Abstract Automotive brake noise has become a stubborn problem as automotive cars achieve higher driving torques, since that the increased torque induces the generation of severe noise dissipation during brake operation. Moreover, the global brake tuning market for achieving higher performance of the vehicle has expanded recently. The need to control the noise grows more in this connection. The tuning brake kits have employed cross-drilled and slotted machining pattern on the surface of the rotor. These designs have advantages to improve air ventilation, temperature control, and surface cleaning of brake pad. However, the effects of modal frequency by patterned rotor surfaces are rarely discussed, even if it is highly related with brake squeal phenomenon. Therefore, this study deals with the relationship between patterned surfaces and brake squeal through the numerical methods. The commercial software of a finite element analysis is employed for calculation by varying geometric design factors of each rotor pattern. As a result, the cross-drilled machining patterns are concluded to be an influential factor for in-plane mode frequency while the slotted patterns have more leverage for out-of-plane mode frequency.


    Zugriff

    Zugriff prüfen

    Verfügbarkeit in meiner Bibliothek prüfen

    Bestellung bei Subito €


    Exportieren, teilen und zitieren



    Titel :

    Numerical Study for Brake Squeal by Machining Patterns on Frictional Surface


    Beteiligte:
    Jung, Taeksu (Autor:in) / Hong, Yunhwa (Autor:in) / Park, Sungsu (Autor:in) / Kim, Cheongmin (Autor:in) / Hong, Younghoon (Autor:in) / Cho, Chongdu (Autor:in)

    Erschienen in:

    Erscheinungsdatum :

    2018-02-27


    Format / Umfang :

    9 pages




    Medientyp :

    Aufsatz (Zeitschrift)


    Format :

    Elektronische Ressource


    Sprache :

    Englisch




    Numerical Study for Brake Squeal by Machining Patterns on Frictional Surface

    Jung, Taeksu / Hong, Yunhwa / Park, Sungsu et al. | Online Contents | 2018


    Brake squeal property of holes opened brake disc on frictional surface for motorcycle

    Hagiwara, S. / Obunai, K. / Okubo, K. et al. | British Library Conference Proceedings | 2008


    Brake Squeal

    Popp, K. / Rudolph, M. | TIBKAT


    Brake Squeal

    Popp, K. ;Rudolph, M. | TIBKAT | 2001

    Freier Zugriff

    Drum brake squeal

    Hultén, Johan | TIBKAT | 1998