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A novel five-axis rough machining method for efficient manufacturing of centrifugal impeller with free-form blades

机译:一种新型的五轴粗加工方法,可有效制造带有自由形状叶片的离心叶轮

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This paper presents a novel methodology and algorithm for efficient manufacturing of the centrifugal impeller with free-form blades. Aim at the character of the centrifugal impeller blade surface, by the mathematical analysis and comparing method between the impellers with the free-form blade and ruled blade, the approximated blade with ruled surfaces is proposed as the simpler target for the rough machining of the impeller. For the slighter twist and efficient calculating, three machining areas are obtained by the two adjacent facing blades and the splitter, and four machining layers are obtained by intersections between the blades/splitters and hubs which have the same shapes but different locations along the direction from hub to shroud. The tool paths on each sun areas and layers are divided into two parts. Two computational methods of the tool axis and feed rate number are proposed to achieve the consummate equilibrium of the efficiency and the wanted profile for the following finish machining. The novel five-axis rough machining tool paths are calculated and a practical machining mold is presented.
机译:本文提出了一种新颖的方法和算法,可以有效地制造带有自由形式叶片的离心叶轮。针对离心式叶轮叶片表面的特性,通过自由形叶片和直纹叶片的叶轮之间的数学分析和比较方法,提出了近似直纹叶片的叶片作为粗加工叶轮的简单目标。 。为了进行较小的扭曲并有效地进行计算,两个相邻的面对刀片和分流器获得了三个加工区域,而刀片/分流器与轮毂之间的交点获得了四个加工层,它们的形状相同,但沿从集线器。每个太阳区域和各个图层上的工具路径分为两部分。提出了刀具轴和进给速率数的两种计算方法,以实现效率和后续精加工所需轮廓的完美平衡。计算了新颖的五轴粗加工刀具路径,并给出了实用的加工模具。

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