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预浸纤维丝束自动搭接方法与系统 被引量:5

Prepreg Tows Auto-Splicing Method and System
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摘要 针对复合材料丝束手工搭接低效率及不稳定性的问题,在现有铺丝机基础上,研制了一套复合材料丝束自动搭接机构;在原有控制系统上增加独立模块,采用可编程控制器(Programmable logic controller,PLC)结合触摸屏的控制方式,实现各功能单元的逻辑运动及实时状态监控显示,并可对工艺参数进行设定。通过与原铺丝系统的联合调试,验证了丝束搭接系统的可行性和可靠性:丝束搭接区域能满足自动铺丝要求,大大缩短搭接时间,提高铺丝效率。 An auto-splicing apparatus of prepreg tow is designed to improve the efficiency and stability based on the fiber placement machine made before. The control system is built with the added independent modulus from the original one, and controlled with the help of programmable logic controller (PLC) and touch screen together. The logic movements of functional modulus, as well as the real-time displaying and the input of processing parameters, can be realized successfully. The validation of the feasibility and reliability of tow splicing system is completed by union debugging with the original system. It is concluded that the time of splicing is decreased significantly. Meanwhile, the quality of the splicing regions can meet the requirement of the fiber placement.
出处 《南京航空航天大学学报》 EI CAS CSCD 北大核心 2013年第2期250-254,共5页 Journal of Nanjing University of Aeronautics & Astronautics
基金 民机专项资助项目 商飞基金(SAMC11-JS-07-222)资助项目
关键词 自动铺丝 搭接机构 可编程控制器 触摸屏 fiber placement auto-splicing apparatus programmable logic controller (PLC) touch screen
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  • 1张博明,王洋,叶金蕊.自动铺放工艺的复合材料预浸带的适宜性评价方法[J].航空制造技术,2012,55(11):78-81. 被引量:10
  • 2龙国荣,熊惠玲,陈小丽,李浩春.NY9200树脂体系及其复合材料性能[J].洪都科技,1996(3):19-26. 被引量:4
  • 3房海军,涂彬.碳纤维复合材料卫星天线反射面型面精度稳定性分析[J].航天返回与遥感,2007,28(1):67-71. 被引量:17
  • 4苏辉煌.环氧预浸料的储存老化及印刷电路板的湿热老化研究[D].上海:复旦大学高分子科学系,2010.
  • 5李红卫,贺炅皓,陈虎,等.一种胶料表面粘性测量方法及专用测量系统[P].中国:CNl02661909A,2012-09-12.
  • 6Ahn K J, Seferis J C, Pelton T, et al. Analysis and characterization of prepreg tack[J]. Polymer Com- posites, 1992, 13(3): 197-206.
  • 7Dubois O, Le Cam J B, Beakou A. Experimental a- nalysis of prepreg tack[J]. Experimental Mechanics, 2010, 50(5): 599-606.
  • 8Banks R, Mouritz A P, John S, et al. Development of a new structural prepreg: Characterisation of han- dling, drape and tack properties [J]. Composite Structures, 2004, 66(1): 169-174.
  • 9Brooks J R, Platt P R. Method and apparatus to de-termine composite prepreg[P], tack: U. S. Patent 5513537, 1996-05-07.
  • 10Crossley R J, Schubel P J, Warrior N A. The exper- imental determination of prepreg tack and dynamic stiffness[J]. Composites Part A: Applied Science and Manufacturing, 2011, 43(3): 423-434.

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