Study of the Rolling Friction Coefficient between Dissimilar Materials through the Motion of a Conical Pendulum
Исследование коэффициента качения между разнородными материалами посредством движения конического маятника
2020-11-08
SCID: 54.1/gbpa7g7j
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conical pendulumdamped oscillationrolling friction coefficientsphere-on-plane contactvideo image processing
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Abstract (AI)
The rolling friction phenomenon is encountered in a wide range of applications and when two different materials are involved, quantitative characterization is necessary. The parameter to be determined is the coefficient of rolling friction, for whose estimation a methodology is proposed, based on the damped oscillation of a conical pendulum. The pure rolling contact between a sphere and a plane is obtained when a steel ball is the bob of the pendulum, which rolls on an inclined plate made from a second material from the contacting pair. The mathematical model of the motion of a conical pendulum constructed from a revolution body supported on an inclined plane in the presence of the rolling friction is developed. The dynamic equations of the rigid body with fixed point are applied and the differential equation of motion of the pendulum is obtained together with the expressions of the reaction forces in the contact point. For different pairs of materials, tests are performed on a laboratory device. The damped oscillatory motion of the conical pendulum is video-captured for the estimation of the angular amplitude variation. A program for image processing is developed for measuring the values of angular elongations from the analysis of each frame of the video and, finally, the coefficient of rolling friction is obtained. For all the materials tested, a linear decrease in angular amplitude is detected and the slope of angular amplitude can be considered as a characteristic parameter related to the coefficient of rolling friction between the two materials.
Key Findings
1
A mathematical model of a conical pendulum on an inclined plane including rolling friction is developed, yielding the differential equation of motion and contact reaction expressions.
2
A methodology is proposed to estimate the coefficient of rolling friction between dissimilar materials using the damped oscillation of a conical pendulum with a rolling steel sphere bob.
3
An image-processing program was developed to extract angular elongations frame-by-frame, enabling calculation of the rolling friction coefficient from the observed amplitude decay.
4
Experimental tests with various material pairs were performed; the pendulum's damped oscillatory motion was video-captured and processed to measure angular amplitude decay.
5
For all tested material pairs, angular amplitude decreases linearly with time, and the slope of this linear decrease serves as a characteristic parameter related to the rolling friction coefficient.
Research Object
Conical pendulum consisting of a steel sphere (bob) rolling without slipping on an inclined plane made of a second material (sphere–plane contact pair)
Research Subject
Determination and characterization of the coefficient of rolling friction between dissimilar materials via the damped oscillatory motion (angular amplitude decay) of the conical pendulum
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2020-11-08
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