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TO REDUCE THE MAINTENANCE
COST IN TRANSPORTATION
SYSTEM BY USING AIR SPRING
Suraj Kumar
Department of Mechanical Engineering, Bhagwant University,
Ajmer
ABSTRACT
The main purpose of the air spring is to restrict the vibration at a
desirable because with increased the speed, dynamic performance of the
vehicles is negatively affected. The trend towards higher rail vehicle
speeds generally results in increased vibrations in the car body, which
has a negative impact on ride comfort .The suspension of the vehicle has
to be modified in order to compensate vibration as well as work life
should have long i.e. maintenance cost is too low. In fact, most helical
spring possess low inherent damping thereby causing serious problems
which will impair the function and life of structures leading to their
ultimate failure as distortion which have bad impacts on economical
condition but air spring have more life as and as well as also reduce the
vibration as per desired level
INTRODUCTION
In the general competition between different means of transportation the
main subject is as fast, safe and comfortable journey. For railway
vehicles active technology enlarges the Possibilities of improving the
vehicle’s dynamic performance compared to what the conventional
passive solution has to offer.
Curve negotiation
When negotiate a curve at an excessive speed, vehicles will
roll over and automobiles will lose traction and slake out of a
curve instead of rolling over. The more top-heavy a vehicle is,
the more likely it will roll over than slake out of a curve. If the
ride comfort is already good, further improvement at
unchanged vehicle speed and track conditions is generally not
justified due to the high costs of implementing active
suspension. However, goals b) and e) allow large possibilities
for cost-efficient improvements.
Characteristics of spring materials
LITERATURE REVIEW
A. Helical springs
The helical springs are made up of a wire coiled in
the form of a helix and The cross-section of the wire
from which the spring is made may be circular,
square or rectangular and the helix angle is very
small, usually less than 10°.
WORKING PRINCIPLE OF PNEUMATIC SUSPENSION
it enclosed pressurized air in a pre-defined chamber
called air spring, made up of rubber bellow &
emergency rubber spring, provides various suspension
characteristics including damping. air springs are
height-controlled load leveling suspension devices.
with changing loads, air spring reacts initially by
changing the distance between air spring support and
vehicle body. the air springs replace only the
secondary suspension, whereas primary suspension
continues to use steel coil springs.
S.No Pressure in kg/cm2 Specific load in KN O observed load in KN
1. 1 kg/cm2 30.4 to 33.60 KN 31.25 KN
Lot size upto 10 25 50 75 100
No of samples 2 3 4 5 6
S.NO Item Firm’s RDSO approved Drg.No.
1 Top plate 750 mm
CHARACTERISTICS TESTS
Air Bellow: Table no1characteristics tests
Table no2 specified inspections
Table 3 check list for inspection of air spring
REFERENCE
1. "1959 Rambler Wagons brochure". oldcarbrochures.org. Retrieved 14 August 2013.
58. Suarez B., Mera J.M., Martinez M.L. and Chover J.A. (2012): Assessment of the influence of
the elastic properties of rail vehicle suspension on safety, ride quality and track fatigue. Vehicle
System Dynamics: International Journal of Vehicle Mechanics and Mobility.
2. Cheng, Y.C., Lee, S.Y., Chen, H.H. (2009): Modeling and nonlinear hunting stability analysis
of high-speed railway vehicle moving on curved tracks. Department of Mechanical Engineering,
National Cheng Kung University, Tainan, Taiwan 701, ROC.
3.Orvnäs, A., (2011): On Active Secondary Suspension in Rail Vehicles to Improve Ride
Comfort. PhD Thesis. Department of Aeronautical and Vehicle Engineering, KTH Engineering
Sciences.
4. Johnsson, A., Berbyuk, V., Enelund, M. (2012). Pareto Optimisation of railway bogie
suspension damping to enhance safety and comfort. Vehicle System Dynamics: International
Journal of Vehicle Mechanics and Mobility, 50:9, 1379-1407,
DOI:10.1080/00423114.2012.659846.
5. Mousavi, M., Berbyuk, V., (2013): Multiobjective optimization of a railway vehicle dampers
using genetic algorithm. Proceedings of the ASME2013 International Design Engineering
Technical Conferences & Computers and Information in Engineering Conference, IDETC/CIE
2013, August 4-7, 2013, Portland, USA (Paper DETC 2013- 12988).
6. Kamoshita, et al.: Electro-hydraulic Actuators for New Type Railway Vehicle with Tilting
Control. RRR. 62 (5), 24-27 (2005) 10) Tajima: Driving Bogies for Series E5 Shinkansen
Vehicles. Rolling Stock and Technology. (157), 7-9 (2009).
7. Uekura, et al.: Development of Active Suspension Control System by Actuator of Decreased
Air Consumption. Proc. 17th Jointed Railway Technology Symposium. Japan Society of
Mechanical Engineers, S5-1- 1, 305-308 (2010).
To Reduce the Maintenance Cost in Transportation System by Using Air Spring

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To Reduce the Maintenance Cost in Transportation System by Using Air Spring

  • 1. TO REDUCE THE MAINTENANCE COST IN TRANSPORTATION SYSTEM BY USING AIR SPRING
  • 2. Suraj Kumar Department of Mechanical Engineering, Bhagwant University, Ajmer
  • 3. ABSTRACT The main purpose of the air spring is to restrict the vibration at a desirable because with increased the speed, dynamic performance of the vehicles is negatively affected. The trend towards higher rail vehicle speeds generally results in increased vibrations in the car body, which has a negative impact on ride comfort .The suspension of the vehicle has to be modified in order to compensate vibration as well as work life should have long i.e. maintenance cost is too low. In fact, most helical spring possess low inherent damping thereby causing serious problems which will impair the function and life of structures leading to their ultimate failure as distortion which have bad impacts on economical condition but air spring have more life as and as well as also reduce the vibration as per desired level
  • 4. INTRODUCTION In the general competition between different means of transportation the main subject is as fast, safe and comfortable journey. For railway vehicles active technology enlarges the Possibilities of improving the vehicle’s dynamic performance compared to what the conventional passive solution has to offer.
  • 5. Curve negotiation When negotiate a curve at an excessive speed, vehicles will roll over and automobiles will lose traction and slake out of a curve instead of rolling over. The more top-heavy a vehicle is, the more likely it will roll over than slake out of a curve. If the ride comfort is already good, further improvement at unchanged vehicle speed and track conditions is generally not justified due to the high costs of implementing active suspension. However, goals b) and e) allow large possibilities for cost-efficient improvements.
  • 6.
  • 8. LITERATURE REVIEW A. Helical springs The helical springs are made up of a wire coiled in the form of a helix and The cross-section of the wire from which the spring is made may be circular, square or rectangular and the helix angle is very small, usually less than 10°.
  • 9.
  • 10.
  • 11. WORKING PRINCIPLE OF PNEUMATIC SUSPENSION it enclosed pressurized air in a pre-defined chamber called air spring, made up of rubber bellow & emergency rubber spring, provides various suspension characteristics including damping. air springs are height-controlled load leveling suspension devices. with changing loads, air spring reacts initially by changing the distance between air spring support and vehicle body. the air springs replace only the secondary suspension, whereas primary suspension continues to use steel coil springs.
  • 12.
  • 13. S.No Pressure in kg/cm2 Specific load in KN O observed load in KN 1. 1 kg/cm2 30.4 to 33.60 KN 31.25 KN Lot size upto 10 25 50 75 100 No of samples 2 3 4 5 6 S.NO Item Firm’s RDSO approved Drg.No. 1 Top plate 750 mm CHARACTERISTICS TESTS Air Bellow: Table no1characteristics tests Table no2 specified inspections Table 3 check list for inspection of air spring
  • 14.
  • 15. REFERENCE 1. "1959 Rambler Wagons brochure". oldcarbrochures.org. Retrieved 14 August 2013. 58. Suarez B., Mera J.M., Martinez M.L. and Chover J.A. (2012): Assessment of the influence of the elastic properties of rail vehicle suspension on safety, ride quality and track fatigue. Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility. 2. Cheng, Y.C., Lee, S.Y., Chen, H.H. (2009): Modeling and nonlinear hunting stability analysis of high-speed railway vehicle moving on curved tracks. Department of Mechanical Engineering, National Cheng Kung University, Tainan, Taiwan 701, ROC. 3.Orvnäs, A., (2011): On Active Secondary Suspension in Rail Vehicles to Improve Ride Comfort. PhD Thesis. Department of Aeronautical and Vehicle Engineering, KTH Engineering Sciences. 4. Johnsson, A., Berbyuk, V., Enelund, M. (2012). Pareto Optimisation of railway bogie suspension damping to enhance safety and comfort. Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility, 50:9, 1379-1407, DOI:10.1080/00423114.2012.659846. 5. Mousavi, M., Berbyuk, V., (2013): Multiobjective optimization of a railway vehicle dampers using genetic algorithm. Proceedings of the ASME2013 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference, IDETC/CIE 2013, August 4-7, 2013, Portland, USA (Paper DETC 2013- 12988). 6. Kamoshita, et al.: Electro-hydraulic Actuators for New Type Railway Vehicle with Tilting Control. RRR. 62 (5), 24-27 (2005) 10) Tajima: Driving Bogies for Series E5 Shinkansen Vehicles. Rolling Stock and Technology. (157), 7-9 (2009). 7. Uekura, et al.: Development of Active Suspension Control System by Actuator of Decreased Air Consumption. Proc. 17th Jointed Railway Technology Symposium. Japan Society of Mechanical Engineers, S5-1- 1, 305-308 (2010).