2023
DOI: 10.1016/j.surfcoat.2023.129795
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Research on the chemical barrier and failure behavior of WS2 and WS2/Ti coatings under high-temperature conditions and the effects on the lifespan of diamond-coated cutting tools

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Cited by 4 publications
(1 citation statement)
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“…Therefore, further revealing the tool wear mechanism by constructing a thermodynamic entropy model of the friction interface during a long-duration milling process is a logical step toward better understanding the entire process. WS2 coatings readily oxidize during hightemperature cutting, so Zhang et al (Zhang et al, 2023) designed a WS2/Ti multicoating structure to make it more suitable for a high-temperature cutting environment; the developed solid lubrication coating with, excellent thermodynamic properties was successfully applied to diamond-coated tools, extending their service life hightemperature friction environments. Qiu process to obtain signal variables as input conditions, applying neural network models for learning prediction.…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, further revealing the tool wear mechanism by constructing a thermodynamic entropy model of the friction interface during a long-duration milling process is a logical step toward better understanding the entire process. WS2 coatings readily oxidize during hightemperature cutting, so Zhang et al (Zhang et al, 2023) designed a WS2/Ti multicoating structure to make it more suitable for a high-temperature cutting environment; the developed solid lubrication coating with, excellent thermodynamic properties was successfully applied to diamond-coated tools, extending their service life hightemperature friction environments. Qiu process to obtain signal variables as input conditions, applying neural network models for learning prediction.…”
Section: Introductionmentioning
confidence: 99%