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@article{162845, author = {pavan and elson and rahul and preet and Vivek and Mihir}, title = {Review on Process Parameters of Laser Cutting Machine}, journal = {International Journal of Innovative Research in Technology}, year = {}, volume = {10}, number = {11}, pages = {193-208}, issn = {2349-6002}, url = {https://ijirt.org/article?manuscript=162845}, abstract = {Here is a review paper based on the process parameters of laser cutting machines. Laser beam cutting is a versatile and efficient technique used in various industries for the precision in profiling for different sheet materials. We have included all the possible parameters needed to enhance the quality of the product with the help of previously published research papers. Our paper also cover's the study of the impact of material type, workpiece thickness, and gas pressure on the quality of laser cuts using a CO2 laser. There are many different types of lasers cutting machines, but we have covered only CO2, YAG, and fiber-based laser cutting machines. Laser cutting offers versatility and effectiveness for precise material processing, but achieving optimal results requires understanding parameter influencing on different materials, Laser cutting offer's versatility and effectiveness for accurate material processing, but achieving optimal results requires understanding parameter influencing on distinct material's, Laser cutting offers versatility and effectiveness for precise material processing, but to achieve better results one need to have proper understanding on various parameter influencing on different materials. Further research should conducted to explore the influence of additional parameters, material variations, and process dynamics across diverse materials and applications. By harnessing this knowledge, manufacturers can unlock the full potential of laser cutting, achieving superior cut quality, reduced costs, and enhanced product functionality in various industries.}, keywords = {laser cutting machine, parameters, kerf width, cutting speed, heat affected zone, surface roughness.}, month = {}, }
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