浩, 江磊. 螺旋槽磨削砂轮磨损轮廓模型与位姿补偿算法. 制造技术与机床, 2023(12): 40-47.
[5] 唐军, 马忠宝, 马术文, 江磊. 平行砂轮磨削球头立铣刀后刀面的轨迹算法研究. 机械设计与制造, 2023(08): 94-99.
[6] 杨德存, 江磊, 税妍, 邓亚弟, 向志杨, 文小山. 基于可换钻尖机夹钻的钛–钢复合管板钻孔工艺试验研究. 制造技术与机床, 2023(03): 149-155.
[7] 杨德存, 文小山, 邓亚弟, 向志杨, 江磊. 堆焊有钴基高温合金的薄壁衬套制造工艺. 东方汽轮机, 2023(02):45-48.
[8] Lei Jiang, Zhe Liu, Guofu Ding, Changjiu Xia. A new grinding trajectory adaptive adjustment algorithm for circular-arc end mill flank based on grinding contact zone control. Journal of Manufacturing Processes, 109(2024): 549–563.
[9] 韩雷, 郑金辉, 刘志学, 江磊, 林凤添, 朱晓鑫. 基于铣削力参数化模型的铣刀非均匀磨损状态监测方法研究. 工具技术. 2023,57(03): 120-124.
[10] 江磊, 张越新凯, 梁彬, 丁国富. 面向五轴数控加工仿真的机床运动位姿算法研究. 航空制造技术. 2023,66(05): 47-55.
2022:
[1] Y Li, G Ding, C Xia, Y Ning, L Jiang. An iterative optimization algorithm for posture and geometric parameters of grinding wheel based on cross-section sensitivity and matching constraints of solid end mills. Journal of Manufacturing Processes. 2022,79(6):705-719
[2] Yuhao Ma, Yong Li, Lei Jiang, Guofu Ding. A compensation algorithm of tool path for grinding wheel wear in solid cutting tool flank grinding. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. 2022, 236(3):245–254
[3] 王成兵; 李海宾; 江磊; 马术文. 立铣刀周齿分屑槽的砂轮磨削轨迹算法研究, 工具技术, 2022,56(04):70-74
[4] 王成兵; 熊建军; 江磊; 马术文. 钻尖直线刃后刀面的砂轮磨削轨迹算法研究, 中国机械工程, 2022,33(16):1906-1911
[5] 熊建军; 李海宾; 王成兵; 江磊. 钻尖容屑槽的砂轮磨削位姿算法研究, 工具技术, 2022,56(03):92-96
[6] 马玉豪; 江磊; 丁国富. 右旋右刃与右旋左刃钻头镜像磨削工艺算法, 工具技术,. 2022,56(06):69-73
2021:
[1] Xuwei Lai, Yongbin Zhou, Lei Jiang, Guofu Ding. A Review: Machine Tools Digital Twin Modeling And Application. 2021 26th International Conference on Automation and Computing.
[2] 唐军, 马忠宝, 马术文, 江磊. 平行砂轮磨削球头立铣刀后刀面的轨迹算法研究. 机械设计与制造, 2021,(09): 86-91.
[3] 马忠宝, 唐军, 江磊, 马术文. 平头立铣刀端齿平面型后刀面的磨削轨迹算法. 机械制造与自动化, 2021,50(03): 80-84.
[4] 赵锐, 陈思远, 江磊, 马术文. 整体式立铣刀螺旋角在机测量研究. 机械设计与制造, 2021,(06): 150-154.
[5] 唐军, 马忠宝, 宁样城, 李勇, 江磊. 整体式立铣刀端齿分屑槽的磨削轨迹算法研究. 制造技术与机床. 2021,(06): 65-70.
[6] 马玉豪, 李勇, 江磊, 丁国富. 断屑钻尖后刀面的砂轮磨削位姿算法. 中国机械工程. 2021,32(19): 2321-2325+2330.
[7] 马玉豪, 宁样城, 丁国富, 江磊. 基于砂轮磨损参数的立铣刀后刀面磨削轨迹补偿算法. 工具技术. 2021,55(03): 47-51.
[8] 彭炳康, 吕国艳, 江磊, 张历记. 一种非接触式R-test测量仪球心坐标计算方法. 机械设计与制造. 2021,(03): 165-167+171.
[9] 马忠宝, 唐军, 江磊, 马术文. 木工成形铣刀后刀面磨削轨迹算法研究. 工具技术. 工具技术. 2021,55(01) : 54-57.
[10] 罗豪, 余杭卓, 江磊, 宋小欣. 侧铣表面点位轮廓误差预测方法. 机械设计与制造. 2021,(01): 80-83.
[11] 肖通, 江海凡, 丁国富, 江磊, 马术文. 五轴磨床数字孪生建模与监控研究. 系统仿真学报. 2021,33(12): 2880-2890.
2020:
[1] 罗斌, 陈思远, 程雪锋, 丁国富. 球头立铣刀端刃间隙磨削轨迹的算法. 组合机床, 2020, 01:34-37.
[2] 彭炳康, 祝帅, 江磊, 刘健, 张历记. 非接触式R-test测量仪结构参数优化方法研究. 机床与液压, 2020, 03:85-89.
[3] 彭炳康, 赵淑军, 江磊, 朱绍维. 接触式R-test测量仪的标定和球心坐标计算方法研究. 机械科学与技术, 2020,39(09): 1385-1389.
[4] Wenping Mou, Shaowei Zhu, Menghao Zhu, Lei Han, Lei Jiang. A Prediction Model of Cutting Force about Ball End Milling for Sculptured Surface. Mathematical Problems in Engineering Volume 2020, Article ID 1389718
[5] Lei Jiang, Bingkang Peng, Guofu Ding, Shengfeng Qin, Jian Zhang, Yong Li1. Optimization method for systematically improving non-contact R test accuracy. The International Journal of Advanced Manufacturing Technology, 2020,107(6):1697–1711.
[6] Hangzhuo Yu , Lei Jiang , Jindong Wang, Shengfeng Qin, Guofu Ding. Prediction of machining accuracy based on geometric error estimation of tool rotation profile in five-axis multi-layer flank milling process. J Mechanical Engineering Science , 2020,234(11):2160–2177
[7] 祝孟豪, 韩雷, 江磊, 马术文. 球头铣刀曲面加工的铣削接触区域建模. 组合机床与自动化加工技术, 2020,09:20-24.
[8] 余杭卓, 秦圣峰, 丁国富, 江磊, 梁红琴. 侧铣加工刀具回转轮廓误差预测技术研究. 中国机械工程, 2020, 31(3): 306-313
[9] 余杭卓, 秦圣峰, 丁国富, 江磊, 付建林. 基于刀具跳动误差的五轴侧铣加工精度预测模型构建. 计算机集成制造系统, 2020,26(12): 3359-3367
2019:
[1] Lei Jiang, Yong Li, Lei Han, Yisheng Zou, Guofu Ding, Shengfeng Qin. A workpiece registration and localization adjustment method with contact inspection under multi-tolerance conditions. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2019, 233(6): 1653-1662.
[2] Lei Han, Xuefeng Cheng, Lei Jiang, Rong Li, Guofu Ding, Shengfeng Qin. Research on parametric modeling and grinding methods of bottom edge of toroid-shaped end-milling cutter. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2019, 233(1): 31-43.
[3] Hangzhuo Yu, Shengfeng Qin, Guofu Ding, Lei Jiang, Lei Han. Integration of tool error identification and machining accuracy prediction into machining compensation in flank milling. The International Journal of Advanced Manufacturing Technology, 2019, 102(9-12): 3121-3134.
[4] 唐晓, 江磊, 李乐, 余杭卓, 丁国富. 一种采用综合比较方式的后置处理转角优化算法. 机床与液压, 2019, 47(04) :106-109.
[5] 张历记, 江磊, 朱绍维, 唐晓, 彭炳康. 五轴数控机床旋转轴安装误差测量辨识方法. 机械制造与自动化, 2019, 48(2): 18-22.
[6] 梁爽, 唐晓, 江磊, 丁国富. GA-BP神经网络预测钛合金表面粗糙度. 机械设计与制造, 2019(08): 265-268
[7] 董洪亮, 张剑, 江磊, 宋小欣. 基于设计任务聚合相似度的学习曲线建模方法. 机械制造与自动化, 2019, (2): 94-97.
[8] 赵锐, 肖通, 江磊, 马术文. 基于 PMAC 的开放式五轴数控实验平台研制. 机械, 2019, 46(3): 1-5.
[9] 刘蕾, 陈雪梅, 易元, 宋忠超, 黄庆奕, 江磊. 一种针对蜂窝芯外形曲面特征的测量方法. 中国测试, 2019, (7): 56-60.
[10] 彭炳康, 江磊, 刘健, 张历记, 朱绍维. 非接触式 R-test 测量仪的现场标定方法研究. 制造技术与机床, 2019, (10): 103-106.
[11] 江磊; 李勇; 韩雷; 邹益胜; 丁国富; 秦圣峰. A Workpiece Registration and Localization Adjustment Method with Contact Inspection under Multi-tolerance Conditions. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. 2019,233(6):1653–1662.
[12] 彭炳康; 江磊; 刘健; 张历记; 朱绍维. 非接触式R-test测量仪的现场标定方法研究. 制造技术与机床. 2019(10): 103-106.
[13] 唐晓; 江磊; 李乐; 余杭卓; 丁国富. 一种采用综合比较方式的后置处理转角优化算法. 机床与液压. 2019,47(04): 99-102.
[14] 张历记; 江磊; 朱绍维; 唐晓; 彭炳康. 五轴数控机床旋转轴安装误差测量辨识方法. 机械制造与自动化. 2019,48(02): 18-22.
[15] 赵锐, 肖通, 江磊, 马术文. 基于 PMAC 的开放式五轴数控实验平台研制. 机械, 2019, 46(3): 1-5.
2018:
[1] 李乐,张潇然,江磊,丁国富. 五轴工具磨床多工步加工后置求解方法. 机械设计与制造, 2018(S2): 103-106.
[2] 李乐, 唐晓, 程雪锋, 江磊, 丁国富. 立铣刀磨削加工中进退刀方法研究. 组合机床与自动化加工技术, 2018, (5): 154-156+160.
[3] Lei Jiang, Yong Li, Yisheng Zou, Kun Tang, Yulong Fu, and Shuwen Ma. Posture adjustment of workpiece based on stepwise matching by self-adaptive differential evolution algorithm. Mechanical Sciences, 2018, 9(2): 267-276.
[4] Han L, Zou YS, Ding GF, Zhu MH, Jiang L, Qin SF and Liang HQ. Development of an online tool condition monitoring system for NC machining based on spindle power signals[C]. 2018 24th IEEE International Conference on Automation and Computing (ICAC), IEEE, 2018
[5] 李勇, 江磊, 马术文, 刘蕾, 陈雪梅. 薄壁盒形件真空吸附装夹变形的计算方法研究.机械制造与自动化, 2018, 47(03): 49-52+62.
2017:
[1] 李乐, 程雪锋, 尹福兰, 杨欣雨, 江磊. 一种五轴工具磨床通用后置求解方法. 组合机床与自动化加工技术, 2017, (7): 14-17.
[2] 李勇, 余杭卓, 江磊, 肖海, 方丁, 蒋昊雨. 一种碳纤维层压板铣削变形仿真分析方法. 组合机床与自动化加工技术, 2017(8):134-137.
2014:
[1] 江磊, 李庄, 李相标, 周良明, 段昌德, 丁国富. 无限旋转C轴工作台结构的五轴机床后置转角求解. 中国机械工程, 2014.8, 25(16): 2178-2183.
[2] 江磊, 李相标, 马术文, 周良明, 李其勤, 段昌德. 基于“一面两孔”特征的点云配准方法. 西南交通大学学报, 2014, 49(6): 1090-1096.
[3] Guofu Ding, Shaowei Zhu, Elssawi Yahya, Lei Jiang, Shuwen Ma, Kaiyin Yan. Prediction of machining accuracy based on a geometric error model in five-axis peripheral milling process. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2014, 228(10): 1226-1236.
2013:
[1] 胡命华, 江磊, 丁国富, 马术文, 阎开印. 一种五轴侧铣加工进给速度的优化方法. 组合机床与自动化加工技术, 2013, (09): 77-79+84.
[2] Jiang L, Elssawi Y, Ding GF*, Hu MH, Qin SF. The research of surface waviness control method for 5-axis flank milling. International. Journal of Advanced Manufacturing Technology. 2013, 69(1-4): 835-847.
2012:
[3] Zhu S W, Ding G F*, Qin S F, Jiang L, Li Z, Yan K Y. Integrated geometric error modeling, identification and compensation of CNC machine tools. International Journal of Machine Tools and Manufacture, 2012, 52(1): 24-29.
[4] Jiang L, Ding GF*, Li Z, Zhu SW, Qin SF. Geometric error model and measuring method based on worktable for five axis machine tools. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. 2012, 227(1): 32-44.
[5] Ding G F, Jiang L, Zhu S W*, Ma S W. A new method for identifying geometric errors inherent to revolving axle of multi-axis machine tool. Materials Science Forum, 2012, (697-698): 262-267.
[6] Ding G F, Jiang L, Qin S F*, Zhu S W, Ma S W. Computer-integrated manufacturing system for tube bending. International Journal of Computer Integrated Manufacturing, 2012, 25(11): 1059-1068.
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