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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimization of the rough cutting factors of impeller with five-axis machine using response surface methodology
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Optimization of the rough cutting factors of impeller with five-axis machine using response surface methodology

机译:基于响应面法的五轴叶轮粗切削系数优化

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摘要

Turbo-machinery gradually has expanded its business into the automotive and aircraft industries. A core part of turbo-machinery is the impeller which can lead to manufacturing problems because it has twisted surfaces. Therefore, impeller machining requires five-axis machining technology and expert knowledge. Five-axis machining has the advantages of being able to select a variety of tool axis in the machining and remove uncut region which are impossible in the three-axis machining, which could obtain high productivity and good surface quality. Rough cutting is one very important operation as it affects productivity in the impeller machining and it is necessary to determine cutting strategies and select optimal cutting condition. This paper proposes a statistical method to optimize the rough cutting parameters in impeller machining by response surface methodology and efficient strategy to divide cutting region. Firstly, the rough operation was divided into three steps to remove volume from inducer to exducer and two steps were also added to remove the fillets between blade surfaces and hub surfaces. These machining strategies are selected as the qualitative factors when the response surface method is used. Secondly, cutting time was set as the response factor for productivity, and step-down, step over, and feed rate were determined as independent factors. Finally, the response surface model was estimated by a single surface in order to predict rough cutting time and the optimum cutting conditions were searched by the estimated model.
机译:涡轮机械逐渐将其业务扩展到汽车和飞机行业。叶轮是涡轮机械的核心部件,叶轮表面扭曲,可能导致制造问题。因此,叶轮加工需要五轴加工技术和专业知识。五轴加工的优点是能够在加工中选择各种刀具轴,并去除三轴加工中不可能的未切削区域,从而可以获得高生产率和良好的表面质量。粗切削是一项非常重要的操作,因为它会影响叶轮加工的生产率,并且有必要确定切削策略并选择最佳切削条件。本文提出一种统计方法,通过响应面法和有效的分割区域策略,优化叶轮加工中的粗加工参数。首先,将粗加工分为三个步骤以去除诱导剂之间的体积,还添加了两个步骤以去除叶片表面和轮毂表面之间的圆角。当使用响应面法时,选择这些加工策略作为定性因素。其次,将切削时间设置为生产率的响应因素,并将降速,步进和进给速度确定为独立因素。最后,通过单个表面估计响应表面模型,以预测粗切削时间,并通过估计的模型搜索最佳切削条件。

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