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Mechatronics Approach for Desk-Top CNC Milling Machine Design

机译:台式数控铣床设计的机电一体化方法

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The marriage of computer, electronic technology and traditional machining disciplines has given birth to revolutionary new disciplines, Mechatronics. Therefore Mechatronics requires mechanical, electronic and computer knowledge together. The main aim of this article is to present the mechatronics approach for desk-top CNC milling machine design. Construction of computer controlled (CNC) Machine differs greatly from that of conventional machine tools. This difference arises from the requirement of higher performance levels. Machine Structure, guide ways, feed drives, spindle and spindle bearings, measuring systems, machine control unit, software and operator interface, gauging and tool monitoring should be considered as mechatronics approach. Servo motors, motor drivers and motor control unit were used in this CNC milling machine to make it flexible and easy programming. Ball screws were used to X-Y -Z axes to eliminate backlash of the slides. Non-contact home and Limit switches were used to prevent possible damages against over travels. Necessary torque and power have been calculated to select the motors by taking care of the load, ball screws, motor inertia and required cutting tools and etc. and developed CNC milling machine has been tested several times for reliable machining of machine parts.
机译:计算机,电子技术和传统加工学科的结合催生了革命性的新学科,机电一体化。因此,机电一体化需要机械,电子和计算机知识。本文的主要目的是介绍用于台式CNC铣床设计的机电一体化方法。计算机控制(CNC)机器的结构与常规机床有很大不同。这种差异源于更高性能水平的要求。机械结构,导轨,进给驱动器,主轴和主轴轴承,测量系统,机器控制单元,软件和操作员界面,计量和刀具监控都应视为机电一体化方法。该数控铣床使用了伺服电机,电机驱动器和电机控制单元,以使其灵活,易于编程。滚珠丝杠用于X-Y -Z轴,以消除滑块的反冲。非接触式原点和限位开关用于防止因超程而可能造成的损坏。通过考虑负载,滚珠丝杠,电机惯性和所需的切削工具等,已经计算出选择电动机所需的扭矩和功率,并且已对经过测试的发达的CNC铣床进行了多次测试,以可靠地加工机械零件。

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