by 2 ifted is 1500 kg at a velocity of 0.5 m/s. The motor runs at a speed of 1250 pm. The inertia of the winch drum and motor are 1.8 kg.m² and 3.6 kg.m respectively. Calculate (i) the total load torque of the system referred to motor shaft, (ii) the inertia referred to the motor shaft. GEAR MOTOR Winch Fig.17. LOAD V

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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1.3 Figure 17 shows a motor lifting a load by means of a winch. The weight
lifted is 1500 kg at a velocity of 0.5 m/s. The motor runs at a speed of 1250
rpm. The inertia of the winch drum and motor are 1.8 kg.m² and 3.6 kg.m²
respectively. Calculate (i) the total load torque of the system referred to
motor shaft, (ii) the inertia referred to the motor shaft.
GEAR
MOTOR
Winch
Fig.17.
LOAD
[Ans: (i) 56.23 Nm, (ii) 0.0146 kg.m²]
Transcribed Image Text:1.3 Figure 17 shows a motor lifting a load by means of a winch. The weight lifted is 1500 kg at a velocity of 0.5 m/s. The motor runs at a speed of 1250 rpm. The inertia of the winch drum and motor are 1.8 kg.m² and 3.6 kg.m² respectively. Calculate (i) the total load torque of the system referred to motor shaft, (ii) the inertia referred to the motor shaft. GEAR MOTOR Winch Fig.17. LOAD [Ans: (i) 56.23 Nm, (ii) 0.0146 kg.m²]
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