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三维陶瓷零件低温沉积过程挤压力建模及自适应控制

李淑娟 包惠同 张恒

李淑娟, 包惠同, 张恒. 三维陶瓷零件低温沉积过程挤压力建模及自适应控制[J]. 机械科学与技术, 2016, 35(2): 253-259. doi: 10.13433/j.cnki.1003-8728.2016.0217
引用本文: 李淑娟, 包惠同, 张恒. 三维陶瓷零件低温沉积过程挤压力建模及自适应控制[J]. 机械科学与技术, 2016, 35(2): 253-259. doi: 10.13433/j.cnki.1003-8728.2016.0217
Li Shujuan, Bao Huitong, Zhang Heng. Modeling for Extrusion Force and Adaptive Control in the Freeze Deposition Process of Three Dimensional Ceramic Components[J]. Mechanical Science and Technology for Aerospace Engineering, 2016, 35(2): 253-259. doi: 10.13433/j.cnki.1003-8728.2016.0217
Citation: Li Shujuan, Bao Huitong, Zhang Heng. Modeling for Extrusion Force and Adaptive Control in the Freeze Deposition Process of Three Dimensional Ceramic Components[J]. Mechanical Science and Technology for Aerospace Engineering, 2016, 35(2): 253-259. doi: 10.13433/j.cnki.1003-8728.2016.0217

三维陶瓷零件低温沉积过程挤压力建模及自适应控制

doi: 10.13433/j.cnki.1003-8728.2016.0217
基金项目: 

国家973项目(2009CB724406)与陕西省教育厅基金项目(13JS071)资助

详细信息
    作者简介:

    李淑娟(1968-),教授,博士,博士生导师,研究方向为直接数字制造技术,shujuanli2009@gmail.com

Modeling for Extrusion Force and Adaptive Control in the Freeze Deposition Process of Three Dimensional Ceramic Components

  • 摘要: 在CNC机床上开发出一种新的三维陶瓷零件增材制造装置,在低于材料凝固点的温度下,将高固相膏体状陶瓷进行分层沉积成型,形成三维陶瓷材料零件。但在该三维零件沉积成型过程中,配置好的Al2O3材料由于挤压作用,会产生结块。当结块分解,膏体中气泡释放以及储料器中材料不断减少时,导致沉积过程的挤压力不断变化,使得成型过程不稳定,成形零件质量差。在分析三维陶瓷零件沉积成型过程的干扰因素的基础上,根据试验,建立了沉积过程中挤压力的动态模型,采用递推最小二乘方法进行系统辨识,完成了自适应挤压力控制器的设计,并进行了低温沉积控制过程仿真和实验。结果表明:该动态模型可以有效的描述陶瓷零件沉积过程的挤压力变化,所设计的自适应控制器可以有效的跟踪不同种类的参考挤压力的变化,实现稳定的三维陶瓷零件沉积过程。
  • [1] 康永,柴秀娟.陶瓷成型加工技术新进展[J].现代技术陶瓷,2010,31(4):49-52 Kang Y, Chai X J. The new progress of ceramics contour machining technology[J]. Advanced Ceramics, 2010,31(4):49-52(in Chinese)
    [2] 谢志鹏,杨金龙,黄勇.陶瓷注射成型的研究[J].硅酸盐学报,1998,26(3):324-330 Xie Z P, Yang J L, Huang Y. Study on ceramic injection molding[J]. Journal of the Chinese Ceramic Society, 1998,26(3):324-330(in Chinese)
    [3] 芶吉华,彭颖红,阮雪榆.快速成形技术及其工艺分析[J].机械科学与技术,2000,19(1):102-105 Gou J H, Peng Y H, Ruan X Y. Rapid prototyping technology and its process analysis[J]. Mechanical Science and Technology, 2000,19(1):102-105(in Chinese)
    [4] Sui G H, Leu M C. Thermal analysis of ice walls built by rapid freeze prototyping[J]. Journal of Manufacturing Science and Engineering, 2003,125(4):824-834
    [5] Huang T S, Mason M S, Hilmas G E, et al. Freeze-form extrusion fabrication of ceramic parts[J]. Virtual and Physical Prototyping, 2006,1(2):93-100
    [6] Mason M S, Huang T S, Landers R G, et al. Freeform extrusion of high solids loading ceramic slurries, part I:extrusion process modeling[C]//Seventeenth Annual Solid Freeform Fabrication Symposium, September 14-162006, Rolla, Missouri. Rolla:University of Missouri, 2006:316-328
    [7] Bryant F D, Sui G H, Leu M C. A study on effects of process parameters in rapid freeze prototyping[J]. Rapid Prototyping Journal, 2003,9(1):19-23
    [8] Prinz F B, Weiss L E. Novel applications and implementa-tions of shape deposition manufacturing[J]. Naval Research Reviews, 1998,50:19-26
    [9] 钟山,杨永强.快速成形数据处理的分层算法[J].计算机集成制造系统,2011,17(6):1195-1200 Zhong S, Yang Y Q. Slicing algorithm for rapid prototyping data processing[J]. Computer Integrated Manufacturing Systems, 2011,17(6):1195-1200(in Chinese)
    [10] Mason M S, Huang T S, Landers R G, et al. Aqueous-based extrusion of high solids loading ceramic pastes:process modeling and control[J]. Journal of Materials Processing Technology, 2009,209(6):2946-2957
    [11] Costin M H, Taylor P A, Wright J D. On the dynamics and control of a plasticating extruder[J]. Polymer Engineering & Science, 1982,22(17):1095-1106
    [12] Previdi F, Savaresi S M, Panarotto A. Design of a feedback control system for real-time control of flow in a single-screw extruder[J]. Control Engineering Practice, 2006,14(9):1111-1121
    [13] Huang T S, Mason M S, Zhao X Y, et al. Aqueous-based freeze-form extrusion fabrication of alumina components[J]. Rapid Prototyping Journal, 2009,15(2):88-95
    [14] 方崇智,萧德云.过程辨识[M].北京:清华大学出版社,1988 Fang C Z, Xiao D Y. Process identification[M]. Beijing:Tsinghua University Press, 1988(in Chinese)
    [15] 韩曾晋.自适应控制[M].北京:清华大学出版社,1999 Han Z J. Adaptive control[J]. Beijing:Tsinghua University Press, 1999(in Chinese)
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出版历程
  • 收稿日期:  2014-03-10
  • 刊出日期:  2016-02-05

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