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Structural Design and CNC Machining of Integral Impeller for Automotive Turbocharger

机译:用于汽车涡轮增压器整体叶轮的结构设计和CNC加工

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摘要

Integral impeller is a key component of turbocharger. Although the research on structural design and machining of integral impeller has made some progress, The technical route of design and processing of integral impeller for vehicle turbocharger is cumbersome and slightly less efficient. A novel technology route of structure design and CNC machining for the integral impeller is proposed in this paper. Firstly, according to the relevant design criteria, the relevant parameters such as the overall impeller height, the blade height, the impeller inlet diameter, the impeller outlet diameter and the number of blades are obtained. Then the 3D model is created in the CAXA manufacturing engineer. Using CAXA CAM, the tool paths are generated in order to output CNC machining programs. The CNC machining programs are imported into the five-axis machining center for machining the integral impeller. The technology route can effectively improve the design efficiency, reduce the cost of design and manufacturing, and shorten the design cycle to a certain extent.
机译:整体叶轮是涡轮增压器的关键部件。虽然整体叶轮的结构设计和加工研究已经取得了一些进展,但车辆涡轮增压器整体叶轮的设计和加工技术途径繁琐,略微效率略低。本文提出了一种新颖的结构设计和CNC加工的技术途径,包括整体叶轮的整体叶轮。首先,根据相关的设计标准,获得了诸如整体叶轮高度,叶片高度,叶轮入口直径,叶轮出口直径和叶片数量的相关参数。然后在Caxa制造工程师中创建3D模型。使用CAXA CAM,生成刀具路径以输出CNC加工程序。 CNC加工程序进口到五轴加工中心,以加工整体叶轮。该技术路线可以有效提高设计效率,降低设计和制造成本,并在一定程度上缩短了设计周期。

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