会议论文详细信息
International Conference on Applied Sciences 2016
Intelligent clutch control with incremental encoder to improve wear issues of an intercept pendulum in real time
Jalba, C.K.^1 ; Diekmann, R.^1 ; Epple, S.^2
Ulm University of Applied Sciences, Production Engineering and Production Economics, Ulm, Germany^1
Kempten University of Applied Sciences, Faculty of Electrical Engineering, Kempten, Germany^2
关键词: Clutch control;    Fracture behavior;    Impact loadings;    Impact testers;    Incremental encoder;    Mechanical problems;    Metallic material;    Testing materials;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/163/1/012050/pdf
DOI  :  10.1088/1757-899X/163/1/012050
来源: IOP
PDF
【 摘 要 】

A pendulum impact tester is a technical device which is used to perform plasticity characterizations of metallic materials. Results are calculated based on fracture behavior under pendulum impact loadings according to DIN 50115, DIN 51222/EN 10045. The material is held at the two ends and gets struck in the middle. A mechanical Problem occurs when testing materials with a very high impact toughness. These specimen often do not break when hit by the pendulum. To return the pendulum to its initial position, the operator presses a service button. After a delay of approximately 2 seconds a clutch is activated which connects the arm of the pendulum with an electric motor to return it back upright in start position. At the moment of clutch activation, the pendulum can still swing or bounce with any speed in any direction at any different position. Due to the lack of synchronization between pendulum speed and constant engine speed, the clutch suffers heavy wear of friction. This disadvantage results in considerable service and repair costs for the customer. As a solution to this problem this article presents a customized technical device to significantly increase the lifetime of the clutch. It was accomplished by a precisely controlled activation of the clutch at a point of time when pendulum and motor are at synchronized speed and direction using incremental encoders.

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