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Predictive modelling of cutting force and its influence on surface accuracy in ultra-high precision machining of contact lenses

机译:切割力的预测建模及其对隐形眼镜超高精度加工表面精度的影响

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The successful application of contact lenses is heavily dependent on their form accuracy and surface integrity. Cutting forces play a key role in the diamond turning of contact lenses as they have direct influence on their form accuracy and surface integrity. In addition, the cutting forces are also important for other aspects of diamond turning of contact lenses such as tool wear. Therefore, the prediction of cutting forces in contact lens manufacturing is deemed essential for the sake of high quality optical surfaces. One way to manage the effect of the cutting force and reduce its negative effect on surface finish could be realised through optimisation and modelling techniques. There are several factors that affect the extent of the cutting force developed in diamond turning. An example of these factors is the selection of cutting parameters. The establishment of a statistical model for the reliable prediction of cutting forces which is linked to a specific optical quality characteristic could be a way for understanding the behaviour of cutting force and its effect. In this study, a cutting force model based on response surface statistical method is developed for reliably predicting the values of cutting force based on its relationship to cutting parameters in the high-precision machining of contact lenses. The model obtained from fifteen experimental tests determines the effects of cutting speed, feed rate and depth of cut on force and how various combinations of parameters affect cutting force and thus surface quality. Results indicate that feed rate is a significant factor in the generation of high cutting force and low surface roughness. The study concludes that high feed rates and high cutting speeds cause an increase in cutting force and thus adversely affect the quality of the diamond-machined surface in the high precision machining of contact lenses.
机译:隐形眼镜的成功应用严重依赖于其形式的精度和表面完整性。切割力在隐形眼镜的菱形转动中发挥关键作用,因为它们对其形式的精度和表面完整性有直接影响。此外,切割力对于诸如工具磨损的隐形眼镜的菱形变动的其他方面也很重要。因此,为了高质量的光学表面,认为隐形眼镜制造中的切割力的预测被认为是必不可少的。通过优化和建模技术,可以实现管理切割力和降低表面光洁度的负面影响的一种方法。有几个因素会影响钻石转动中发育的切割力的程度。这些因素的一个例子是选择切割参数。建立与特定光学质量特征相关的切割力可靠预测的统计模型可能是理解切割力的行为及其效果的一种方式。在该研究中,开发了一种基于响应面统计方法的切割力模型,用于可靠地预测切割力的切削力的值,其与隐形眼镜的高精度加工中的切削参数的关系。从十五个实验测试中获得的模型决定了切割速度,进料速率和切割深度对力的影响以及各种参数组合如何影响切割力,从而影响切割力,从而影响表面质量。结果表明,进料速率是产生高切割力和低表面粗糙度的重要因素。该研究得出结论,高进料和高切削速度导致切割力的增加,因此在隐形眼镜的高精度加工中产生钻石加工表面的质量。

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