Fluid Mechanics & Pneumatics detailed syllabus for Tool & Die Engineering (Tool & Die) for 2015 revision curriculum has been taken from the SITTTRs official website and presented for the Tool & Die students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.
For Tool & Die Engineering 3rd Sem scheme and its subjects, do visit Tool & Die 3rd Sem 2015 revision scheme. The detailed syllabus of fluid mechanics & pneumatics is as follows.
Course Outcomes:
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SPECIFIC OUTCOME
MODULE I
- Understand the Properties of Fluid, Fluid Pressure and its Measurements
- Explain the areas of application of Hydraulics
- Appreciate the properties of Hydraulic Fluids
- Solve Simple problems related to density, specific weight, specific volume, and specific gravity.
- Understand the Fluid Pressure and the methods to Measure it
- Explain the terms pressure and pressure head and solve problems on these
- State and explain Pascal’s law
- Explain Absolute, Gauge, Atmospheric and Vacuum pressures.
- State the fundamental principles of pressure measuring devices
- illustrate the principle of working of piezometer, simple U-tube manometer, differential manometer, inverted differential manometer, bourdon’s tube pressure gauge and solve simple problems on those.
- Explain the term total pressure
- Solve problems using equations of total pressure on an immersed surface in horizontal, vertical and inclined positions.
- State buoyancy and the buoyant forces and solve simple problem
- Describe Metacentre and met centric height
MODULE II
- Understand the Kinematics and dynamics of fluid flow
- Explain the term Kinematics
- Explain the types of fluid flow –
- Explain the Rate of Discharge
- Explain the equation for continuity of flow with derivation
- Explain the energies possessed by a liquid particle that is potential, kinetic and pressure
- Define total energy and total head
- Derive & State Bernoulli’s equation .
- State the limitations of the Bernoulli’s theorem
- Solve the problems using Bernoulli’s equation
- Explain the practical applications of Bernoulli’s equation, Venturimeter, Pitot Tube, solve problems using it.
- Understand the Flow Through Orifice, Notches Pipes and Nozzles
- Illustrate the Flow of Liquids through Orifices, Notches and Pipes, also find the coefficient & discharge
- List the losses of head in pipes and identify Major losses and Minor losses
- Derive Darcy’s formula and Chezy’s formula for loss of head in pipes and explain the terms hydraulic mean depth, hydraulic gradient line and total energy line.
- Understand the transmission of power though pipes and the equation for power transmitted through a pipe
- State the functions of Nozzle and derive the exit velocity.
- Explain water hammer
MODULE III
- Understand the Power Hydraulics Technology
- Understand the basic law of Power Hydraulics Technology
- Identify the applications of hydraulic power
- Know the essential properties of the hydraulic oils and codes
- Illustrate the elements of Hydraulic System with standard symbols.
- Classify the pumps
- Explain the working principle of different type Positive displacement pumps
- Explain the Types of Hydraulic Actuators – Rotary (Hydraulic motor) – Semi-rotary-linear motion type (Hydraulic cylinders)
- Describe the working principle of different control valves – pressure control valves, direction control valves and flow control valves.
- Describe the types of accumulator
- Know the hydraulic circuits and its elements
- Illustrate Automatic cylinder reciprocating circuit and hydraulic circuit for robotic arm
MODULE IV
- Understand the Pneumatic system and Design of Circuits
- Compare the Pneumatic system with hydraulic system
- Identify the standard pneumatic symbols
- Understand the pneumatic control elements and components
- Explain with sketches pneumatic valves – direction control valves- pressure control valves and flow control valves
- Describe the pneumatic actuators – pneumatic cylinders, air motors – types applications
- Understand the simple pneumatic circuit
- Describe the principle of power operated holding devices – clamping circuits
- Understand hydraulic, pneumatic and hydro pneumatic systems
- Explain the principle of working of air controlled valves and oil controlled valves
- Sketch the arrangements for the control of hydraulic circuits by air
- Know the elementary idea about design of hydraulic/pneumatics circuits and its simulation
MODULE – I
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MODULE – II
matics and Dynamics of fluid flow- Introduction – types of fluid flow – steady and unsteady flow -uniform and non-uniform flow – laminar and turbulent flow – compressible and incompressible flow -rotational and irrotational flow – one- two and three dimensional flow – Rate of flow or discharge -equation of continuity of liquid flow – simple problems – Energy of a liquid in motion – potential energy- kinetic energy- pressure energy- total energy- Total head of liquid in motion – Bernoulli’s equation (with derivation ) – assumptions – simple problems – practical applications of Bernoulli’s equation – venturimeter – Orifice meter – Pitot tube – simple problems. Flow through Orifices-Notches- Pipes and Nozzles -Orifices – types of orifices – Vena contracta – coefficient of contraction -coefficient of velocity – coefficient of discharge – simple problems- Notches – types of notches -Rectangular notches – triangular notch – trapezoidal notch – discharge over notches – simple problems – loss of head in pipes – major energy losses – minor energy losses – loss of energy due to friction -Darcy’s formulae(with derivation) for loss of head in pipes – Chezy’s formula for loss of head in pipes -simple problems- transmission of power through pipes – simple problems – flow through Nozzle and derive the expression for velocity – water hammer
MODULE – III
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MODULE – IV
Pneumatic System- Comparison of pneumatic system with hydraulic system – identification of standard pneumatic symbols – basic pneumatic system – Reservoir- air filter- pressure regulator- lubricator- FRL unit- mufflers. Pneumatic control elements and components- Pneumatic control valves – operation of manually operated 2 way- 3 way- 4way directional control valves – solenoid valves – operation of manually and cam operated flow control valves. Air cylinders – types – light- medium- heavy- tandemduplex- double end types – Basic pneumatic circuits – principle of working of power operated holding devices – chuck and clamping device .- Comparison of hydraulic- pneumatic and hydro-pneumatic system -Application-circuits-Acceleration/retraction circuits-a study on design of hydraulic/pneumatics circuits and its simulation – Introduction to electro pneumatics – Practical applications of pneumatics
Text Books:
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Reference Books:
- Support materials in pneumatics – NITTTR- Chennai
- Pneumatic Systems Principles and maintenance – Majumdar (Tata Mc Graw Hill)
- Fluid Mechanics – Joseph H. Spurk. (Springer)
- Fluid Mechanics and Pneumatics -M.R.Thomas &C.K.M.Sagir(M&C Publishers)
- Festo Hydraulics and Pneumatics Manual
For detailed syllabus of all other subjects of Tool & Die Engineering, 2015 revision curriculum do visit Tool & Die 3rd Sem subject syllabuses for 2015 revision.
To see the syllabus of all other branches of diploma 2015 revision curriculum do visit all branches of SITTTR diploma 2015 revision.