Conical friction surface is a novel configuration for friction plate in transmission. Numerical FEA models for transient heat transfer and distribution of conically grooved friction plate have been established to investigate the thermal behavior of the conical surface with different configurations. The finite element method is used to obtain the numerical solution, the temperature test data of conical surface are obtained by the friction test rig. In order to study and compare the temperature behavior of conically grooved friction plate, several three-dimensional transient temperature models are established. The heat generated on the friction interface during the continuous sliding process is calculated. Two different pressure conditions were defined to evaluate the influence of different load conditions on temperature rise and the effects of conical configuration parameters on surface temperature distribution are investigated. The results show that the radial temperature gradient on conical friction surface is obvious. The uniform pressure condition could be used when evaluating the temperature rise of conically grooved friction plate. The increase of the cone height could improve the radial temperature gradient of the conically grooved friction plate.


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    Titel :

    Study on the transient temperature distribution of new conical friction plate under sliding friction


    Beteiligte:
    Wang, Yanzhong (Autor:in) / Liu, Peng (Autor:in)


    Erscheinungsdatum :

    2022-12-01


    Format / Umfang :

    13 pages




    Medientyp :

    Aufsatz (Zeitschrift)


    Format :

    Elektronische Ressource


    Sprache :

    Englisch




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    Bach, J. | Engineering Index Backfile | 1935



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    Johnson, Robert L / Swikert, Max A / Bisson, Edmond E | NTRS | 1947


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    MATERIAL WITH ENHANCED SLIDING FRICTION

    MOYLE NICHOLE / BREMOND FLORIAN / HUI CHUNG YUEN et al. | Europäisches Patentamt | 2020

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