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玻璃研磨机控制装置改进之研究 被引量:2

Study on Improvement of Control Device for Glass Grinding Machine
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摘要 该研究说明益昌镜厂玻璃研磨机控制装置改进与其成果.于研磨油窗玻璃外缘时,其研磨加工件脱离或停止与否,均以人工来判断,以致加工件研磨质量不一.改装原有之机器控制电路,以计数加工件研磨圈数,于达到设定之研磨圈数后发出警示讯号,作业员据此进行加工件脱离操作.经电路改装后之研磨作业,作业员的工作压力明显减轻,不仅可看管的机器数增多,且加工件良率也大幅提升,实质解决了业者生产耗时与精度不准之问题. This study describes the improvement and its results of control device for glass grinding machine (Yichang Mirror Factory). As grinding the hole periphery of oil windowpane, out or stop of work piece was controlled manual- ly, which led to artifacts of varying quality. In this study, the machine control circuit was modified to count the grinding work piece in terms of turns. If the set number of grinding turn was reached, the alarm would signal the op- erator to stop. With the grinding operation after modification of control circuit, the operator's working pressure was significantly reduced, the number of machines custody was increased accordingly, as well as the work piece yield had been dramatically improved, which really solved industry problems on consumed time of production and non-preci- sion in dimension.
作者 张炳荣
出处 《南通大学学报(自然科学版)》 CAS 2013年第4期75-77,86,共4页 Journal of Nantong University(Natural Science Edition) 
关键词 玻璃 研磨机 控制装置 计数 良率 glass grinding machine control device counts yield
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  • 1Pahl G, Beitz W. Engineering design:a systematic approach[M]. 2nd ed. Berlin:Springer-vehlag, 1995 : 139-149. 被引量:1
  • 2Maioney T J,Electricity fundamental concepts and applica-tions[M]. New York:Delmar Publishers, 1992: 152-159. 被引量:1
  • 3Miller R, Culpepper F W. Electricity And Electronics[M].2nd ed. New York : Delmar Publishers, 1991. 被引量:1
  • 4Shigley J E , Mischke C R, Budynas R G. Mechanicalengineering design [ M ]. New York : McGraw-Hill Prafes-sional,2004. 被引量:1
  • 5Bertoline G R, Wiebe E N. Foundamentals of GraphicsCommunication [ M ]. 4th ed. New York : McGraw-Hill Pro-fessional ,2004. 被引量:1

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