Effects of Material Properties on Optimal Configuration Design of Absorbing Porous Materials

흡음을 위한 다공성 물질의 최적형상설계에서 물성치의 영향

  • 이중석 (서울대 기계항공공학부 멀티스케일설계창의연구단) ;
  • 김윤영 (서울대 기계항공공학부 멀티스케일설계창의연구단) ;
  • 강연준 (서울대 기계항공공학부 차세대자동차연구센터)
  • Published : 2008.11.05

Abstract

This investigation studies the effects of material properties and corresponding propagation wave types on optimal configurations of sound absorbing porous materials in maximizing the absorption performance by topology optimization. The acoustic behavior of porous materials is characterized by their material properties which determine motions of the frame and the air. When the frame has a motion, two types of compressional wave propagate in the porous material. Because each wave in the material make different influence on the absorption performance, it is important to understand the relative contribution of each wave to the sound absorption. The relative contribution of the propagating waves in a porous material is determined by the material properties, therefore, an optimal configuration of a porous material to maximize the absorption performance is apparently affected by the material properties. In fact, virtually different optimal configurations were obtained for absorption coefficient maximization when the topology optimization method developed by the authors was applied to porous materials having different material properties. In this investigation, some preliminary results to explain the findings are presented. Although several factors should be considered, the present investigation is focused on the effects of the material properties and corresponding propagation waves on the optimized configurations.

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