Implementation of 4 axes digital read out(DRO) as an embedded system for machine tools

Muzie Hikmah, Arko Djajadi, M. Sinaga
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引用次数: 2

Abstract

This paper is concerned with the design and implementation of an embedded system for automated reading of axes positions in machine tools. The system is known as DRO (Digital Read Out). Many workshops in industries still use manual machine tools such as lathe and milling machine to machining workpieces. The accuracy of such manual machine tools depends much on the reading accuracy of the operator operating them. As its consequence, the quality of the final workpieces decreases as operator makes accumulated mistakes in reading the axis. This problem can be reduced by using digital read out (DRO), that results in a more accurate and faster axes reading for a better and faster workpieces machining. In this paper, 4 axes DRO is designed using seven segment display. The 4 axes consist of 6 digits for x, y, z axis respectively, and 4 digits for the spindle speed. Seven-segment of 1 inch size for high visibility is used and is driven with some integrated circuits such as BCD to seven segment decoder and ULN2003 transistor. A multiplexing technique is selected to controls the display system. The embedded control is implemented in a microcontroller Atmega128. The novelty lies in the low cost, good accuracy, and is designed with embedded system design approach in mechatronics.
机床四轴数字读出(DRO)嵌入式系统的实现
本文研究了一种用于机床轴位自动读取的嵌入式系统的设计与实现。该系统被称为DRO(数字读出)。许多工业车间仍然使用手动机床,如车床和铣床来加工工件。这种手动机床的精度在很大程度上取决于操作它们的操作员的读数精度。其结果是,由于操作者在读轴过程中积累了错误,最终工件的质量下降。这个问题可以通过使用数字读出(DRO)来减少,从而获得更准确和更快的轴读数,从而实现更好和更快的工件加工。本文设计了采用七段显示的四轴DRO。4个轴分别由6位数字表示x、y、z轴,4位数字表示主轴转速。采用1英寸尺寸的7段高可视性,并采用BCD到7段解码器和ULN2003晶体管等集成电路驱动。采用多路复用技术控制显示系统。嵌入式控制在Atmega128微控制器中实现。其新颖之处在于成本低、精度好,并采用机电一体化中的嵌入式系统设计方法进行设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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