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利用激光/超声联合工艺对Biolox Forte陶瓷进行微加工。

Micromachining of Biolox Forte Ceramic Utilizing Combined Laser/Ultrasonic Processes.

作者信息

Abdo Basem M A, Mian Syed Hammad, El-Tamimi Abdualziz, Alkhalefah Hisham, Moiduddin Khaja

机构信息

Advanced Manufacturing Institute, King Saud University, Riyadh 11421, Saudi Arabia.

Industrial Engineering Department, College of Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.

出版信息

Materials (Basel). 2020 Aug 8;13(16):3505. doi: 10.3390/ma13163505.

Abstract

Micromachining has gained considerable interest across a wide range of applications. It ensures the production of microfeatures such as microchannels, micropockets, etc. Typically, the manufacturing of microchannels in bioceramics is a demanding task. The ubiquitous technologies, laser beam machining (LBM) and rotary ultrasonic machining (RUM), have tremendous potential. However, again, these machining methods do have inherent problems. LBM has issues concerning thermal damage, high surface roughness, and vulnerable dimensional accuracy. Likewise, RUM is associated with high machining costs and low material-removal rates. To overcome their limits, a synthesis of LBM and RUM processes known as laser rotary ultrasonic machining (LRUM) has been conceived. The bioceramic known as biolox forte was utilized in this investigation. The approach encompasses the exploratory study of the effects of fundamental input process parameters of LBM and RUM on the surface quality, machining time, and dimensional accuracy of the manufactured microchannels. The performance of LRUM was analyzed and the mechanism of LRUM tool wear was also investigated. The results revealed that the surface roughness, depth error, and width error is decreased by 88%, 70%, and 80% respectively in the LRUM process. Moreover, the machining time of LRUM is reduced by 85%.

摘要

微加工在广泛的应用领域中引起了相当大的关注。它确保了微通道、微腔等微特征的制造。通常,在生物陶瓷中制造微通道是一项艰巨的任务。常用的技术,如激光束加工(LBM)和旋转超声加工(RUM),具有巨大的潜力。然而,这些加工方法确实存在固有问题。LBM存在热损伤、表面粗糙度高和尺寸精度易受影响等问题。同样,RUM存在加工成本高和材料去除率低的问题。为了克服它们的局限性,人们构思了一种将LBM和RUM工艺相结合的方法,即激光旋转超声加工(LRUM)。本研究采用了名为Biolox Forte的生物陶瓷。该方法包括对LBM和RUM的基本输入工艺参数对所制造微通道的表面质量、加工时间和尺寸精度的影响进行探索性研究。分析了LRUM的性能,并研究了LRUM刀具磨损的机理。结果表明,在LRUM工艺中,表面粗糙度、深度误差和宽度误差分别降低了88%、70%和80%。此外,LRUM的加工时间减少了85%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/172e/7476051/6201e89ae0b8/materials-13-03505-g001.jpg

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