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A 
Minor Project Presentation 
on 
Automatic Side Stand Remover 
Submitted to 
Shri Shankracharya Institute of Engineering and Technology, 
Durg (C.G.) 
Under the esteemed guidance of 
SANJEEV SHRIVASTAVA 
Associate Professor SSIET, DURG 
Presented by 
Shubham Jaiswal 
Roll No. :- 3483711085 
Enroll No. :- AK0612 
Saurav Das 
Roll No. :- 3483711078 
Enroll No. :- AK0541 
Siddharth Pathak 
Roll No. :-3483711086 
Enroll No. :- AK0616 
Saquib Javed Qurasishi 
Roll No. :- 3483711075 
Enroll No. :- AK0375 
Akshay Bhardwaj 
Roll No. :- 3483711007 
Enroll No. :- AJ9761
Side Stand Removal System
ABSTRACT 
• In now a days two wheelers plays a important role in transport. Due to humans 
carelessness accidents happening. In that most important in due to forget to 
hold this side stand in two wheeler. 
• In earlier days buzzer method in used for remedy in this case and next gear 
pedal method. But two methods are not efficient. In now a days people are 
most of them want simple operation. 
• So we designed fully automatic self side stand method. It’s most efficient 
compared to other, While we switch on the bike. By self start method is used 
start this vehicle. By using this method we can relieve this side stand from it’s 
position easily.
CCoonntteenntt 
• Introduction 
• Problem Identification 
• Literature Review 
• Objective of Project Work 
• Methodology 
• Calculation and Analysis 
• Expected Results and Discussion 
• Conclusion 
• References
IInnttrroodduuccttiioonn 
The accidents from a vehicle can be done by two reasons mainly. First is due 
to others fault and second is our neglectancy. One of the most seen condition is to 
forget removing side stand. So in our project we are trying to give a mechanical 
arrangement which can remove the side stand at the start motion of the vehicle. It si 
desired to avoid the automatic arrangement because these systems have many king of 
disadvantages and dependencies. So the removal system will be a mechanical 
arrangement which will be simple in mechanism and would not interfere with ride and 
comfort.
• Our aim of prevent the two wheeler accident in our project. 
• Now a day people transport one place to another place using mostly two wheeler 
vehicle. 
• Same time late of accident in rods in human careless of side stand un hold . 
• For self transmission system it is sufficient to rotate at 1500 rpm. 
• So that high torque is required to start the self transmission system then lift the 
side stand. 
• We requirement this problem so solve in this our project.
PPrroobblleemm IIddeennttiiffiiccaattiioonn 
• Engaged side stand can create accidental damage. 
• The electric based automatic side stand removal system has its dependencies on the 
power supply. 
• The electric based automatic system can be risky because the electronic devices has 
its limitation of moisture content.
LLiitteerraattuurree RReevviieeww 
• Vishal Srivastava, Tejasvi Gupta, Sourabh Kumar, Vinay Kumar, Javed Rafiq, Satish Kumar in his 
paper Automatic Side stand gives the anatomy of side stand that is a Side stand is a device on a bicycle or 
motorcycle that allows the bike to be kept upright without leaning against another object or the aid of a 
person. A "smaller, more convenient" kickstand was developed by Joseph Paul Treen, the father of former 
Louisiana Governor, Dave Treen. A kickstand is usually a piece of metal that flips down from the frame 
and makes contact with the ground. It is generally located in the middle of the bike or towards the rear. 
Some touring bikes have two: one at the rear, and a second in the front. A side stand style kickstand is a 
single leg that simply flips out to one side, usually the non-drive side, and the bike then leans against it. 
Side stands can be mounted to the chain stays right behind the bottom bracket or to a chain and seat stay 
near the rear hub. Side stands mounted right behind the bottom bracket can be bolted on, either clamping 
the chain stays or to the bracket between them, or welded into place as an integral part of the frame.
SSiimmppllee ssiiddee ssttaanndd
LLIITTEERRTTUURREE SSUURRVVEEYY 
•In current status compare to other project through internet, 
•But in our project this new creation by more the advantage if due to our project. 
•First look the figure is old model and failure model.
GGEEAARR PPEEDDAALL MMEETTHHOODD 
Author: DANIEL SIMONS. 
Gear pedal method is the all two wheeler are not suitable trouble shooting 
problem.
BBUUZZZZEERR MMEETTHHOODD 
Author: GORILLA 
Buzzer method is always so high noise pollution from any one two wheeler vehicle 
user
IINNDDIICCAATTOORR MMEETTHHOODD 
Author: christopher 
Indicator method is the electric device so any one problem cannot reuse.
OObbjjeeccttiivvee ooff PPrroojjeecctt WWoorrkk 
• To find the method of fabricating side stand removal system. 
• To fabricate according to selected method . 
• To make some experiments on the fabrication in different conditions. 
• To study the future implementation on the system.
OOuurr vviissiioonn
MMeetthhooddoollooggyy 
• The side stand removal requires a system that can provide the torque force on the 
stand rod by the equal amount that is due to spring force. 
• The system should be related to the vehicle movement.
EEnnggaaggeedd SSttaanndd
DDiisseennggaaggeedd SSttaanndd
CCaallccuullaattiioonn aanndd AAnnaallyyssiiss 
Wire diameter = 3 mm = 0.003 m 
Coil outer diameter (d) = 27 mm = 0.027m 
Coil inner diameter = 21mm = 0.021m 
No. of coils (n) = 17 
Free length of spring (L) = ߨdN 
3.14x0.027x17=1.44126 m 
Span weight = 0.056+0.400 kg 
= 0.456 kg 
F = K × X 
F = 1.732x1.21536 
F = 2.105 N
TORQUE – 
T = FXR 
T =2.105X0.11 
T =0.2315 N-m 
Torque due to stand weight 
Stand weight = 400 gm 
Spring weight = 56 gm 
Combined weight of spring and stand = 400+56 gm 
= 0.456 kg 
Force due to stand weight = 
mg sin θ = 0.456x9.81xsin500 
= 3.4267 N 
Torque due to stand weight 
= F x R 
= 3.4267x0.11 
= 0.3769471 
Total torque (Ta) 
= 0.2315+0.376947 
= 0.6087 N-m
EExxppeecctteedd RReessuullttss aanndd DDiissccuussssiioonn 
• The system is found to be applicable for two wheelers vehicle. 
• As this system works on the movement of the vehicle. It does not have any 
dependencies. 
• This system is purely mechanical arrangement so it has less damage factors that is 
the advantageous point.
CCoonncclluussiioonn 
• It is by an observation that the side stand removal by mechanical arrangement is 
much better than the electronic based automatic side stand. 
• The system is not dependent to the any factor like moisture and power supply. 
• The system can be maintained by a little maintenance.
RReeffeerreenncceess 
[1] International Journal of Engineering and Advanced Technology (IJEAT) 
ISSN: 2249 – 8958, Volume-3, Issue-4, April 2014
Automatic side stand remover

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Automatic side stand remover

  • 1. A Minor Project Presentation on Automatic Side Stand Remover Submitted to Shri Shankracharya Institute of Engineering and Technology, Durg (C.G.) Under the esteemed guidance of SANJEEV SHRIVASTAVA Associate Professor SSIET, DURG Presented by Shubham Jaiswal Roll No. :- 3483711085 Enroll No. :- AK0612 Saurav Das Roll No. :- 3483711078 Enroll No. :- AK0541 Siddharth Pathak Roll No. :-3483711086 Enroll No. :- AK0616 Saquib Javed Qurasishi Roll No. :- 3483711075 Enroll No. :- AK0375 Akshay Bhardwaj Roll No. :- 3483711007 Enroll No. :- AJ9761
  • 3.
  • 4. ABSTRACT • In now a days two wheelers plays a important role in transport. Due to humans carelessness accidents happening. In that most important in due to forget to hold this side stand in two wheeler. • In earlier days buzzer method in used for remedy in this case and next gear pedal method. But two methods are not efficient. In now a days people are most of them want simple operation. • So we designed fully automatic self side stand method. It’s most efficient compared to other, While we switch on the bike. By self start method is used start this vehicle. By using this method we can relieve this side stand from it’s position easily.
  • 5. CCoonntteenntt • Introduction • Problem Identification • Literature Review • Objective of Project Work • Methodology • Calculation and Analysis • Expected Results and Discussion • Conclusion • References
  • 6. IInnttrroodduuccttiioonn The accidents from a vehicle can be done by two reasons mainly. First is due to others fault and second is our neglectancy. One of the most seen condition is to forget removing side stand. So in our project we are trying to give a mechanical arrangement which can remove the side stand at the start motion of the vehicle. It si desired to avoid the automatic arrangement because these systems have many king of disadvantages and dependencies. So the removal system will be a mechanical arrangement which will be simple in mechanism and would not interfere with ride and comfort.
  • 7. • Our aim of prevent the two wheeler accident in our project. • Now a day people transport one place to another place using mostly two wheeler vehicle. • Same time late of accident in rods in human careless of side stand un hold . • For self transmission system it is sufficient to rotate at 1500 rpm. • So that high torque is required to start the self transmission system then lift the side stand. • We requirement this problem so solve in this our project.
  • 8. PPrroobblleemm IIddeennttiiffiiccaattiioonn • Engaged side stand can create accidental damage. • The electric based automatic side stand removal system has its dependencies on the power supply. • The electric based automatic system can be risky because the electronic devices has its limitation of moisture content.
  • 9. LLiitteerraattuurree RReevviieeww • Vishal Srivastava, Tejasvi Gupta, Sourabh Kumar, Vinay Kumar, Javed Rafiq, Satish Kumar in his paper Automatic Side stand gives the anatomy of side stand that is a Side stand is a device on a bicycle or motorcycle that allows the bike to be kept upright without leaning against another object or the aid of a person. A "smaller, more convenient" kickstand was developed by Joseph Paul Treen, the father of former Louisiana Governor, Dave Treen. A kickstand is usually a piece of metal that flips down from the frame and makes contact with the ground. It is generally located in the middle of the bike or towards the rear. Some touring bikes have two: one at the rear, and a second in the front. A side stand style kickstand is a single leg that simply flips out to one side, usually the non-drive side, and the bike then leans against it. Side stands can be mounted to the chain stays right behind the bottom bracket or to a chain and seat stay near the rear hub. Side stands mounted right behind the bottom bracket can be bolted on, either clamping the chain stays or to the bracket between them, or welded into place as an integral part of the frame.
  • 11. LLIITTEERRTTUURREE SSUURRVVEEYY •In current status compare to other project through internet, •But in our project this new creation by more the advantage if due to our project. •First look the figure is old model and failure model.
  • 12. GGEEAARR PPEEDDAALL MMEETTHHOODD Author: DANIEL SIMONS. Gear pedal method is the all two wheeler are not suitable trouble shooting problem.
  • 13. BBUUZZZZEERR MMEETTHHOODD Author: GORILLA Buzzer method is always so high noise pollution from any one two wheeler vehicle user
  • 14. IINNDDIICCAATTOORR MMEETTHHOODD Author: christopher Indicator method is the electric device so any one problem cannot reuse.
  • 15. OObbjjeeccttiivvee ooff PPrroojjeecctt WWoorrkk • To find the method of fabricating side stand removal system. • To fabricate according to selected method . • To make some experiments on the fabrication in different conditions. • To study the future implementation on the system.
  • 17. MMeetthhooddoollooggyy • The side stand removal requires a system that can provide the torque force on the stand rod by the equal amount that is due to spring force. • The system should be related to the vehicle movement.
  • 20. CCaallccuullaattiioonn aanndd AAnnaallyyssiiss Wire diameter = 3 mm = 0.003 m Coil outer diameter (d) = 27 mm = 0.027m Coil inner diameter = 21mm = 0.021m No. of coils (n) = 17 Free length of spring (L) = ߨdN 3.14x0.027x17=1.44126 m Span weight = 0.056+0.400 kg = 0.456 kg F = K × X F = 1.732x1.21536 F = 2.105 N
  • 21. TORQUE – T = FXR T =2.105X0.11 T =0.2315 N-m Torque due to stand weight Stand weight = 400 gm Spring weight = 56 gm Combined weight of spring and stand = 400+56 gm = 0.456 kg Force due to stand weight = mg sin θ = 0.456x9.81xsin500 = 3.4267 N Torque due to stand weight = F x R = 3.4267x0.11 = 0.3769471 Total torque (Ta) = 0.2315+0.376947 = 0.6087 N-m
  • 22. EExxppeecctteedd RReessuullttss aanndd DDiissccuussssiioonn • The system is found to be applicable for two wheelers vehicle. • As this system works on the movement of the vehicle. It does not have any dependencies. • This system is purely mechanical arrangement so it has less damage factors that is the advantageous point.
  • 23. CCoonncclluussiioonn • It is by an observation that the side stand removal by mechanical arrangement is much better than the electronic based automatic side stand. • The system is not dependent to the any factor like moisture and power supply. • The system can be maintained by a little maintenance.
  • 24. RReeffeerreenncceess [1] International Journal of Engineering and Advanced Technology (IJEAT) ISSN: 2249 – 8958, Volume-3, Issue-4, April 2014