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- The larger diameter and face of the disk of a multiple disk chutch are 225 mm and 20 mm respectively. The load applied to the spring of the clutch axially is 1500 N. Assuming that there are 8 pairs of friction 0.18 and tuning 800 rpm. Find the power transmitted by the clutch using uniform pressure method. (Ans, 13.67 kW)Solve Sample Problem 7.16 if the contact pressure under the polisher varies parabolically from p0 at r=0 to zero at r=R; that is, p=p0(1r2/R2).Briefly explain the necessity of counterweights located on the crankshaft when the engine is naturally balanced with respect to mass forces.
- 1. A three cylinder single acting engine has its cranks set equally at 120° and it runs at 800 r.p.m. Thetorque-crank angle diagram for each cycle is a triangle for the power stroke with a maximum torque of 100N-m at 60° from dead centre of corresponding crank. The torque on the return stroke is sensibly zero.Determine: 1. power developed. 2. Coefficient of fluctuation of speed, if the mass of the flywheel is 15 kgand has a radius of gyration of 70 mm, 3. Coefficient of fluctuation of energy, and 4. Maximum angularacceleration of the flywheel.;: . L The contact surfaces in a cone clutch have an ej'fective diameter of 7‘5 i semi-angle of the cone is 15°. The coefficient of friction is 0.3. Find the torque requiy, 5 e slipping of the clutch if an axial force applied is 180 N. This clutch is employed to connect an electric motor running um_'form!y at 1 000 Epm. with, el which is initially stationary. The flywheel has a mass of 13.5 kg and its radius of gyriy, is Calculate the time required for the flywheel to attain full speed and also the energy [y, in of the clutch.Q8:-The following particulars relate to a symmetrical circular flank cam operating a flat- faced follower in 4-stroke engine:- base circle radius=25 mm, nose circle radius=8 mm, lift of the valve=10 mm, total angle of action of the cam=120° and the engine speed=1000 rpm. Determine: - (a) the flank radius, (b) maximum velocity and (c) maximum acceleration and retardation of the follower. If the mss of the follower and valve with which it is in contact is 4 kg, find the minimum force to be exerted by the spring to overcome the inertia of the valve parts.
- Question No.13: A multiple disc clutch has three discs on the driving shaft and two on the driven shaft, providing four pairs of contact surfaces. The outer diameter of the contact surfaces is 250mm and inner diameter is 150mm. Determine the maximum axial intensity of pressure between the discs for transmitting 18.75kW at 500 rpm. Assume uniform wear and coefficient of friction as 0.3.What is the power (?) lost to main crankshaft friction in a four-cylinder engine with a 100mmbore and stroke if the engine is operating at 1500 rpm? Assume the main crankshafthas five bearings, each with a diameter of 50 mm and length of 25 mm.Q.2 A reciprocating air compressor has a 5 ft-diameter flywheel 14 in wide, and it operates at 170 rev/min. An eight-pole squirrel-cage induction motor has nameplate data of 50 bhp at 875 rev/min. (CLO2) (a) Design a V-belt drive. (b) It is suggested that chain drive may be used for the power transmission, design a chain drive.
- Design a single-cylinder atmospheric engine capable of lifting a mass of 1000 kg to a height of three meters. Assume reasonable values of cylinder temperature and pressure after combustion Decide which direction the cylinder will move, and give the bore, piston travel distance, mass of piston, piston material, and clearance volume Give a sketch of the mechanical linkage to lift the mass.A soft surface cone clutch must handle 1865 In-1b of torque at 1250 rpm. The large diameter of the clu is 13.75 in. and the included angle in 12.5°. The face width of the bearing surfaces is 2.5 in. Using efficient of friction 0.20. determine (a) the force (F) to engage the clutch, (b) the required normal unit pa sure on the contact surfaces when operation is at capacity Ans. 428 lb. 13.15 psiAn Otto cycle engine that has a turning moment diagram shown in Figure 2 develops 50 kW at 150 rpm with 75 explosions per minute. The change of speed from the commencement to the end of power stroke must not exceed 0,5 percent of mean on either side. The density of rim material is 7200 kg/m³. Assume that the flywheel stores 16/15 times the energy stored by the rim and the work done during power stroke is 1,40 times the work done during the cycle. Calculate the mean diameter of the flywheel having width four times the depth so that the hoop stress does not exceed 4 MPa.