Examine screw jack and lead screw function to store mechanical energy in their operation. Moreover, you need to calculate the operating efficiency of lead screw and the screw jack for the following examples. a) Where lead screw must raise up to 4KN with a square thread pitch of 1.5 mm and a mean diameter of 6mm, and the coefficient of friction is 0.15. The initial power of the machine is 89 W and the angular velocity of the 20 (rad/sec). b) Where a screw jack must raise a load of 4.9kN with thread pitch of 10mm and a diameter of 50mm. The coefficient of friction is 0.15. The effort is applied through a lever of radius 400 (mm).

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Mechanical principles
Examine screw jack and lead screw function to store mechanical energy in their operation. Moreover, you
need to calculate the operating efficiency of lead screw and the screw jack for the following examples.
a) Where lead screw must raise up to 4KN with a square thread pitch of 1.5 mm and a mean diameter of 6mm,
and the coefficient of friction is 0.15. The initial power of the machine is 89 W and the angular velocity of the
20 (rad/sec).
b) Where a screw jack must raise a load of 4.9kN with thread pitch of 10mm and a diameter of 50mm. The
coefficient of friction is 0.15. The effort is applied through a lever of radius 400 (mm).
Transcribed Image Text:Examine screw jack and lead screw function to store mechanical energy in their operation. Moreover, you need to calculate the operating efficiency of lead screw and the screw jack for the following examples. a) Where lead screw must raise up to 4KN with a square thread pitch of 1.5 mm and a mean diameter of 6mm, and the coefficient of friction is 0.15. The initial power of the machine is 89 W and the angular velocity of the 20 (rad/sec). b) Where a screw jack must raise a load of 4.9kN with thread pitch of 10mm and a diameter of 50mm. The coefficient of friction is 0.15. The effort is applied through a lever of radius 400 (mm).
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