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Solid Modeling and Machining Approach of the Impeller Based on Five-Axis Machine Tool

机译:基于五轴机床的叶轮的实心建模与加工方法

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An impeller is the core of aviation engine components, the processing quality has a decisive impact on the performance of the engine. An impeller is also one of the most important basic components of centrifugal compressor. When a three-axis CNC machining centre is used for producing an impeller, great difficulties, i.e. collisions between the cutting tool and the impeller, can occur. As the surface is normally twisted in design to achieve the required performance, it can cause over cut and collision problems during machining. To solve these problems, an integrated five-axis machining approach for a centrifugal impeller by combining related machining technologies is developed. As a result, Cutter Location data based on the geometry model of blade and hub of the impeller are generated. Finally, the Cutter Location data is verified through software simulation. The results prove that the machining methodology adopted is useful and efficient.
机译:叶轮是航空发动机部件的核心,加工质量对发动机的性能具有决定性的影响。叶轮也是离心式压缩机最重要的基本组件之一。当三轴CNC加工中心用于生产叶轮时,可能发生巨大困难,即切削工具和叶轮之间的碰撞。由于表面通常在设计中扭曲以达到所需的性能,因此可以在加工过程中引起切割和碰撞问题。为了解决这些问题,开发了通过组合相关的加工技术结合离心叶轮的集成五轴加工方法。结果,产生基于叶片的几何模型的刀具位置数据和叶轮的轮毂。最后,通过软件仿真验证刀具位置数据。结果证明采用的加工方法是有用和有效的。

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