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Study on microstructure evolution and recrystallization behavior of nickel-based superalloy robot abrasive belt grinding surface under high-temperature exposure
Study on microstructure evolution and recrystallization behavior of nickel-based superalloy robot abrasive belt grinding surface under high-temperature exposure
Study on microstructure evolution and recrystallization behavior of nickel-based superalloy robot abrasive belt grinding surface under high-temperature exposure
Arch. Civ. Mech. Eng.
Zhang, Weijian (Autor:in) / Gong, Yadong (Autor:in) / Zhao, Xianli (Autor:in) / Liu, Mingjun (Autor:in) / Jin, Liya (Autor:in) / Yin, Guoqiang (Autor:in) / Zhao, Jibin (Autor:in)
04.12.2024
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Modeling and analysis of tangential force in robot abrasive belt grinding of nickel-based superalloy
Springer Verlag | 2023
|Modeling and analysis of tangential force in robot abrasive belt grinding of nickel-based superalloy
Springer Verlag | 2023
|