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Adjustment approach for fuzzy logic model based selection of non-overlapping machining data in the turning operation

机译:基于模糊逻辑模型的车削加工非重叠加工数据选择调整方法

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摘要

In the Machining Data Handbook [Machining Data Handbook, vol. 2, 3rd ed., Metcut Research Associates Inc., Cincinnati, 1980] work-piece materials are classified in various groups covering a wide range of materials according to their material hardness (BHN) and cutting speed according to their depths of cut. The handbook provides machining parameters for different tool work-piece combinations. For each work-piece material and hardness, one may scan through different possible tool materials. This paper describes an adjustment approach applied to a fuzzy logic based model for selecting cutting speed where the machining data for speed ranges between the different depths cut are not overlapped. For this study data for two different materials and four different types of cutting tools are used to illustrate the adjustment approach. In material type one the cutting speed ranges for different depths of cut are overlapped and when a fuzzy logic based model was applied, it produced the cutting speed data providing good correlation with handbook data. In material type two the cutting speed ranges for different depths of cut are not overlapped. In this situation the cutting speed data are superimposed and results were adjusted according to their own ranges.
机译:在《加工数据手册》中。 [第2版,第3版,Metcut Research Associates Inc.,辛辛那提,1980年]根据材料的硬度(BHN)和根据切割深度的切割速度,将工件材料分为多种材料,包括各种材料。该手册为不同的刀具工件组合提供了加工参数。对于每种工件材料和硬度,可以扫描不同的可能工具材料。本文介绍了一种调整方法,该方法应用于基于模糊逻辑的模型以选择切削速度,其中不同深度切削之间的速度范围的加工数据不重叠。在本研究中,使用两种不同材料和四种不同类型的切削工具的数据来说明调整方法。在材料类型一中,不同切削深度的切削速度范围是重叠的,并且当应用基于模糊逻辑的模型时,它产生的切削速度数据与手册数据具有良好的相关性。在两种材料中,不同切削深度的切削速度范围不重叠。在这种情况下,切削速度数据将被叠加,结果将根据其自身范围进行调整。

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