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首页> 外文期刊>International journal of engineering research in Africa >Dimensional and Geometrical Form Accuracy of Circular Pockets Manufactured for Aluminum, Copper and Steel Materials on CNC Milling Machine using CMM
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Dimensional and Geometrical Form Accuracy of Circular Pockets Manufactured for Aluminum, Copper and Steel Materials on CNC Milling Machine using CMM

机译:使用CMM在CNC铣床上为铝,铜和钢材料制造的圆形腔的尺寸和几何形状精度

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摘要

Dimensional metrology plays an important role in the modern manufacturing technology. Accurate machining technology remains the main focus of global industry, where needs to permanent study for the purpose of improving. Coordinate metrology is an important inspection tool of dimension and geometrical surface form for machined work-piece to provide functionality in quality process. Several factors affect the accuracy and quality of manufactured parts when machined using circular pocket cycles on CNC machining centers. Such accuracy depends to a great extent on work-piece material, the cutting conditions; namely spindle speed, feed rate, depth of cut and the structure of the fixed cycle. The accuracy of dimensional and geometrical form plays a vital function on the required tolerance and fit of manufactured parts to be assembled. This paper studies the influence of those parameters on the accuracy and quality of milled pocket diameter with its roundness. Several specimens made of aluminum, copper and steel metals were pocket milled on a CNC using different cutting conditions. CMM was used to assess the errors in diameter and roundness measurements of machined parts. In despite of scientific advances in machining technology, however there are still clear deviations in the measurement results according to choice of the cutting condition, especially when change the type of work-piece material. Monitoring suitable validiation method for a typical manufacturing machining is achieved accurately. Moreover, expanded uncertainty in measurement has been estimated using statistical repeatability analysis and most effective experimental parameters.
机译:尺寸计量在现代制造技术中起着重要作用。精确的加工技术仍然是全球工业的主要焦点,在全球工业中,需要不断研究以求改进。坐标计量是机械加工工件的尺寸和几何表面形状的重要检查工具,可在质量过程中提供功能。在CNC加工中心上使用圆形腔循环进行加工时,有几个因素会影响所制造零件的精度和质量。这种精度在很大程度上取决于工件材料,切削条件;即主轴转速,进给速度,切削深度和固定循环的结构。尺寸和几何形状的精度对要组装的制造零件的所需公差和配合起着至关重要的作用。本文研究了这些参数对铣削型腔直径的精度和质量及其圆度的影响。在不同的切割条件下,将数个由铝,铜和钢金属制成的样品在CNC上进行袋磨。 CMM用于评估加工零件的直径和圆度测量误差。尽管机械加工技术取得了科学进步,但是根据切削条件的选择,测量结果仍然存在明显偏差,尤其是在改变工件材料的类型时。可以准确监控典型制造加工的合适验证方法。此外,已经使用统计可重复性分析和最有效的实验参数来估计测量中扩大的不确定性。

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