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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056
Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 729
Manufacturing And Development Of Tricycle Drive
Prof. Pramod R. Dabhade1, Prof. Mohan R. Dabhade, Prof. Vijaykumar S. Ghorade, Prof. Shrikant G.
Awchar
1 Professor, Department Of Mechanical Engineering, STC, SPRT. Khamgaon
2 Professor, Department Of Mechanical Engineering, APC, Chikhali
3 Professor, Department Of Mechanical Engineering, STC, SERT, Khamgaon
4 Professor, Department Of Mechanical Engineering, STC, SPRT. Khamgaon
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - To reduce the human effort and to improve the
efficiency of tricycle the modification in tricycle has done.
The chain & sprocket drives with the addition of Fixed &
Moving Magnet the tricycle drive are designed. The
Magnetic flywheel adjustment improves the efficiency of
mechanism. The magnetic principle i.e., “The magnetic
moment of a magnet is a quantity that determines the force
that the magnet can exert on electric currents and the
torque that a magnetic field will exert on it,” is used. The
initial torque is given to mechanism, at a specific state or
condition the mechanism runs continuously with less input
torque due to rotation of magnetic flywheel or repulsive
force between the magnets. By means of using various
mechanisms we can easily do the development of tricycle
drive.
Key Words: Chain & Sprocket Drive, Fixed & Moving
Magnet, Pedestal Bearing etc.
1. INTRODUCTION
The first tricycle was built by a disabled man who wanted
to be able to maintain his mobility. The efficiency of that
tricycle is much less. The tricycle drive includes the
following Mechanisms:-
Chain & Sprocket Drive
Fixed & Moving Magnet
Pedestal Bearing
Chain and Sprocket mechanism is used to transmit the
motion from pedaling to the rear wheel with the improved
output. The pedestal Bearings are used for the mounting
purpose of shafts on the frame. The bearings are used to
reduce rotational friction and support radial and axial
loads. It achieves this by using at least two races to contain
the ball and transmit the loads through the balls.
Fig- 1 Line Dig of Design & Development of Tricycle Drive
2. LITERATURE SURVEY
A tricycle is a three-wheeled vehicle. The position of the
wheels can be either one wheel is positioned on the front
or the other two wheels positioned on the rear or vice
versa. While tricycles are often associated with the small
three-wheeled vehicles used by pre-school age children,
they are also used by adults for a variety of purposes. In
the United States and Canada, adult-sized tricycles are
used extensively by older persons for recreation,
shopping, and exercise. In Asia and Africa, tricycles are
used mainly for commercial transportation either of
passengers in pedicels or of freight and deliveries. Human-
powered tricycles are usually powered engine four stroke
through pedals, although some models have hand cranks.
Motorized tricycle can be powered with a variety of
methods, including motorcycle engines, smaller automatic
transmission scooter motors and electric motors. The
design of the tricycle been improved year by year towards
getting the convenience vehicle that meeting the customer
or user expectation in term of mobility, maneuverability,
performance and operating comfort and safety.
3. DESCRIPTION OF COMPONENTS
3.1 Chain & sprocket drive
A sprocket or sprocket-wheel is a profiled wheel
with teeth, cogs, or even sprockets that mesh with a chain,
track or other perforated or indented material. The name
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056
Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 730
'sprocket' applies generally to any wheel upon which are
radial projections that engage a chain passing over it. It is
distinguished from a gear in that sprockets are never
meshed together directly, and differs from a pulley in that
sprockets have teeth and pulleys are smooth. Sprockets
are used in bicycles, motorcycles, cars, tracked vehicles,
and other machinery either to transmit rotary motion
between two shafts where gears are unsuitable or to
impart linear motion to a track, tape etc. Perhaps the
commonest form of sprocket is found in the bicycle, in
which the pedal shaft carries a large sprocket-wheel which
drives a chain which in turn drives a small sprocket on the
axle of the rear wheel.
Fig.- 2. Chain and Sprocket Drive
3.2 Magnet
The magnetic moment of a magnet is a quantity
that determines the force that the magnet can exert on
electric currents and the torque that a magnetic field will
exert on it. A loop of electric current, a bar magnet, an
electron, a molecule, and a planet all have magnetic
moments.
3.3 Flywheel
Flywheel energy storage (FES) works by
accelerating a rotor (flywheel) to a very high speed and
maintaining the energy in the system as rotational energy.
When energy is extracted from the system, the flywheel's
rotational speed is reduced as a consequence of the
principle of conservation of energy; adding energy to the
system correspondingly results in an increase in the speed
of the flywheel.
3.4 Bearing
A ball bearing is a type of rolling-element bearing
that uses balls to maintain the separation between the
bearing races. The purpose of a ball bearing is to reduce
rotational friction and support radial and axial loads. It
achieves this by using at least two races to contain the
balls and transmit the loads through the balls. In most
applications, one race is stationary and the other is
attached to the rotating assembly (e.g., a hub or shaft). As
one of the bearing races rotates it causes the balls to rotate
as well. Because the balls are rolling they have a much
lower coefficient of friction than if two flat surfaces were
sliding against each other.
4.EXPERIMENTAL SETUP WORKING
In our project we are using Magnetic Flywheel, Chain &
sprocket mechanism, pedaling, and Pedestal Bearing for
mounting purpose. The line diagram shows the systematic
arrangement of the mechanism, when the Manuel effort is
applying on the pedal, chain and sprocket drive transmits
the power from running shaft to another shaft. On the
same shaft the two magnets i,e. Magnetic flywheel one is
Fixed magnet and another is Moving magnet. The fixed
magnet is mounted on the frame, and the moving magnet
is mounted on the bearing and which maintain some
distance in between them for rotating purpose. When the
power is transferred to running shaft the magnets
mounted on them i.e, moving magnet also rotates but the
arrangement is given in between the magnets that the
same poles of magnets are given due to this magnetic
property of repulsion in between the both the moving and
fixed magnet the moving magnet moves continuous with
improved efficiency and from this the another chain and
sprocket arrangement is given to the rear wheel of
tricycle. From this property of magnet some amount of
improved efficiency of mechanism gets. This mechanism is
also implements in the wheel chair for disabled people to
reduce their effort.
Project images
Fig.-3 Side view
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056
Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 731
Fig.- 4 Actual Project Image
5. RESULT AND DISCUSSION
Case 1: Without Movable Magnetic Flywheel
In our Project firstly we have taken the observations
without movable Magnetic Flywheel.
With the help of speedometer we have got the
observations as follows:-
N= 55 rpm
P= 1.5 kw
Fig. 5. Without Movable Magnetic Flywheel
Case 2: With The adjustment of Magnetic Flywheel
Also the observation taken with the help of adjusting the
magnets on the Moving Magnetic Flywheel and setting the
distance between the both flywheels and Magnets, We
have got the improved revolutions per min and the
reduced the manual power i;e
N =65
P = 1.5 kw
Fig.- 6 With the adjustment of Magnetic Flywheel
Table -1: Specification of experimental setup
Parts Name Dimension Quantity
Sprocket No. of teeth 44 &
21
4
Chain - 2
Wooden
flywheel
R 15 cm 2
Magnet - 8
Speedometer - 1
Wheel R 22 cm 2
Seat - 1
Pedestal Bearing - 4
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056
Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 732
Shaft Dia. 27 mm 2
Pedal - 1
M.S. Tubular Bar 25 mm
6. CONCLUSIONS
With the help of above information in the paper we can
easily conclude that this mechanism of tricycle drive has
large range of applications. And we also easily do the
development of tricycle drive. With this conclusion we can
use this mechanism in exercise cycle equipment, for
disabled people etc.
REFERENCES
[1] Mark Shenton, “London's Tricycle to Reprise Great
Game: Afghanistan, Plus New Blessing Play” 24 March
2010
[2] David Mozer, “Bicycle History, Chronology of the
Growth of Bicycling and the Development of Bicycle
Technology” 2012-09-01.
[3] Gerges David, "Still motoring on! World's oldest car up
for sale and expected to fetch £1.6m at auction".26
September 2011
[4] Dr. Kripal Singh Edition 10, Automobile Engg, Year
2007

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Manufacturing And Development Of Tricycle Drive

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 729 Manufacturing And Development Of Tricycle Drive Prof. Pramod R. Dabhade1, Prof. Mohan R. Dabhade, Prof. Vijaykumar S. Ghorade, Prof. Shrikant G. Awchar 1 Professor, Department Of Mechanical Engineering, STC, SPRT. Khamgaon 2 Professor, Department Of Mechanical Engineering, APC, Chikhali 3 Professor, Department Of Mechanical Engineering, STC, SERT, Khamgaon 4 Professor, Department Of Mechanical Engineering, STC, SPRT. Khamgaon ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - To reduce the human effort and to improve the efficiency of tricycle the modification in tricycle has done. The chain & sprocket drives with the addition of Fixed & Moving Magnet the tricycle drive are designed. The Magnetic flywheel adjustment improves the efficiency of mechanism. The magnetic principle i.e., “The magnetic moment of a magnet is a quantity that determines the force that the magnet can exert on electric currents and the torque that a magnetic field will exert on it,” is used. The initial torque is given to mechanism, at a specific state or condition the mechanism runs continuously with less input torque due to rotation of magnetic flywheel or repulsive force between the magnets. By means of using various mechanisms we can easily do the development of tricycle drive. Key Words: Chain & Sprocket Drive, Fixed & Moving Magnet, Pedestal Bearing etc. 1. INTRODUCTION The first tricycle was built by a disabled man who wanted to be able to maintain his mobility. The efficiency of that tricycle is much less. The tricycle drive includes the following Mechanisms:- Chain & Sprocket Drive Fixed & Moving Magnet Pedestal Bearing Chain and Sprocket mechanism is used to transmit the motion from pedaling to the rear wheel with the improved output. The pedestal Bearings are used for the mounting purpose of shafts on the frame. The bearings are used to reduce rotational friction and support radial and axial loads. It achieves this by using at least two races to contain the ball and transmit the loads through the balls. Fig- 1 Line Dig of Design & Development of Tricycle Drive 2. LITERATURE SURVEY A tricycle is a three-wheeled vehicle. The position of the wheels can be either one wheel is positioned on the front or the other two wheels positioned on the rear or vice versa. While tricycles are often associated with the small three-wheeled vehicles used by pre-school age children, they are also used by adults for a variety of purposes. In the United States and Canada, adult-sized tricycles are used extensively by older persons for recreation, shopping, and exercise. In Asia and Africa, tricycles are used mainly for commercial transportation either of passengers in pedicels or of freight and deliveries. Human- powered tricycles are usually powered engine four stroke through pedals, although some models have hand cranks. Motorized tricycle can be powered with a variety of methods, including motorcycle engines, smaller automatic transmission scooter motors and electric motors. The design of the tricycle been improved year by year towards getting the convenience vehicle that meeting the customer or user expectation in term of mobility, maneuverability, performance and operating comfort and safety. 3. DESCRIPTION OF COMPONENTS 3.1 Chain & sprocket drive A sprocket or sprocket-wheel is a profiled wheel with teeth, cogs, or even sprockets that mesh with a chain, track or other perforated or indented material. The name
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 730 'sprocket' applies generally to any wheel upon which are radial projections that engage a chain passing over it. It is distinguished from a gear in that sprockets are never meshed together directly, and differs from a pulley in that sprockets have teeth and pulleys are smooth. Sprockets are used in bicycles, motorcycles, cars, tracked vehicles, and other machinery either to transmit rotary motion between two shafts where gears are unsuitable or to impart linear motion to a track, tape etc. Perhaps the commonest form of sprocket is found in the bicycle, in which the pedal shaft carries a large sprocket-wheel which drives a chain which in turn drives a small sprocket on the axle of the rear wheel. Fig.- 2. Chain and Sprocket Drive 3.2 Magnet The magnetic moment of a magnet is a quantity that determines the force that the magnet can exert on electric currents and the torque that a magnetic field will exert on it. A loop of electric current, a bar magnet, an electron, a molecule, and a planet all have magnetic moments. 3.3 Flywheel Flywheel energy storage (FES) works by accelerating a rotor (flywheel) to a very high speed and maintaining the energy in the system as rotational energy. When energy is extracted from the system, the flywheel's rotational speed is reduced as a consequence of the principle of conservation of energy; adding energy to the system correspondingly results in an increase in the speed of the flywheel. 3.4 Bearing A ball bearing is a type of rolling-element bearing that uses balls to maintain the separation between the bearing races. The purpose of a ball bearing is to reduce rotational friction and support radial and axial loads. It achieves this by using at least two races to contain the balls and transmit the loads through the balls. In most applications, one race is stationary and the other is attached to the rotating assembly (e.g., a hub or shaft). As one of the bearing races rotates it causes the balls to rotate as well. Because the balls are rolling they have a much lower coefficient of friction than if two flat surfaces were sliding against each other. 4.EXPERIMENTAL SETUP WORKING In our project we are using Magnetic Flywheel, Chain & sprocket mechanism, pedaling, and Pedestal Bearing for mounting purpose. The line diagram shows the systematic arrangement of the mechanism, when the Manuel effort is applying on the pedal, chain and sprocket drive transmits the power from running shaft to another shaft. On the same shaft the two magnets i,e. Magnetic flywheel one is Fixed magnet and another is Moving magnet. The fixed magnet is mounted on the frame, and the moving magnet is mounted on the bearing and which maintain some distance in between them for rotating purpose. When the power is transferred to running shaft the magnets mounted on them i.e, moving magnet also rotates but the arrangement is given in between the magnets that the same poles of magnets are given due to this magnetic property of repulsion in between the both the moving and fixed magnet the moving magnet moves continuous with improved efficiency and from this the another chain and sprocket arrangement is given to the rear wheel of tricycle. From this property of magnet some amount of improved efficiency of mechanism gets. This mechanism is also implements in the wheel chair for disabled people to reduce their effort. Project images Fig.-3 Side view
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 731 Fig.- 4 Actual Project Image 5. RESULT AND DISCUSSION Case 1: Without Movable Magnetic Flywheel In our Project firstly we have taken the observations without movable Magnetic Flywheel. With the help of speedometer we have got the observations as follows:- N= 55 rpm P= 1.5 kw Fig. 5. Without Movable Magnetic Flywheel Case 2: With The adjustment of Magnetic Flywheel Also the observation taken with the help of adjusting the magnets on the Moving Magnetic Flywheel and setting the distance between the both flywheels and Magnets, We have got the improved revolutions per min and the reduced the manual power i;e N =65 P = 1.5 kw Fig.- 6 With the adjustment of Magnetic Flywheel Table -1: Specification of experimental setup Parts Name Dimension Quantity Sprocket No. of teeth 44 & 21 4 Chain - 2 Wooden flywheel R 15 cm 2 Magnet - 8 Speedometer - 1 Wheel R 22 cm 2 Seat - 1 Pedestal Bearing - 4
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 04 Issue: 01 | Jan -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 732 Shaft Dia. 27 mm 2 Pedal - 1 M.S. Tubular Bar 25 mm 6. CONCLUSIONS With the help of above information in the paper we can easily conclude that this mechanism of tricycle drive has large range of applications. And we also easily do the development of tricycle drive. With this conclusion we can use this mechanism in exercise cycle equipment, for disabled people etc. REFERENCES [1] Mark Shenton, “London's Tricycle to Reprise Great Game: Afghanistan, Plus New Blessing Play” 24 March 2010 [2] David Mozer, “Bicycle History, Chronology of the Growth of Bicycling and the Development of Bicycle Technology” 2012-09-01. [3] Gerges David, "Still motoring on! World's oldest car up for sale and expected to fetch £1.6m at auction".26 September 2011 [4] Dr. Kripal Singh Edition 10, Automobile Engg, Year 2007