首页> 外文会议>39th North American manufacturing research conference 2011. >Optimal Part Orientation in Rapid Manufacturing Process for Achieving Geometric Tolerances
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Optimal Part Orientation in Rapid Manufacturing Process for Achieving Geometric Tolerances

机译:快速制造过程中的最佳零件方向以实现几何公差

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Rapid Manufacturing (RM) processes have evolved from the Rapid Prototyping (RP) paradigm and are increasingly being used to manufacture parts, tools and dies in addition to prototypes. The advantages of RP methods to produce complex shapes without the use of specialized tooling can naturally be extended to RM processes. For RM to be accepted as a mainstream manufacturing process, parts created by RM have to consistently satisfy critical geometric tolerances specifications for various features of the part. This paper investigates the relation between cylindricity tolerance, one of the key form tolerances, and part build orientation in layered manufacturing. The effect of build orientation on cylindricity error is analyzed by three methods: first by a simple analytic method, second by simulating the manufactured surface using a CAD (Computer Aided Design) file of the part and third by using an STL (Stereolithography) file. The method is demonstrated by calculating optimal build orientation for a test part with multiple cylindrical features.
机译:快速制造(RM)工艺是从快速原型(RP)范式演变而来的,除原型外,越来越多地用于制造零件,工具和模具。无需使用专用工具即可生产复杂形状的RP方法的优势自然可以扩展到RM工艺。为了使RM成为主流制造工艺,由RM创建的零件必须始终满足零件各种特征的关键几何公差规格。本文研究了圆柱度公差(关键形状公差之一)与分层制造中零件构造方向之间的关系。可以通过三种方法来分析构建方向对圆柱度误差的影响:一种是通过简单的分析方法,第二种是使用零件的CAD(计算机辅助设计)文件模拟制造的表面,第三种是使用STL(立体光刻)文件。通过计算具有多个圆柱特征的测试零件的最佳构建方向来证明该方法。

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