首页> 外文会议>ASME international design engineering technical conferences;DETC2009;Computers and information in engineering conference;CIE2009 >AN OBJECT- SPACE BASED MACHINING SIMULATION IN MILLING PART 1: BY NATURAL QUADRIC AND FLAT SURFACES
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AN OBJECT- SPACE BASED MACHINING SIMULATION IN MILLING PART 1: BY NATURAL QUADRIC AND FLAT SURFACES

机译:铣削中基于对象空间的加工模拟:第1部分:自然二次曲面和平整曲面

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This two-part paper presents an efficient parametric approach to updating workpiece surfaces represented by the Z-map vectors. The methodology is developed for up to 3 1/2 1/2 -axis machining in which a tool can be arbitrarily oriented. In calculations the Automatically Programmed Tool (APT)-type milling cutters represented by the natural quadrics, planar and the toroidal surfaces are used. The machining process is simulated through calculating the intersections between the Z-map vectors and the tool envelope surface which is modeled by using a tangency function. Part 1 of this two-part paper presents the methodology for the cutters with natural quadrics and planar surfaces. For those surfaces intersection calculations are performed analytically. The geometric complexity of a torus is higher than those of the natural quadric and planar surfaces. Furthermore if the torus has an arbitrary orientation then the intersection calculations for the torus present great difficulties. In NC machining typically a torus is considered as one of the constituent parts of a cutter. In this case only some parts of the torus envelopes, called contact-envelopes, can intersect with Z-map vectors. For this purpose in Part 2 of this two-part paper an analysis is developed for separating the contact-envelopes from the non-contact envelopes. Then a system of non-linear equations in several variables, obtained from intersecting Z-map vectors with contact envelopes, is transformed into a single variable non-linear function. Later using a nonlinear root finding analysis which guarantees the root(s) in the given interval, those intersections are addressed.
机译:这篇两部分纸张提供了一种高效的参数方法来更新由Z-MAP向量表示的工件表面。该方法开发为最多3 1/2 1/2-XIS加工,其中工具可以任意取向。在计算中,使用自然Quadrics,平面和环形表面表示的自动编程工具(APT)型铣刀。通过计算通过使用相切函数建模的Z-MAP矢量和工具包络表面之间的交叉点来模拟加工过程。本两部分纸张的第1部分介绍了具有自然级和平面表面的切割器的方法。对于那些表面,分析地执行交叉点计算。圆环的几何复杂性高于天然四轮流和平面表面的复杂性。此外,如果圆环具有任意取向,则圆环的交叉点计算具有巨大的困难。在NC加工中,通常,圆环被认为是切割器的组成部分之一。在这种情况下,只有圆环包络的某些部位,称为接触信封,可以与Z-MAP向量相交。为此目的,在本两个部分的第2部分中,开发了分析,用于将接触信封与非接触式包络分离。然后,从与接触信封的交叉Z-MAP向量获得的若干变量中的非线性方程系统被转换为单个可变非线性函数。后来使用非线性根发现分析,保证了给定间隔中的根目录,解决了这些交叉点。

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