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SELECTION OF MAJOR LOCATING SURFACE FOR IMPROVING CHUCKING ACCURACY

机译:主要定位表面的选择,以提高卡盘精度

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Two different types of surfaces are available as a major locating surface for the chucking of a cylindrical workpiece in turning operation - a flat surface and a cylindrical surface. No systematic study on the selection of a major locating surface has been reported while an appropriate selection considering the geometry of jaws and workpieces results in the significant improvement in the positioning accuracy and repeatability of a range of chucked workpieces. This research covers the most common clamping situation where a cylindrical workpiece is overhung clamped and machined with more than one set-up for finishing. In general, a workpiece with a lower length to diameter ratio should be clamped using an end face as a major locator while using a cylindrical surface can produce better positioning accuracy and repeatability for workpieces with higher length to diameter ratio. Recent studies have demonstrated the benefits of hard turning over abrasive machining processes in terms of surface integrity. A strong need currently exists for improving chucking accuracy since it work a major bottleneck in the implement finish hard turning for the production of precision, load-carrying mechanical components, such as bearings and shafts. This paper presents part of a systematic study on improving chucking accuracy for the implementation of finish hard turning, focusing on the development of criteria on the selection of a major locating surface. First, an analysis on the factors affecting the positioning accuracy for each locating surface is carried out. Then the criteria and guidelines for the selection of a major locating surface were constructed. Finally, systematic experiments were carried out to test the criteria and guidelines. The results showed that the positioning accuracy of the chucked workpieces improved significantly when following the guidelines developed in this study.
机译:两种不同类型的表面可用作车削加工中夹持圆柱形工件的主要定位表面-平坦表面和圆柱形表面。而适当的选择考虑下巴和工件的结果在一定范围夹持工件的定位精度和可重复性的显著改进的几何形状上的主要定位面的选择没有系统的研究报告。这项研究涵盖了最常见的夹紧情况,其中圆柱形工件悬空夹紧并进行了多种加工以进行精加工。通常,应使用端面作为主要定位器来夹紧长径比较小的工件,而使用圆柱表面可以对长径比较大的工件产生更好的定位精度和可重复性。最近的研究表明,就表面完整性而言,硬翻磨加工过程的好处。当前,迫切需要改进卡盘精度,因为它在工具精加工硬车削中加工了主要瓶颈,以生产精密的,承载轴承的机械部件,例如轴承和轴。本文针对提高精加工硬质车削的夹紧精度,提出了系统研究的一部分,重点研究了主要定位表面选择标准的制定。首先,对影响每个定位表面的定位精度的因素进行分析。然后,建立了选择主要定位表面的标准和指南。最后,进行了系统的实验以测试标准和指南。结果表明,按照本研究中制定的准则,被夹紧的工件的定位精度得到了显着提高。

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