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FIVE AXIS SWEPT PROFILES OF TORUS LIKE CUTTERS VIA SEPARATION OF INNER AND OUTER CHARACTERISTIC CURVES

机译:通过内外特性曲线分离圆环状切削刃的五个轴交轮廓

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A broadly applicable formulation for identifying the swept profiles (SWP) generated by subsets of a toroidal surface is presented. While the problem of locating the entire SWP of a torus has been extensively addressed in the literature, this rarely addressed problem is of significance to NC machining with non-standard shape of milling tools. A torus, generated by revolving a circle about an axis coplanar with the circle, is made up of inner and outer parts of a tube. The common use of the torus is in a fillet-end mill which contains only the fourth quadrant of a cross section of the tube. However, in the industrial applications the different regions of the torus geometry appear. Especially we can see this on the profile cutters, such as the corner-rounding and concave-radius end mills. Also to the best of our knowledge, the interior of the torus-tube is either neglected or represented by B-spline curves in literature. In case of common milling tool surfaces such as sphere, cylinder and frustum there exists only one SWP in any instance of a tool movement. But, in case of the toroidal surface there exist two sophisticated SWPs and we need to consider only one of them in tool swept envelope generation. Therefore, considering the complexity of five-axis tool motions there is a need not only to distinguish the front from the rear of the cutter but also the exterior from the interior of a tube. This paper presents a methodology and algorithms for analytically formulating the SWP of any sub-set of the torus in five-axis tool motions. By introducing the rigid body motion theory, two moving frames along with a fixed frame are defined. Arbitrary poses of a tool between tool path locations are interpolated by a spherical linear interpolation (slerp) whose effect is a rotation with uniform angular velocity around a fixed rotation axis. For the problem of NC simulation, by using the envelope theory the closed-form solutions of swept profiles are formulated as two-unit vector functions.
机译:提出了一种广泛适用的配方,用于识别由环形表面的子集生成的扫掠轮廓(SWP)。虽然在文献中已经广泛地解决了定位整个圆环的问题,但是这个很少解决的问题对于使用非标准形状的铣刀进行NC加工很重要。通过使圆围绕与圆共面的轴旋转而生成的圆环由管的内部和外部组成。圆环面的常见用途是在圆角立铣刀中,该圆角立铣刀仅包含管横截面的第四象限。然而,在工业应用中,出现了环形几何形状的不同区域。尤其是在仿形铣刀(例如,圆角和凹半径立铣刀)上可以看到这一点。同样,就我们所知,圆环管的内部在文献中被忽略或由B样条曲线表示。对于普通的铣削刀具表面(例如球体,圆柱体和截头圆锥体),在任何刀具运动情况下都只有一个SWP。但是,在环形曲面的情况下,存在两个复杂的SWP,在工具扫掠包络生成中,我们只需考虑其中一个。因此,考虑到五轴工具运动的复杂性,不仅需要区分刀具的前部和后部,还需要区分管子的外部和内部。本文提出了一种方法和算法,用于分析性地制定五轴刀具运动中圆环的任何子集的SWP。通过引入刚体运动理论,定义了两个移动框架以及一个固定框架。刀具路径位置之间的刀具任意姿势通过球面线性插值(slerp)进行插值,其效果是围绕固定旋转轴以均匀角速度旋转。对于数控仿真的问题,通过使用包络理论,将扫掠轮廓的封闭形式解公式化为两单元矢量函数。

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