A Study on Tool Path Generation in 2D Contour Milling of Cycloidal Discs and Rings Used in Cycloidal Reducers

M. Horodinca
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Abstract

Abstract This paper presents a study on the determination of the tool paths in manufacturing by external or internal 2D contour milling (using an end mill cutter as tool) of a cycloidal disc and a cycloidal ring used inside a cycloidal reducer in two versions: with rotary pins as gear teeth placed on stator (in gear with cycloidal disc) and with rotary pins placed on rotor (in gear with cycloidal ring). These tool paths should be described by the Cartesian coordinates of the points on the 2D closed trajectory of the tool axis. The 2D profiles of a cycloidal disc (or a cycloidal ring) in transverse section and an analytic geometric approach are used in order to find out these tool paths, having a shape of distorted epicycloids or hypocycloids. Even though this goal is simply solvable on CNC milling machines by cutting radius compensation, some particularities of 2D profiles for a cycloidal disc (or a cycloidal ring) impose a specific theoretical approach on this topic. Some algorithms for tool path detection were proposed, verified and validated by simulation in Matlab on both 2D profiles.
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摆线减速器摆线盘和摆线环二维轮廓铣削刀具轨迹生成研究
摘要本文研究了摆线针减速器内摆线针盘和摆线针环的外、内二维轮廓铣削(以立铣刀为刀具)加工中刀具轨迹的确定,分为两种形式:摆针作为齿轮齿置于定子(摆针盘齿轮)和摆针置于转子(摆针环齿轮)。这些刀具轨迹应该由刀具轴的二维闭合轨迹上的点的笛卡尔坐标来描述。利用摆线盘(或摆线环)横切面的二维轮廓和解析几何方法,找出了这些具有畸变外摆线或次摆线形状的刀具轨迹。尽管这个目标在数控铣床上通过切割半径补偿可以简单地解决,摆线盘(或摆线环)的二维轮廓的一些特殊性对这个主题施加了特定的理论方法。提出了几种刀具轨迹检测算法,并在Matlab中对两种二维轮廓进行了仿真验证。
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