[1] 路冬,李剑峰,孙杰,等. 航空框类零件加工动态夹紧力确定有限元分析[J]. 山东大学学报,2007,37(1):19-22. LU Dong,LI Jianfeng,SUN Jie,et al. Finite element analysis for the verification of the dynamic clamping force during machining of the aero frame shape workpiece[J]. Journal of Shandong University,2007,37(1):19-22. [2] 秦国华,张卫红,万敏. 基于线性规划的工件稳定性建模及其应用[J]. 机械工程学报,2005,41(9):33-37,41. QIN Guohua,ZHANG Weihong,WAN Min. Modeling and application of workpiece stability based on the linear programming method[J]. Chinese Journal of Mechanical Engineering,2005,41(9):33-37,41. [3] HSIAO S W. Concurrent design method for developing a new product[J]. International Journal of Industrial Ergonomics,2002,29(1):41-55. [4] 朱耀祥,融亦鸣,朱剑,等. 计算机辅助组合夹具设计系统的研究[J]. 机械工程学报,1994,30(5):40-46. ZHU Yaoxiang,RONG Yiming,ZHU Jian,et al. Study on computer aided modular fixture design system[J]. Chinese Journal of Mechanical Engineering,1994,30(5):40-46. [5] 刘永喜,乔立红. 基于成组技术的夹具快速配置研究[J]. 成组技术与生产现代化,2007,24(1):29-32. LU Yongxi,QIAO Lihong. Study of fixture rapid configuration based on group technology[J]. Group Technology & Production Modernization,2007,24(1):29-32. [6] 张胜文,李霞,吴春桥. 基于范例的推理在管件焊接柔性夹具设计系统中的应用研究[J]. 中国机械工程,2011,22(9):1071-1075. ZHANG Shengwen,LI Xia,WU Chunqiao. Application and study of CBR in tube welding flexible fixture design[J]. China Mechanical Engineering,2011,22(9):1071-1075. [7] 罗晨,王欣,苏春,等. 基于案例推理的夹具设计案例表示与检索[J]. 机械工程学报,2015,51(7):136-143. LUO Chen,WANG Xin,SU Chun,et al. Case representation and retrieval under a case-based reasoning system for fixture design[J]. Chinese Journal of Mechanical Engineering,2015,51(7):136-143. [8] NEE A Y C,KUMAR A S. A framework for an object/rule-based automated fixture design system[J]. Annals of CIRP,1991,9(5):3487-3497. [9] LIU W J,HUANG Y Q,CHANG W. A study on modular fixture design with intelligent selection of elements and interactive assembly[J]. Journal of Harbin Institute of Technology,1996,E3(4):45-48. [10] 万能,苟园捷,莫蓉. 基于智能元件的柔性夹具设计新方法(1)[J]. 计算机集成制造系统,2012,18(11):2354-2361. WAN Neng,GOU Yuanjie,MO Rong. New method for flexible fixture design based on smart fixture unit (1)[J]. Computer Integrated Manufacturing System,2012,18(11):2354-2361. [11] 万能,苟园捷,莫蓉. 基于智能元件的柔性夹具设计新方法(2)[J]. 计算机集成制造系统,2012,18(11):2362-2369. WAN Neng,GOU Yuanjie,MO Rong. New method for flexible fixture design based on smart fixture unit (2)[J]. Computer Integrated Manufacturing System,2012,18(11):2362-2369. [12] 高博,阎艳,丁洪生,等. 基于知识组件的夹具元件快速设计研究[J]. 北京理工大学学报,2013,33(10):1021-1026. GAO Bo,YAN Yan,DING Hongsheng,et al. Research on rapid design of fixture parts based on knowledge components[J]. Transactions of Beijing Institute of Technology,2013,33(10):1021-1026. [13] 朱耀祥,融亦鸣. 柔性夹具与计算机辅助夹具设计技术的进展[J]. 制造技术与机床,2000(8):5-8. ZHU Yaoxiang,RONG Yiming. Development of flexible fixture and computer aided fixture design technology[J]. Manufacturing Technology & Machine Tool,2000(8):5-8. [14] WANG Q,LIAO W H. Application and development of case-based reasoning in fixture design[J]. Journal of Southeast University,2002,20(2):170-175. [15] 刘金山,廖文和,张素敏,等. 基于零件特征关注度的夹具实例相似性检索方法[J]. 计算机辅助设计与图形学学报,2007,19(10):1303-1307,1314. LIU Jinshan,LIAO Wenhe,ZHANG Sumin,et al. Research on feature attention-driven fixture case retrieval[J]. Journal of Computer-Aided Design & Computer Graphics,2007,19(10):1303-1307,1314. [16] CICIRELLO V A,REGLI W C. An approach to a feature-based comparison of solid models of machined parts[J]. Artificial Intelligence for Engineering Design,Analysis,and Manufacturing,2002,16(5):385-399. [17] ELINSON A,NAU D S,REGLI W C. Feature-based similarity assessment of solid models[C]. Proceedings of the Fourth ACM/SIGGRAPH Symposium on Solid Modeling & Applications,Atlanta,GA,1997:297-310. [18] 黎荣,王金诺. 基于UG的3D模型相似性评价技术研究[J]. 计算机工程与应用,2006,42(36):86-88,175. LI Rong,WANG Jinnuo. Study of 3D models' similarity assessment based on UG[J]. Computer Engineering and Applications,2006,42(36):86-88,175. [19] 张欣,莫蓉,宫中伟,等. CAD模型自动语义标注[J]. 计算机辅助设计与图形学学报,2010,22(12):2162-2167. ZHANG Xin,MO Rong,GONG Zhongwei,et al. Automatic semantic tagging of cad models for retrieval[J]. Journal of Computer-Aided Design & Computer Graphics,2010,22(12):2162-2167. [20] 李先通,李建中,高宏. 一种高效频繁子图挖掘算法[J]. 软件学报,2007,18(10):2469-2480. LI Xiantong,LI Jianzhong,GAO Hong. An efficient frequent subgraph mining algorithm[J]. Journal of Software,2007,18(10):2469-2480. [21] QIN G H,ZHANG W H,WAN M. A machining dimension-based approach to locating scheme design[J]. ASME Journal of Manufacturing Science and Engineering,2008,130(5):0510101-0510108. [22] QIN G H,YE H C,RONG Y M. A unified point-by-point planning algorithm of machining fixture layout for complex workpiece[J]. International Journal of Production Research,2014,52(5):1351-1362. [23] 秦国华,吴志斌,叶海潮,等. 基于层次分析法与定位确定性的工件定位方案规划算法[J]. 机械工程学报,2016,52(1):193-203. QIN Guohua,WU Zhibin,YE Haichao,et al. Design algorithm of workpiece locating scheme based on analytical hierarchy process and locating determination[J]. Chinese Journal of Mechanical Engineering,2016,52(1):193-203. [24] 秦国华,孙烁,王华敏,等. 基于工件稳定性的全区域夹紧力变向迭代规划算法[J]. 兵工学报,2016,37(9):1700-1707. QIN Guohua,SUN Shuo,WANG Huamin,et al. A reverse direction iterative planning algorithm of clamping forces in entire active region based on workpiece stability[J]. Acta Armamentarii,2016,37(9):1700-1707. [25] 秦国华,王华敏,叶海潮,等. 基于力的存在性与可行性的夹紧力变向增量递减规划算法[J]. 机械工程学报,2016,52(11):72-79. QIN Guohua,WANG Huamin,YE Haichao,et al. Planning algorithm of clamping forces for workpiece fixturing scheme based on existence and feasibility of forces[J]. Journal of Mechanical Engineering,2016,52(11):72-79. [26] 秦国华,王子琨,吴竹溪,等. 基于表面网格离散化与遗传算法的复杂工件装夹布局规划方法[J]. 机械工程学报,2016,52(13):195-203. QIN Guohua,WANG Zikun,WU Zhuxi,et al. A planning method of fixturing layout for complex workpieces based on surface discretization and genetic algorithm[J]. Journal of Mechanical Engineering,2016,52(13):195-203. |