Q.1) In the slider-crank mechanism shown in the figure, crank (2) rotates with constant angular velocity...
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Q.1) In the slider-crank mechanism shown in the figure, crank (2) rotates with constant angular velocity o, =10r/s. For the given position, a) (7p) Find F23 force vector, due to only the effect of the inertia of the mass of the connecting rod (3) reduced to bearing B. (Use equivalent mass approach and neglect frictional forces) b) (6p) Find T21 torque vector die to only the effect of the inertia of the mass of the piston (4) (neglect frictional forces) c) (12p) Find T21 torque vector due to only gas force P by using virtual work principle when the piston is at the 100cm3 cylinder volume during expansion. Bore diameter of the cylinder is 100 mm. (AO=16 cm; AB=36 cm ; AG3=12 cm; m3=1,5 kg; m4=2 kg) %3D 2 r tan o =-sin ot| 1+ sin ot 202 r cos 2ot 40 5 x= ( - +r cos ot + 40 G3 3 G2 60° 50 100 150 200 250 300 350 400 Cylinder volume [cm ] 1 Cylinder Pressure (MPa] Q.1) In the slider-crank mechanism shown in the figure, crank (2) rotates with constant angular velocity o, =10r/s. For the given position, a) (7p) Find F23 force vector, due to only the effect of the inertia of the mass of the connecting rod (3) reduced to bearing B. (Use equivalent mass approach and neglect frictional forces) b) (6p) Find T21 torque vector die to only the effect of the inertia of the mass of the piston (4) (neglect frictional forces) c) (12p) Find T21 torque vector due to only gas force P by using virtual work principle when the piston is at the 100cm3 cylinder volume during expansion. Bore diameter of the cylinder is 100 mm. (AO=16 cm; AB=36 cm ; AG3=12 cm; m3=1,5 kg; m4=2 kg) %3D 2 r tan o =-sin ot| 1+ sin ot 202 r cos 2ot 40 5 x= ( - +r cos ot + 40 G3 3 G2 60° 50 100 150 200 250 300 350 400 Cylinder volume [cm ] 1 Cylinder Pressure (MPa]
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Related Book For
Engineering Mechanics Dynamics
ISBN: 9781118885840
8th Edition
Authors: James L. Meriam, L. G. Kraige, J. N. Bolton
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