Ultraviolet Nanosecond Laser-Ablated Groove Analysis of 2.5D Cf/SiC Composites

Author:

Zhang Tangyong1,Liu Fei1,Liu Yao2,Wu Chongjun1ORCID,Liang Steven Y.3ORCID

Affiliation:

1. College of Mechanical Engineering, Donghua University, Shanghai 201620, China

2. Shanxi Key Laboratory of Advanced Manufacturing Technology, North University of China, Taiyuan 030051, China

3. Manufacturing Research Center, Georgia Institute of Technology, Atlanta, GA 30332, USA

Abstract

The 2.5D Cf/SiC composite is a typical heterogeneous material with the characteristics of anisotropy, which makes it difficult to predict the size and damage removed by the traditional contact removal process. This paper adopted the ultraviolet nanosecond laser to ablate the Cf/SiC composites by considering the heterogeneous structure’s effect. The ablated groove topography and size prediction are effective in revealing the machined quality with predictable groove sizes. The effects of laser processing parameters on the groove morphology and surface thermally affected zone are investigated with the thermal removal mechanism. A regression model is established by considering the scanning times, scanning speed, laser power and pulse width as the main variables. In the regression models, the relative error values are all below 10%. It is revealed that the groove width diminishes with the scanning speed and increases as the laser power increases. However, the influence of the scanning times and pulse width is small, and the overall variation range is within ±10 μm. The results show that the arrangement direction of carbon fibers has an impact on laser processing, especially when the pulse width is 0.25 μs, upon which the opposite change occurs. Carbon fiber grooves are not obvious and are barely observed in the laser processing of the parallel carbon fiber direction, and the grooves are slightly uneven. This study could be helpful in analyzing the grooves of Cf/SiC affected by the laser processing process, which could support the hybrid machining of the Cf/SiC composites.

Funder

the National Natural Science Foundation of China

the Shanghai Natural Science Foundation

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

Reference42 articles.

1. Single diamond scribing of SiCf/SiC composite: Force and material removal mechanism study;Liu;Ceram. Int.,2021

2. Research Progress on Etching Modification of Carbon Fiber and Aramid Fiber and the Interface Bonding Performance of Their Composite Materials;Hu;Surf. Technol.,2021

3. High-speed grinding fracture mechanism of Cf/SiC composite considering interfacial strength and anisotropy;Guo;Ceram. Int.,2023

4. Experimental research on single abrasive grain scratch SiCf/SiC ceramic matrix composite;Zhou;Diam. Abras. Eng.,2021

5. The new challenges of machining Ceramic Matrix Composites (CMCs): Review of surface integrity;Diaz;Int. J. Mach. Tools Manuf.,2019

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