발포알루미늄의 제조공정 및 흡음특성

Acoustic Abosrption Characteristic and Fabrication process of Foamed Aluminum

  • Hur, Bo-Young (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT) ;
  • Ahn, Hyo-Jun (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT) ;
  • Jeon, Sung-Hwan (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT) ;
  • Choi, Dae-Choul (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT) ;
  • Kim, Sang-Youl (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT) ;
  • Hur, Yoon (Devision of materials Eng. Gyeongsang Nat. Univ, Ultralight.Strength Metalic Foam Laboratory, NRL, RECAPT)
  • 발행 : 2000.11.16

초록

Porous structures of aluminum foam have been studied. The apparent foam shape, foam hight, density, pore size, shape, and their distributions in various section areas of the experimental samples have been investigated. The sample have been cast into metallic mold, using aluminum foam prepared from a precursor based on pure Al ingot mixed with various amount of 1-2wt% increasing viscosity and foam agent materials. The process provides for flexibility in design of foam structures via relatively easy control over the amount of hydrogen evolution and the drainage processes which occur during foam formation. This is facilitated by manupulating parameters such as the foaming agent, thermal histories during solidification and mix melt viscosities. The acoustical performance of the panel made with the foamed aluminum is considerably improved; its absorption coefficient shows NRC 0.6-0.8. It has been found that the Al foam is very preferable for the compactness of the thermal system.

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