Induction rotor structure of a high-power and high-speed electromagnetic eddy current dynamometer
A technology of electromagnetic eddy current and rotor structure, applied in the direction of magnetic circuit shape/style/structure, instrument, power measurement, etc. Problems such as the maximum speed of the eddy current dynamometer, to achieve the effect of increasing the rated absorbed power, large braking torque, and expanding the area of the sensing area
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[0019] As an implementation, for example, the wall thickness of the double-cup induction rotor cup is selected as s=6mm; the material of the induction rotor is TC11, and its allowable stress [σ]=6.64×10 8 Pa, density ρ=4.48×10 3 kg / m 3 , Resistivity γ=1.85×10 -6 Ω·m; the distance between the outer wall of the double-cup induction rotor and the inner wall of the stator armature core t = 3mm; coefficient A = 20. The design requires the maximum excitation current I = 12A, the maximum speed n max =18000rpm, rated absorbed power P t ≥3000kW.
[0020] by relation The maximum diameter D allowed by the outer wall of the double-cup induction rotor can be calculated max =379.5mm; by relation It can be calculated that the cup depth h of the double-cup induction rotor is greater than or equal to 107mm. As an implementation manner, the diameter of the outer wall of the double-cup induction rotor is D=300 mm, and the depth of the cup body h=150 mm.
[0021] The strength check res...
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