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Technical Paper

Development of the Compact and Light Wheel Forces and Moments Sensor for Motorcycles

2016-11-08
2016-32-0053
Owing to the recent developments in sensors with reduced size and weight, it is now possible to install sensors on a body of a motorcycle to monitor its behavior during running. The analysis of maneuverability and stability has been performed based on the data resulted from measurements by these sensors. The tire forces and moments is an important measurement item in maneuverability and stability studies. However, the tire forces and moments is difficult to measure directly, therefore, it is a common practice to measure the force and the moment acting on the center of the wheel. The measuring device is called a wheel forces and moments sensor, and it is widely used for cars. The development of a wheel forces and moments sensor for motorcycles has difficulty particular to motorcycles. First, motorcycles run with their bodies largely banked, which restricts positioning the sensors.
Technical Paper

Engine Mount System Achieving Reduced Vibration from an Inline 3 Cylinder Engine Installed in a Utility Vehicle

2015-11-17
2015-32-0727
This paper describes an engine mount system that achieves reduced vibration on an industrial type utility vehicle. First the vibration level and direction of the inline three cylinder engine installed in the vehicle was analyzed and based on these results a mount layout that leads to a reduced level of vibration felt by the passengers was developed. Next, this was applied on an actual vehicle and spring characteristics were designed for each mount. The actual spring constants were set such that when considering the engine to be a rigid body, the resonance frequency thereof occurs at an engine speed lower than idle and in addition were set to ensure component strength relative to driving forces and inertial forces that act while the utility vehicle is being driven. Lastly, achievement of significant vibration reduction was confirmed on an actual vehicle showing that this engine mount system is effective at reducing vibration.
Technical Paper

Development of High Performance Motorcycle Wheel using Numerical Shape Optimization

2015-11-17
2015-32-0810
High performance motorcycles require dynamic performance that encompasses superior handling, wherein the wheels are one of the key components that determine the dynamic performance of the motorcycle. In this paper, we will clarify the dynamic parameters for the wheels that have an impact on the handling while also constructing a design technique in which numerical shape optimization is applied.
Technical Paper

Development of Fatigue Durability Evaluation Technology for Motorcycle Frame

2015-11-17
2015-32-0811
In the development of a motorcycle frame, the balance between high performance and reliability and a short development period are important. In this study, a fatigue durability evaluation technique for a motorcycle frame was developed to enable highly accurate development within a short period of time. Furthermore, we developed a shaking table excitation system as a means to supplement the road test.
Technical Paper

Development of Technology for Measuring Dynamic Deformation of Motorcycle Bodies

2013-10-15
2013-32-9165
In this study, a technology for measuring dynamic deformation of motorcycle bodies in running is developed. The deformation has significant association with the maneuverability and stability of motorcycles. The developed system by combining the numerical simulation and the measurement of strains enable application of the measurement of dynamic deformation of motorcycles. This paper reports technical details of the system and measurement results of dynamic deformation of motorcycle bodies.
Technical Paper

Prediction of Vibration Fatigue Life for Motorcycle Exhaust Systems

2011-11-08
2011-32-0642
In this study, the technology that can predict fatigue life for motorcycle exhaust systems is developed. To predict the fatigue life, analyzing the engine vibration, modeling the vibration characteristics of exhaust systems and evaluating the fatigue damage of welded joints are considered essential. This paper shows an integrated numerical simulation and evaluation method. Furthermore, it is also shown with the result of a component vibration test of the muffler assembly to validate the technology. The results indicate a good correlation between the numerical simulation and the test.
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