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Showing posts with label mechanical engineering study material. Show all posts
Showing posts with label mechanical engineering study material. Show all posts

Tuesday, 11 April 2017

Partial Balancing of Locomotives

          The locomotives, usually, have two cylinders with cranks located at right angles (90°) to each other in order to have uniformly turning moment diagram and also the engine can be started easily after stopping in any position. Balance masses are placed on the wheels in both types. 
        In coupled locomotive, wheels are coupled by connecting their crank pins with coupling rods. As the coupling rod revolves with the crank pin, its proportionate mass can be considered as a revolving mass which can be completely balanced. 

Locomotive engines depending upon the location of cylinders they, are classified in two types they are:
           1. Inside cylinder engine and 2. Outside cylinder engine. 

          In the Inside cylinder locomotives, the two cylinders are placed in between the planes of two driving wheels as shown in Fig., Whereas in the Outside cylinder locomotives, the two cylinders are placed outside the driving wheels one on each side of the driving wheel, as shown in Fig., 
          They are further classified as Coupled and Uncoupled. If two or more pairs of wheels are coupled together to increase the adhesive force between the wheels and the track, it is called as coupled locomotive. otherwise, it is called as uncoupled locomotive.
          A single or uncoupled locomotive is one, in which the effort is transmitted to one pair of the wheels only; Whereas in coupled locomotives, the driving wheels are connected to the leading and trailing wheel by an outside connecting rod.
          Thus, whereas in uncoupled locomotive, there are four planes for consideration, two of the cylinders and two of the driving wheels, In coupled locomotives there are six planes, two of cylinders, two of coupling rods and two of wheels. The planes which contain the coupling rod masses lie outside the planes that contain the balance (counter) masses. Also, in case of coupled locomotives, the mass required to balance the reciprocating parts is distributed among all the wheels which are coupled. Thus, results in a reduced Hammer Blow.

Friday, 3 March 2017

OBJECTIVE QUESTIONS - Balancing Of Reciprocating masses

Balancing Of Reciprocating masses
Objective type questions

1. The primary unbalanced forces is maximum when the angle of inclination of the crank with the line of stroke is
(a) 0°           (b)  90°
(c) 180°        (d) 360° 

2. The partial balancing means
(a) Perpendicular to axis 
(b) Parallel to its axis 
(c) In a circle about the axis

3. When a body is subjected to transverse vibrations, the stress induced in a body will be
(a) Shear stress          (b) Tensile stress          (c) Compressive stress

4. In a locomotive, the ratio of the connecting rod length to the crank radius is kept very large in order to
(a) Minimise the effect of primary forces     (b) Minimise the effect of secondary forces
(c) Have perfect balancing                                 (d) Start the locomotive quickly 

5. The swaying couple is maximum or minimum when the angle of inclination of the crank to the line of stroke ( θ ) is equal to
(a) 45° and 135°               (b) 90° and 135°  
(c) 135° and 225°             (d) 45° and 225° 


6. The tractive force is maximum or minimum when the angle of inclination of the crank to the line of stroke ( θ ) is equal to
(a) 90° and 225°               (b) 135° and 180°  
(c) 180° and 225°             (d) 135° and 315° 

7. The swaying couple is due to the 
(a) Primary unbalanced forces              (b) Secondary unbalanced forces
(c) Two cylinders of locomotive            (d) Partial balancing 

8. In a locomotive, the maximum magnitude of the unbalanced force along the perpendicular to the line of stroke, is known as 
(a) Tractive force                                      (b) Swaying couple
(c) Hammer blow                                     (d) None of these

9. The effect of hammer blow in a locomotive can be reduced by 
(a) Decreasing the speed                (b) Using two or three pairs of wheels coupled together
(c) Balancing whole of the reciprocating parts              (d)  Both (a) and (b)

10. Multi-cylinder engines are desirable because 
(a) Only balancing problems are reduced      (b) Only flywheel size is reduced
(c) Both (a) and (b)                                            (d) None of these

11. When the primary direct crank of a reciprocating engine makes an angle with the line of stroke, then the secondary direct crank will make an angle of . . . . . . . with the line of stroke. 
(a)  θ/2                   (b)  θ                    (c)  2θ                  (d)  3θ

12. Secondary forces in reciprocating mass on engine frame are 

(a) Of same frequency as of primary forces
(b) Twice the frequency as of primary forces

(c) Four times the frequency as of primary forces
(d) None of these

13. The Secondary unbalanced force produced by the reciprocating parts of a certain cylinder of a given engine with crank radius 'r' and connecting rod length 'l' can be considered as equal to primary unbalanced force produced by the same weight having 
(a) An equivalent crank radius r2/4and rotating at twice the speed of the engine
(b) r2/4l as equivalent crank radius and rotating at engine speed
(c) Equivalent crank length of r2/4and rotating at engine speed
(d) None of these

14. Which of the statement is correct?
(a) In any engine, 100% of the reciprocating masses can be balanced dynamically
(b) In the case of balancing of multicylinder engine, the value of secondary force is higher than the value of the primary force
(c) In case of balancing of multimass rotating systems, dynamic balancing can be directly
(d) None of these



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