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MANUFACTURING TECHNOLOGY- II
Periods / Week: 4+1                                                      Examination : 3Hrs
Total period     : 60                                               End exams 	TH  : 80 marks
                                                                                    	 	I.A. : 20 marks
Topic wise distribution of periods

Sl.No.                            Topic                                		Periods
1                           	Tool Materials                                 	04
2                           	Cutting Tools                                   	06
3                           	Lathe Machine                                 	08
4                           	Shape                                                	06
5                           	Planning M/C                                  	06
6                           	Milling                                              	08
7                           	Slotter                                               	06
8                           	Grinding                                          	06
9                           	Drilling, Boring, Broaching               06
10                          	Surface finish, lapping                    	04
                                                          Total Period      	60
RATIONALE:

Engineering basically means production of goods & services for human consumption. The major function of mechanical engineering is to manufacture various products using machineries, production processes & production management techniques. Therefore, this is one of the most important subjects to be learned by a mechanical & automobile engineer.

 COURSE CONTENTS:

Tool  Materials
State Composition of various tool materials
State physical properties & uses of such tool materials.

Cutting Tools
Explain cutting action of various hand tools such as Chisel, hack saw blade
Explain cutting action of dies & reamer 
Describe tool geometry of turning tool & milling cutter
State purpose of providing different tool and specify the angels for different materials to be machined
Define speed & feed
Specify various coolants and lubricants
State the purpose of using coolants & lubricants.


Lathe Machine
S.S & S.C lathe
Define S.S & S.C lathe
Identify the different operations of lathe & their functions
Enlist the different operations on lathe
State & explain turning, grooving, step turning, thread cutting, taper turning parting off
State the safety precations needed
Capstan lathe
Explain the function of different components
Define multiple tool holders
Turret Lathe
Explain the functions of different components
Differentiate between capstan & turret lathe
Explain the indexing arrangement for turret head
Draw the tooling lay out for preparation of a hexagonal bolt & bush
State the advantages of capstan, turret lathe over S.S & S.C lathe
Explain with neat sketch the feeding mechanism.

Shaper
List out the different parts
Describe the functions of above parts
Explain the automatic table feed mechanism
Explain the construction & working of tool head
Explain the quick return mechanism through sketch
State the specification of a shaping machine.

Planning Machine
Enlist different parts
Describe explain the function of parts
Explain the table drives mechanism
Explain the working of tool and tool support
Explain the clamping of work through sketch.

Milling Machine
Describe various types of milling machine and operations performed by them
Explain work holding attachment
Describe construction & working of simple dividing head, universal dividing head
Explain the procedure of simple indexing
Explain the procedure of compound indexing
Describe the different numerical indexing procedure
Show one example from each indexing method.

Slotter
Enlist the different parts
Explain the construction & working
Specific various tools.

Grinding
Define grinding
Explain manufacturing of grinding wheels
State Criteria for selecting of grinding wheels
Explain specification of grinding wheels with example
Explain working of
Cylindrical Grinder
Surface Grinder
Centre less Grinder.
Drilling
Classify  of drilling machines
Explain the working of
Bench drilling machine
Pillar drilling
Radial drilling machine
Boring
Basic Principle of  Boring
9.3.2 Different between Boring and drilling
Broaching
Types of Broaching (pull type, push type)
Advantages of Broaching
Application of Broaching

Surface finish, lapping
Define Surface finish
Define super finishing
Describe lapping & explain their specific cutting.

RECOMMENDED BOOKS:
Text Books
  Work shop Technology by Hazra Choudhary Vol.-I, Vol.-II
  Work shop Technology Part-I & II by W.A.S Chapman
Reference Books
     1.	Manufacturing Technology by P. N. Rao, Vol.- I, Vol.- II



4th SEM-Mech.


THEORY OF MACHINES
Periods / Week: 4+1                                                      Examination : 3Hrs
Total period     : 60                                               End exams 	TH  : 80 marks
                                                                                    	 	I.A. : 20 marks
Topic wise distribution of periods
Sl.No.				Topic				       Periods
01			Simple Mechanism			10
02			Friction					12
03			Power Transmission			12
04			Governors and flywheels		09
05			Balancing of machine parts		09
06			Vibration of machine parts.		08
				Total Period			60
RATIONALE:
Mechanical and Automobile engineering is involved with design, manufacture and use of various types of machines. Each machine consists of a large number of static and moving parts or sub assemblies called mechanisms. There exist a large number of different types of mechanisms. Each of these mechanisms can generate a particular type of output motion with some other kind of input motion. Theory of machines is study of such different kinds of mechanisms. It is, therefore, necessary to study and understand functions of different type of mechanisms for design, manufacture and use of various machines.

CONTENTS (in terms of specific objectives):
Simple Mechanisms
Understand the subject of theory of machine
Define
Link
Kinematics
Kinematics chain
Mechanism
Inversion
Explain
Lower pair
Higher pair
Four bar link mechanism with their inversions
Cam and followers.

2  Friction
2.1 Laws of dry friction
2.2 Explain
2.2.1 Friction on horizontal plane
2.2.2 Friction on inclined plane
     2.2.3 Angel of repose
     2.2.4   Friction between nut and screw for square threads
2.3 Explain principle of single and multiple collar bearings
2.4 Derive the formula for torque transmission and power for
      2.4.1   Flat pivot bearing
      2.4.2   Conical pivot bearing
           2.4.3    Flat collar bearing of single and multiple types
2.5 Derive the formula for torque and power transmission for screw jack, single and multiple clutches 
2.6   Solve numerical problems on above
2.7 Explain the concept of rolling friction
2.8 Describe
2.8.1   Roller bearings
2.8.2   Needle roller bearings
2.8.3   Ball bearings
2.9 Classify the bearings
2.10 State function of bearings
2.11 Explain the working of
2.11.1		Simple frictional brakes
2.11.2		Absorption type of dynamometers.

3.0 Power Transmission
3.1 Explain the concept of
3.1.1	Power Transmission
3.1.2	Type of drives
3.1.2.1	Belt drive
3.1.2.2	Gear drive
      3.2 Derive the formula for
 3.2.1	Velocity ratio
           3.2.2	Length of belt of
3.2.2.1	Open belt drive
3.2.2.2	Cross belt drive
3.2.3	Ratio of tensions
3.2.4	Centrifugal tensions
3.2.5	Initial tensions
3.2.6	Power transmitted by belt
3.2.7	Width of belt required
      3.3 Explain the use of
3.3.1	Idle pulleys
3.3.2	Jocky pulley
3.3.3	V_belts and V_belts pulleys
3.3.4	Fast and loose pulleys
     3.4	   Explain the concept of crowning of pulleys
     3.5 Gear Drivers
     3.6 Classify gears
     3.7	 Define velocity ratio for
3.7.1	Simple gear train
3.7.2	Compound gear train
3.7.3	Epicyclic gear train
    3.8	Solve numerical problems on
3.8.1	Circular pitch
3.8.2	Diametral pitch
3.8.3	Module
    3.9 Explain the working principle of 
3.9.1	Simple gear train
3.9.2	Compound gear train
3.9.3	Reverted gear train
3.9.4	Epicyclic gear train.

4. Governors and Flywheels
 State the function of governors
4.2 Classify governors
4.3 Describe working of (no mathematical treatment)
Watt governor
Porter governor
Proel governor
Hartnell governor
Define
Sensitivity
Stability
Isochronism
Explain function of a flywheel
Define and write the formula
Fluctuation of energy
Coefficient of fluctuation of speed
Find out required weight of flywheel.

 Balancing of Machine Parts
   Explain the concept of balancing
   Explain static belonging of rotating parts
   Explain the principle of balancing of reciprocating masses
   State the causes and effect of unbalance
   Different between static and dynamic balancing.

  Vibration in Machine Parts
  Introduction to vibration
Classify vibrations
Explain the basic concept of
Natural Vibration
Forced Vibration
Damped Vibration
Torsional Vibration
Longitudinal Vibration
 Define with respect to vibration
Cycle
Amplitude
Time Period
 State the causes of Vibration
 State the points for remedies of vibration.

RECOMMENDED BOOKS:
Text Books:
Theory of Machine by R. S. Khurmi.
Theory of Machine by Saha Jadavani.
Theory of Machine by S S Ratan
Reference Books
Theory of Machines by Thomas Bevan, CBS Publishers & Distributors.
Theory of Machines by Abdulla Shariff. Dhanpat Rai & Sons.























4th SEM-Mech.

Hydraulic Machines and Fluid power
Periods / Week: 4+1                                                      Examination : 3Hrs
Total period     : 60                                               End exams 	TH  : 80 marks
                                                                                    	 	I.A. : 20 marks
Topic wise distribution of periods

Sl. No.                            Topic                                		Periods
  1                         	Turbines                                     	12
  2                        	Centrifugal Pump                       	12
  3                        	Reciprocating Pump                    	08
  4                        	Pneumatic system                         	14
  5                        	Hydraulic Control system           	14
                                                           Total Period   	60
RATIONALE:

Use of fluids can be realized by a group of machine called Hydraulic machines.
Use of Pneumatic and hydraulic control system in Automation.

 COURSE CONTENTS:
Turbines.
Design & Classify water turbine
Describe Construction & working of  wheels
Draw velocity triangular for a single bucket
Estimate work done & efficiencies for  wheels
Solve numerical problem on above
Describe Construction & working of Francis turbine
Draw velocity triangular for Francis turbine
Estimate work done & efficiencies for Francis is turbine
Solve numerical problems on above
Draw velocity triangle for in word & outward flow reaction turbines
Solve numerical problems on above
Describe Construction & working of Kaplan turbines
Describe governing of hydraulic turbine
Explain the working of surge tanks &  draft tubes
State the criteria for selection of hydraulic turbines
Solve numerical problems quantity of water, head, power & efficiency.
Centrifugal pump
Define & classify pumps
Centrifugal pumps
Describe construction & working of pump
Draw velocity triangle for single vane of impeller
Compute the work done for same
Define various heads of pumps
Define manometer efficiency
Solve numerical problems on above
Define manometer speed
Derive the working of multistage pumps
Derive the expression for minimum speed
Explain the working of multistage pumps
Explain priming of pumps with various priming procedure used.
State the method of prevention of air intake for pumps.
Reciprocating pumps
Describe construction & working of single acting reciprocating pump
 Describe construction & working of double acting reciprocating pump.
Define slip
State positive & negative slip
Establish relation between slip & coefficient of discharge
Derive the formula for HP required to device
Single acting reciprocating pump
Double acting reciprocating pump
Solve numerical problems on above.
Pneumatic systems
Pressure Control valves
Pressure relief valves 
Pressure regulator valves
Directional control valves
3/2 DCV, 4/2 DCV, 4/3 DCV, 5/2 DCV
Flow control values, throttle values, shuttle values, quick exhaust values
Pneumatic circuits
Direct control of single acting Cylinder
Operation of above acting Cylinder
Operation of double acting Cylinder with metering in control
Operation of double actions cylinder with metering out control
Use of shuttle value in pneumatic circuits
Use of quick exhaust valve in pneumatic circuits
Automatic operation of double acting cylinder
Merits & demerits of pneumatic system application.
Hydraulic Control Systems
Hydraulic system � merits & demerits
Service properties of hydraulic fluids
Hydraulic accumulator
Weighted or gravity type accumulator spring loaded type gas filled bladder accumulators
Pressure intensifier
Fluid power pumps
 External & internal pumps, vane pump radial piston pumps
ISO symbols for hydraulic components
Hydraulic circuit using sequencing valve
Hydraulic circuit using counter balance valve
Hydraulic circuit for shaping machine
Table movement in surface grinding machine & millings machine
Compression of hydraulic & parameter systems.

RECOMMENDED BOOKS:
Text Book:
A Text Book of Hydraulics, Fluid Mechanics:  R.S.Khurmi.
A Text Book of Hydraulics: R.K. Rajput.
Fundamental  of pneumatic control engineering-FESTO
Hydraulics and Pneumatics Control: K. Shanmuga Sundaram
Pneumatics and Oil Hydraulics
























4th SEM-Mech.


Thermal Engg. - II
Periods / Week: 4+1                                                      Examination: 3Hrs
Total period     : 60                                              End exams TH: 80 marks
                                                                              		     I.A.: 20 marks

Topic wise distribution of periods

Sl. No.                            Topic                                		Periods
   1                      	Properties & Process of Vapour       	10
   2                        	Steam generator                               	08
   3                        	Steam power cycle                           	08
   4                        	Steam nozzle                                    	08
   5                        	Steam turbine                                     	12
   6                        	Condenser                                        	06
   7                        	Gas turbine & Jet Propulsion           	08
                                                            Total Period      	60

COURSE CONTENTS:
Properties and process of vapours
Difference between gas and vapour
Formation of steam
Representation in P-V and T-S diagram
Definition and properties of steam
Steam table, Mollier diagram
Non flow and flow process of vapour
P-V, T-S and H-S diagram
Determine the changes in properties
Heat and work transfer
Steam Calorimeter.
Steam Generator
Classification and types of boiler
Fire tube and water tube boiler
Straight tube and bend tube boiler
Description and working of common boiler
Boiler accessories and mountings
Function and description
Fuel burning equipment
Draught
Forced
Induced
Balanced
Modern high pressure and high capacity boiler
Circulation in boiler, risers
Performance of boiler
Equivalent evaporation, boiler efficiency & power (Simple problems).
Steam power cycle
Carnot cycle with gas
Carnot cycle with vapour
Derive work, and efficiency of above two cycles
Rankin cycle
Representation in P-V, t-s and h-s diagram
Derive work and efficiency
Effect of various end conditions in ranking cycle
Reheat cycle and regenerative cycle.
Steam nozzles
Steam nozzles types
Continuity equation, steady-flow energy equation
Convergent and convergent divergent nozzle
Critical pressure ratio, effect of friction
Nozzle efficiencies, velocity of steam leaving nozzle.
Steam turbine
Principle of working
Classification Impulse, reaction, impulse reaction, velocity compound, pressure velocity compounding turbines
Velocity diagram for single stage impulse turbine
Tangential thrust, axial thrust, blade work
Blade efficiency, stage efficiency, governing of turbine, losses in turbines
Condenser
Function of Condenser
Classification of jet and surface condenser
Description of surface condenser
Daltons law of partial pressure and its application
Cooling water requirement
Cooling towers and spray ponds, purpose, types & description.
Gas turbine & Jet Propulsion
Advantages of gas turbine over steam turbine & I.C. engine
Constant pr. gas turbine
Constant vol. gas turbine
Closed cycle & open cycle gas turbine
Working principle of Jet engine and Rocket engine
Fuel used in jet engine.


RECOMMENDED BOOKS:
Text Book:1.  Thermal Engineering. A. S. Sarao
2.  Thermal Engg. By A. R. Basu
Reference Book:
1.  Thermal Engg. By P. L. Balany. 
2.   Engineering Thermodynamics by P. K. Nag                                                                                        






































  4th SEM-Mech.
Mechanical Engg. Drawing
Periods / Week: 6                                                    Examination: 4Hrs
Total period     : 90                                              	End exams:    100 marks
                                                                                      	Ses: 	     50 marks

Course Contents:

Draw different types of
Bolts, nuts, threads
Screw, Rivets
Joints
Cotter joint
Knuckle joint
Flange coupling (protected type)
Rigid pedestal bearing
Flat belt pulley
Engine connecting rod
Boiler Safety value (spring loaded)
Hydraulic non return valve
Eccentric Sheaves
Screw Jack

RECOMMENDED BOOKS:
Text Book:
Machine Drawing by R. K. Dhawan
Machine Drawing by N. D. Bhatt
Machine Drawing by T. Jones.
















                                                                                              4th SEM-Mech.
MEL - II
Periods / Week: 05                                                       Examination: 4Hrs
Total period     : 75                                              	End exams 	: 50 marks
                                                                                     	 Ses    : 25 marks
 									Total	 :  75
Material testing Lab:-
Determine Young�s Modulus by UTM
Determine compressive stress of wooden block / concrete block by compression testing machine
Determine the hard ness number by Rockwell / Vickers hardness testing machine
Determine the resistance of material to the impact load by Izoid / Charpy test

Thermal Engineering Lab
Model studies of Boiler (Accessories, mounting)
Performance testing of diesel engine
Determine the B.H.P, I.H.P BSFC of a multi cylinder engine by Morse test
Determine the over all efficiency mechanical efficiency, at air compressor

 Hydraulic m/c Lab
Performance test of reciprocating or centrifugal pump and draw the characteristics curve 
Performance test of Impulse turbine
Performance test of Reaction turbine (Kaplan / Francis)





















4th SEM-Mech.

WORKSHOP PRACTICE- III
Period/ week: 06					Exam: 4 hrs
Total period	: 90					End exam     50 marks
							Sessional      25 marks
							Total		75 marks
Advanced machining practice
Job practice involving
Drilling
Boring
Internal V-thread cutting
Operation of Capstan and turret lathe

Machine shop
Making V- block in shaping machine
Machining horizontal and vertical surface on planning machines
Making a key way on slotting machine
Different types of surfacing and gear cutting on milling machines

Foundry practice
Use of foundry tools and equipments
Preparation of moulding sand
Making of simple moulds
Making cores using different types of pattern
Study of cupola and tilting furnace
One job on ferrous/non ferrous casting

Advanced Welding Practice
Practice on MIG/TIG welding (Joining two non � ferrous parts)













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