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- W2896919195 abstract "This article presents experimental analyses of total indicated runout, which is the synergetic effect of mechanical and electrical runouts, and residual stress of three different material coatings on a large rotary component, which are prepared with laser cladding. These coating materials include cobalt-, and iron-based alloys; the large rotary component is a 28CrMoNiV rotor shaft. The values of total indicated runout of the three laser cladding layers on the shaft are measured and analyzed using a rotor mechanical electrical runout measuring device. The results show that the coating material and pore defects have significant effects on the runout values. Among the three coatings the iron-based one exhibits the smallest value of total indicated runout, that is, the lowest runout. This coating is further studied in residual stress using an X-ray stress instrument. It is found that residual stress varies over the coating layer with the maximum tensile stress at the center of the coating surface and the coating thickness. According to the value of the maximum tensile stress and the coating material properties, stress relief annealing of the coating is necessary before it is put in service.This article presents experimental analyses of total indicated runout, which is the synergetic effect of mechanical and electrical runouts, and residual stress of three different material coatings on a large rotary component, which are prepared with laser cladding. These coating materials include cobalt-, and iron-based alloys; the large rotary component is a 28CrMoNiV rotor shaft. The values of total indicated runout of the three laser cladding layers on the shaft are measured and analyzed using a rotor mechanical electrical runout measuring device. The results show that the coating material and pore defects have significant effects on the runout values. Among the three coatings the iron-based one exhibits the smallest value of total indicated runout, that is, the lowest runout. This coating is further studied in residual stress using an X-ray stress instrument. It is found that residual stress varies over the coating layer with the maximum tensile stress at the center of the coating surface and the coat..." @default.
- W2896919195 created "2018-10-26" @default.
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- W2896919195 date "2013-01-01" @default.
- W2896919195 modified "2023-09-25" @default.
- W2896919195 title "Experimental analysis of total indicated runout and residual stress of laser cladding layer on a large rotary component" @default.
- W2896919195 doi "https://doi.org/10.2351/1.5062920" @default.
- W2896919195 hasPublicationYear "2013" @default.
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