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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Integrated rough machining methodology for centrifugal impeller manufacturing
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Integrated rough machining methodology for centrifugal impeller manufacturing

机译:用于离心叶轮制造的集成式粗加工方法

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摘要

In mechanical engineering, most products or components, especially those for aerospace applications, are designed to fit the requirements of free-form surface features. The impeller often required by 5-axis machine operations is a key component of the aerospace industry. When 3-axis CNC machining center is used to manufacture the impeller, great difficulties, i.e., collisions between the cutting tool and impeller, need to be overcome. Presently most commercial CAM systems for 5-axis control lack generality, and functions for the rough tool-path generation are far from sufficient. Although the rough machining is the most important procedure influencing the machining efficiency and the condition for the following finishing process, many difficulties arise in performing 5-axis rough machining. The main objective of the present study is to overcome this problem by integrating the state-of-art machining technology, and consequently effective rough tool-paths are to be generated. This study aims to implement the algorithm of the constant scallop height method to improve tool-path planning of rough machining. As a result CL data based on the geometry model of blade and hub are generated. The CL data are confirmed by comparing them with original CAD model through software simulations and later by machining experiments. The verification results show that the machining methodology and procedure adopted turn out to be a successful case.
机译:在机械工程中,大多数产品或组件,尤其是用于航空航天应用的产品或组件,都是为满足自由曲面特征的要求而设计的。 5轴机床操作经常需要的叶轮是航空航天工业的重要组成部分。当使用三轴CNC加工中心来制造叶轮时,需要克服很大的困难,即切削工具和叶轮之间的碰撞。目前,大多数用于5轴控制的商用CAM系统缺乏通用性,并且粗略的刀具轨迹生成功能还远远不够。尽管粗加工是影响加工效率和后续精加工条件的最重要程序,但在进行5轴粗加工时会遇到许多困难。本研究的主要目的是通过集成最先进的加工技术来克服这一问题,因此将产生有效的粗加工刀具路径。本研究旨在实现恒定扇贝高度法的算法,以改善粗加工的刀具路径规划。结果,基于叶片和轮毂的几何模型的CL数据被生成。通过软件仿真将其与原始CAD模型进行比较,然后再通过机加工实验,将CL数据进行确认。验证结果表明,采用的加工方法和程序是成功的案例。

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