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EDDY CURRENT RETARDER

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EDDY CURRENT RETARDER Indian Institute of Technology Hyderabad DIPIN K NAIR ME12B1014 KENNETH JOSEPH PAUL ME12B1020 NAVANEETH T CHANDRAN ME12B1025 – PowerPoint PPT presentation

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Title: EDDY CURRENT RETARDER


1
EDDY CURRENT RETARDER
Indian Institute of Technology
Hyderabad
DIPIN K NAIR ME12B1014 KENNETH JOSEPH
PAUL ME12B1020 NAVANEETH T CHANDRAN ME12B1025 V
IVEK D S ME12B1044 VIVEK A K ME11B1037
2
INTRODUCTION
  • This projects intends to the design and
    implementation of new system of retardation
    (braking) for automobiles
  • The design of the new brakes is based upon the
    phenomenon of electromagnetic induction and eddy
    currents
  • The design basically consists of very strong
    magnet and rotating metallic wheel
  • The wheel develops eddy currents due to the
    change in magnetic flux associated to the wheel
    due to its rotation
  • The eddy current development obeys Maxwells law
    of electromagnetic induction and Lenzs law of
    direction of induced current
  • The current in turn dissipates the rotational
    energy of the wheel as heat bringing the wheel to
    a stop

3
EXISTING BRAKING METHODS
  • Drum brakes
  • Disk brakes
  • Hydraulic brakes
  • Electric brake
  • ABS (Anti skid Braking System)

Disk brake
Air brake
Disk brake
4
NEED FOR ALTERNATIVE
  • All conventional systems of braking in road
    vehicles uses development of contact friction for
    retardation
  • These systems are probe to the wear and tear on
    usage
  • Conventional braking systems produces continuous
    power dissipation as heat and may fail if the
    temperature rises too high
  • Friction based braking methods are also not
    efficient under wet conditions
  • Weight brakes add additional weight to the
    automobile serving no other purpose and
    significantly reducing traction under certain
    circumstances
  • Brakes usually creates small noise on application
    and may also create loud screeches on hard usage

5
DESIGN
  • The design consists of following parts
  • Aluminium wheel
  • Mild steel shaft
  • Free wheels
  • Strong permanent magnet
  • 12v DC motor
  • 12v /2.5 Ah lead battery
  • Metallic frame
  • Braking arm

6
PROS
  • High impact
  • Less friction
  • Low maintenance requirement
  • Less noise
  • Simple in design
  • High degree of safety

7
CONS
  • Failure to act as a holding device
  • Usage of electric power for braking
  • Less effective under very low velocities

8
APPLICATIONS
  • Already in use under some railway system
  • Can be used for any road vehicles
  • Equally applicable to heavy and light vehicles
  • Can be used as additional retarder for aircrafts
  • May also find application in virtually any
    rotating system which have metallic parts
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