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Experimental study on elliptical vibration cutting for optical microstructures

机译:光学显微组织椭圆振动切削的实验研究

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In the processing technology of optical microstructure, mechanical processing with high efficiency and quality is still dominating. However, with microstructure surface quality higher and higher, the precision and ultra precision cutting technology has been difficult to meet the needs of reality, and it still remains a big issue in production efficiency and cost. In this case, the elliptical vibration cutting method is created. At present, research on the effect of elliptical vibration cutting on surface quality of microstructures with special optical properties such as V-groove, micro pyramid and sinusoidal grid surface is rarely seen. This paper focuses on the elliptical vibration cutting process of arc groove and V-groove, aiming at finding the discipline of various parameters (frequency, amplitude, feed rate) and analyzing the surface quality through experiments. Firstly, the principle of elliptical vibration cutting is introduced, the cutting mechanism and the theoretical error are analyzed, and a vibration cutting system is designed for precision machining. Because the surface quality and burr play have a huge impact on optical microstructure, effects of the vibration frequency (0-2kHz), amplitude (0.5-2.5μm) as well as feed rate (6-30mm/min) on surface quality and burr suppression are analyzed. The experimental results show that compared to normal cutting, elliptical vibration cutting has obvious advantages. With the increases of the frequency and amplitude, the surface quality improves significantly, the surface roughness is changed from 61.5nm to 25.3nm, and burr has been suppressed to some extent.
机译:在光学微结构的加工技术中,高效率和高质量的机械加工仍占主导地位。然而,随着微结构表面质量的日益提高,精密和超精密切削技术已难以满足现实的需求,在生产效率和成本上仍然是一个大问题。在这种情况下,创建了椭圆振动切割方法。目前,很少有人研究椭圆振动切削对具有特殊光学特性的V型槽,微锥和正弦网格表面的微观结构的表面质量的影响。本文重点研究弧形槽和V形槽的椭圆振动切削工艺,旨在找到各种参数(频率,幅度,进给速度)的规律,并通过实验分析表面质量。首先介绍了椭圆振动切削的原理,分析了切削机理和理论误差,设计了一种用于精密加工的振动切削系统。由于表面质量和毛刺对光学显微组织有很大的影响,因此振动频率(0-2kHz),振幅(0.5-2.5μm)以及进给速度(6-30mm / min)对表面质量和毛刺的影响分析抑制。实验结果表明,与普通切削相比,椭圆振动切削具有明显的优势。随着频率和幅度的增加,表面质量显着提高,表面粗糙度从61.5nm变为25.3nm,毛刺得到了一定程度的抑制。

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