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Dec 20 2020 Department of Mechanical Engineering. Fall 2020-2021. Senior Design Project Report. Design and development of mechanism based drive bicycle.
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Students would be required to submit three sets of reports in spiral or tape bound as per template provided for Mid-Year report Last date of submission of Mid
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Mechanical engineers design power-producing machines, such as electric generators, internal combustion engines, and steam and gas turbines, as well as power-using machines, such as refrigeration and air-conditioning systems. Mechanical engineers design other machines inside buildings, such as elevators and escalators.How do you write a final year engineering project report?
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3 Speed Gearbox Mechanism.5 Speed Gearbox Mechanism.Mechanical Bird Flapping Mechanism.Motorized Power Steering Mechanism.Dual Axis Vehicle Steering Mechanism.Leaf Spring Chassis for Construction Trucks.Design and Fabrication of Bucket Conveyor.Chain Link Wire Mesh Making Machine.
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College of Engineering
Department of Mechanical Engineering
Fall 2020-2021
Senior Design Project Report
Design and development of mechanism based
drive bicycle In partial fulfillment of the requirements for the Degree of Bachelor of Science in Mechanical EngineeringTeam-09
Team Members
Student Name Student ID
1 Abdullah Alghamdi 201400957
2 *Mohammad Aldossary 201000763
3 AbdulellahAlmulaifi 201301219
4 Ibrahim Alrumaihi 201602139
5 Tariq Alghamdi 201502750
Project Advisors:
Advisor Name: Dr. Muhammad Asad
Co-Advisor Name: Mr. Taha Waqar
2Abstract
For the last few decades, efforts are being made to propose new and efficient solutions to come up with
the design of chainless drive bicycles. Though chained cycles are still commonly used, being lighter in
weight and cheaper in maintenance, however, during off-road cycling, and when torque requirementsincrease, either chain gets disengaged from the sprocket or altogether break. Most of the new proposed
mechanical designs to modify or replace chains are bevel and worm gears based. However, the gear manufacturing cost, maintenance, or replacement cost is a major hurdle in this development. For this project, a four-bar linkage mechanism was developed. The mechanical Bicycle System is asystems project that contains a pedal attached to a triangle-shaped conrod of a parallelogram
mechanism of three cranks. The shaft is fixed to the crank, and the shaft rotates on a bearing, so the
wheel is connected to the shaft through a wheel placed inside the rim hub. Three crank concepts help the parallelogram mechanism overcome its dead positions.Results show that it is possible and relatively simple, to build a mechanical bicycle by oneself. Each of
these will be built upon and improved further by future students, one category at a time. The hope is
that this design can become very efficient, cost-effective, and one day mass-produced. 3Acknowledgments
We would like to express our appreciation to our advisor Dr. Muhammad Asad for his continuous support during the execution of our project and his sincere encouragement as well. Also, we wish to express our sincere thanks to our co-advisor, Mr. Taha Waqar, for sharing his expertise and valuable guidance and encouragement extended to us. We take this opportunity to express gratitude to all department faculty members for their help and support. 4List of Figures:
Figure 3.3.1: Running Wheel ........................................................................................................................... 11
Figure 3.3.3: Crank B Figure 3.3.4: Frame ... 12
Figure 3.3.5: ..................................................................................................................................................... 12
Figure 3.3.7: ..................................................................................................................................................... 13
Figure 3.3.7: ..................................................................................................................................................... 13
Figure 4.1.1: Position to analyze ..................................................................................................................... 14
Figure 4.1.2: ..................................................................................................................................................... 14
Figure 4.1.3: ..................................................................................................................................................... 15
Figure 4.1.4: ..................................................................................................................................................... 16
Figure 4.1.5: ..................................................................................................................................................... 17
Figure 4.2.1: ..................................................................................................................................................... 18
Figure 4.2.2: Mechanisms skeleton, joint types and numbers and links numbers. ........................................ 19
Figure 4.2.3: ..................................................................................................................................................... 19
Figure 4.2.4: ..................................................................................................................................................... 20
Figure C.1: ........................................................................................................................................................ 49
Figure C.3: Crank B Figure C.4: Crank A ........ 49
Figure C.5: Disk Figure C.6: Frame .......... 50
Figure C.7: ........................................................................................................................................................ 50
Figure D.1: ....................................................................................................................................................... 51
List of Tables:
Table 1.3.1: The system measurements ............................................................................................. 7
Table 1.3.2: Engineering Standard ...................................................................................................... 7
Table4.2. 1: Points K, L, M ǀalues changed between the angle of Crank B and Ground (ಉ). ........... 20
Table 5.1.1: Tasks and their durations .............................................................................................. 21
Table 5.1.2: Tasks and assigned members ........................................................................................ 22
Table 5.2.1: Tasks the contribution of the members ....................................................................... 23
Table 5.3.1: Project Execution Monitoring Chart ............................................................................. 25
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