MyJournals Home  

RSS FeedsMaterials, Vol. 12, Pages 4109: Numerical and Experimental Investigation of Morphological Modification on Fused Silica Using CO2 Laser Ablation (Materials)

 
 

9 december 2019 07:03:08

 
Materials, Vol. 12, Pages 4109: Numerical and Experimental Investigation of Morphological Modification on Fused Silica Using CO2 Laser Ablation (Materials)
 


In this paper, a numerical model based on the finite-element method for predicting the morphological evolution during CO2 laser ablation on fused silica is developed and examined experimentally. Adopting the optimized parameters that were obtained from the model, a typical cone-shaped multi-stage structure with a diameter of 2 mm and a slope angle of 10.4° was sufficiently polished. Both the roughness and the transparency of the surface structure were significantly improved. The characterized slope angle of the continuous surface is exactly consistent with the predicted value, and the ablation depth is 32 ± 1.247 µm with a deviation of 1.7% (RMS, root mean square). The deviation is principally caused by the neglect of melting displacement in simulation and the irregularity in actual stepping structures. These results indicate that the numerical model can simulate morphological modification of CO2 laser ablation with a high degree of reliability. It could further be used to optimize processing parameters for customizing continuous fused silica surfaces, which could facilitate industrial manufacturing of freeform optics.


 
286 viewsCategory: Chemistry, Physics
 
Sensors, Vol. 19, Pages 5406: Portable Low-Cost Electronic Nose Based on Surface Acoustic Wave Sensors for the Detection of BTX Vapors in Air (Sensors)
Materials, Vol. 12, Pages 4108: Compressive Behaviour of Closed-Cell Aluminium Foam at Different Strain Rates (Materials)
 
 
blog comments powered by Disqus


MyJournals.org
The latest issues of all your favorite science journals on one page

Username:
Password:

Register | Retrieve

Search:

Physics


Copyright © 2008 - 2024 Indigonet Services B.V.. Contact: Tim Hulsen. Read here our privacy notice.
Other websites of Indigonet Services B.V.: Nieuws Vacatures News Tweets Nachrichten