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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Accuracy estimation in drilling small holes on engineering plastics by a mathematical approach
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Accuracy estimation in drilling small holes on engineering plastics by a mathematical approach

机译:一种通过数学方法钻探工程塑料小孔的准确性估计

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摘要

Engineering plastics have wide applications in different fields of industry due to their light weight and easy shaping. In manufacturing multi-component products, assembly is an inevitable stage and drilling is one of the necessary processes before joining of the components of these products. In this study, two of the most common types of engineering plastics, polyacetal (POM) and cast polyamide (castamide), were drilled with twist drills of 0.5 mm and I mm diameters, under different cutting speeds and feeds. In determining the accuracy of the drilled small holes, a mathematical approach was used in which least square circle method was applied and radial error of the each drilled hole was obtained. Thus, the hole accuracy could be determined without measuring equipment such as coordinate measurement machine. It has been seen that POM gave better hole accuracy than cast polyamide due its thermal and tribological properties. The effects of feed and cutting speed on the radial error were also investigated. POM did not show apparent difference in radial error according to the cutting parameters while cast polyamide showed lower radial error in higher feeds with 0.5 mm of drill tool and lower radial error with I mm of drill tool. Additionally, the radial error could be reduced with decrease of spindle speed at higher feed.
机译:由于重量轻,易于整形,工程塑料在不同的行业领域具有广泛的应用。在制造多组分产品中,组装是不可避免的阶段,钻孔是加入这些产品的组件之前的必要过程之一。在该研究中,在不同的切削速度和饲料下,用捻钻,两种最常见的工程塑料,聚缩醛(POM)和铸酰胺(氨基甲酰酯)钻孔。在确定钻孔的小孔的准确性时,使用了数学方法,其中施加了最少方形的圆形方法,并且获得了每个钻孔的径向误差。因此,可以在不测量诸如坐标测量机的设备的情况下确定孔精度。已经看出,由于其热和摩擦学性质,POM具有比铸造聚酰胺更好的孔精度。还研究了饲料和切削速度对径向误差的影响。 POM根据切割参数没有显示出径向误差的明显差异,而铸造聚酰胺在钻孔工具0.5毫米的钻孔工具和较低的径向误差较高的速率下呈较低的速度误差,并且具有钻孔工具的径向误差。另外,通过较高饲料的主轴速度降低,可以减小径向误差。

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