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http://dx.doi.org/10.5050/KSNVE.2012.22.2.115

Study on the Design Process to minimize the Weight of the Damping Material  

Kim, Ki-Chang (현대자동차 차량해석팀)
Kwon, Jo-Seph (국민대학교 자동차공학전문대학원)
Kim, Chan-Mook (국민대학교 자동차공학전문대학원)
Kim, Jin-Taek (전북대학교 기계항공시스템공학부)
Publication Information
Transactions of the Korean Society for Noise and Vibration Engineering / v.22, no.2, 2012 , pp. 115-122 More about this Journal
Abstract
Sound packages and damping materials have been widely applied on the floor to decrease the interior noise of a vehicle. Based on the previous researches on the low-noise vehicles, weight optimization through minimization of damping material usage is required while decreasing mid and high frequency range noise by application of sound packages. This paper describes the analysis process of robust design of vehicle body structure before applying damping materials and focuses on the analysis and test process of the location optimization at the stage of damping material application. A vibration experiment for the analysis of floor panel velocity with respect to the excitation of suspension attachment parts at the underfloor of a vehicle is performed. And through the improvement correlation between FEA and TEST, a design guide to optimize damping materials application in the early design stage is proposed. A research on vibration damping steel sheets and liquid acoustic spray on deadener(LASD) is performed to minimize manufacturing time and to minimize the space for pre-existing asphalt damping materials. As results of this study, panel stiffness is achieved through curved surface panel and bead optimization. And test baseline of optimum design is suggested through damping material optimization. And finally, through re-establishing the analysis process for vibration reduction of vehicle floors and lightweight design of damping materials, it is possible to design damping materials efficiently in the preceding stage of design.
Keywords
Damping Material; Sound Package; Curved Surface Panel; Design Variable; Velocity; Liquid Acoustic Spray on Deadener;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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