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- W2896579944 abstract "Cutting of thinner steels has been an active laser application for many years. As technology advances have enabled available laser output power to increase, the thicknesses of steels that can be cut at competitive feed rates has also increased. This paper will describe a series of laser cutting experiments performed on a 2” thick steel cross-section using a 100-kW CO2 flattop laser. The application driving these experiments was from the salvage industry and the objective was to meet or exceed the cutting rates of the currently used torches but with a cleaner process (i.e. fewer by-products). The paper will discuss the results of these successful experiments including laser parameters used, both with and without oxygen assist, and cutting rates achieved.Cutting of thinner steels has been an active laser application for many years. As technology advances have enabled available laser output power to increase, the thicknesses of steels that can be cut at competitive feed rates has also increased. This paper will describe a series of laser cutting experiments performed on a 2” thick steel cross-section using a 100-kW CO2 flattop laser. The application driving these experiments was from the salvage industry and the objective was to meet or exceed the cutting rates of the currently used torches but with a cleaner process (i.e. fewer by-products). The paper will discuss the results of these successful experiments including laser parameters used, both with and without oxygen assist, and cutting rates achieved." @default.
- W2896579944 created "2018-10-26" @default.
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- W2896579944 date "2000-01-01" @default.
- W2896579944 modified "2023-09-26" @default.
- W2896579944 title "Experiments in laser cutting of thick steel sections using a 100-kW CO2 laser" @default.
- W2896579944 doi "https://doi.org/10.2351/1.5059421" @default.
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