455
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

Effects of Core Topology on Sound Insulation Performance of Lightweight All-Metallic Sandwich Panels

&
Pages 1213-1221 | Received 05 Apr 2010, Accepted 20 May 2010, Published online: 18 Aug 2011

REFERENCES

  • Gu , S. ; Lu , T.J. ; Evans , A.G. On the design of two-dimensional cellular metals for combined heat dissipation and structural load capacity . Int. J. Heat Mass Transfer 2001 , 44 ( 11 ), 2163 – 2175 .
  • Lu , T.J. ; Chen , C. ; Zhu , G. Compressive behaviour of corrugated board panels . J. Comp. Mater. 2001 , 35 ( 23 ), 2098 – 2126 .
  • Franco , F. ; Cunefare , K.A. ; Ruzzene , M. Structural-acoustic optimization of sandwich panels . ASME J. Vib. Acoust. 2007 , 129 ( 3 ), 330 – 340 .
  • Spadoni , A. ; Ruzzene , M. Structural and acoustic behavior of chiral truss-core beams . ASME J. Vib. Acoust. 2006 , 128 ( 5 ), 616 – 626 .
  • Wu , S.F. ; Wu , G. ; Puskarz , M.M. ; Gleason , M.E. Noise transmission through a vehicle side window due to turbulent boundary layer excitation . J. Vib. Acoust. 1997 , 119 ( 4 ), 557 – 562 .
  • Xin , F.X. ; Lu , T.J. ; Chen , C.Q. External mean flow influence on noise transmission through double-leaf aeroelastic plates . AIAA J. 2009 , 47 ( 8 ), 1939 – 1951 .
  • Carneal , J.P. ; Fuller , C.R. An analytical and experimental investigation of active structural acoustic control of noise transmission through double panel systems. J. Sound Vib. 2004, 272 (3–5), 749–771.
  • Grosveld , F. Plate acceleration and sound transmission due to random acoustic and boundary-layer excitation . AIAA J. 1992 , 30 ( 3 ), 601 – 607 .
  • Xin , F.X. ; Lu , T.J. ; Chen , C.Q. Dynamic response and acoustic radiation of double-leaf metallic panel partition under sound excitation . Comp. Mater. Sci. 2009 , 46 ( 3 ), 728 – 732 .
  • Maury , C. ; Gardonio , P. ; Elliott , S.J. Model for active control of flow-induced noise transmitted through double partitions . AIAA J. 2002 , 40 ( 6 ), 1113 – 1121 .
  • Thamburaj , P. ; Sun , J.Q. Effect of material and geometry on the sound and vibration transmission across a sandwich beam . ASME J. Vib. Acoust. 2001 , 123 ( 2 ), 205 – 212 .
  • Lyle , K. ; Mixson , J. Laboratory study of sidewall noise transmission and treatment for a light aircraft fuselage . J. Aircr. 1987 , 24 ( 9 ), 660 – 665 .
  • Xin , F.X. ; Lu , T.J. ; Chen , C.Q. Sound transmission across lightweight all-metallic sandwich panels with corrugated cores . Chin. J. Acoust. 2009 , 28 ( 3 ), 231 – 243 .
  • Xin , F.X. ; Lu , T.J. ; Chen , C.Q. Sound transmission through simply supported finite double-panel partitions with enclosed air cavity . ASME J. Vib. Acoust. 2010 , 132 ( 1 ), 011008 .
  • Xin , F.X. ; Lu , T.J. Analytical modeling of fluid loaded orthogonally rib-stiffened sandwich structures: Sound transmission . J. Mech. Phys. Solids. 2010 , 58 ( 9 ), 1374 – 1396 .
  • Xin , F.X. ; Lu , T.J. Analytical modeling of sound transmission across finite aeroelastic panels in convected fluids . J. Acoust. Soc. Am. 2010 , 128 ( 3 ), 1097 – 1107 .
  • Xin , F.X. ; Lu , T.J. Analytical modeling of sound transmission through clamped triple-panel partition separated by enclosed air cavities . Eur. J. Mech. A-Solid 2011 , 30 ( 6 ), 770 – 782 .
  • Xin , F.X. ; Lu , T.J. Transmission loss of orthogonally rib-stiffened double-panel structures with cavity absorption . J. Acoust. Soc. Am. 2011 , 129 ( 4 ), 1919 – 1934 .
  • Xin , F.X. ; Lu , T.J. Analytical modeling of wave propagation in orthogonally rib-stiffened sandwich structures: Sound radiation. Comput. Struct. 2011, 89 (5–6), 507–516.
  • Xin , F.X. ; Lu , T.J. Sound radiation of orthogonally rib-stiffened sandwich structures with cavity absorption . Compos. Sci. Technol. 2010 , 70 ( 15 ), 2198 – 2206 .
  • Lu , T.J. ; Valdevit , L. ; Evans , A.G. Active cooling by metallic sandwich structures with periodic cores . Progress in Materials Science 2005 , 50 ( 7 ), 789 – 815 .
  • Liu , T. ; Deng , Z.C. ; Lu , T.J. Bi-functional optimization of actively cooled, pressurized hollow sandwich cylinders with prismatic cores . Journal of the Mechanics and Physics of Solids 2007 , 55 ( 12 ), 2565 – 2602 .
  • Xin , F.X. ; Lu , T.J. ; Chen , C. Sound transmission through lightweight all-metallic sandwich panels with corrugated cores. Adv. Mater. Res. 2008, 47–50, 57–60.
  • Mead , D.J. Free wave propagation in periodically supported, infinite beams . J. Sound Vib. 1970 , 11 ( 2 ), 181 – 197 .
  • Mead , D.J. ; Pujara , K.K. Space-harmonic analysis of periodically supported beams: Response to convected random loading . J. Sound Vib. 1971 , 14 ( 4 ), 525 – 532 .
  • Lomas , N.S. ; Hayek , S.I. Vibration and acoustic radiation of elastically supported rectangular plates . J. Sound Vib. 1977 , 52 ( 1 ), 1 – 25 .
  • Renji , K. Sound transmission loss of unbounded panels in bending vibration considering transverse shear deformation. J. Sound Vib. 2005, 283 (1–2), 478–486.
  • Sewell , E.C. Transmission of reverberant sound through a single-leaf partition surrounded by an infinite rigid baffle. J. Sound Vib. 1970, 12(1), 21–32.
  • Cummings , A. ; Mulholland , K.A. The transmission loss of finite sized double panels in a random incidence sound field . J. Sound Vib. 1968 , 8 ( 1 ), 126 – 133 .
  • Mulholland , K.A. ; Parbrook , H.D. ; Cummings , A. The transmission loss of double panels . J. Sound Vib. 1967 , 6 ( 3 ), 324 – 334 .
  • Beranek , L.L. ; Work , G.A. Sound transmission through multiple structures containing flexible blankets . J. Acoust. Soc. Am. 1949 , 21 ( 4 ), 419 – 428 .
  • London , A. Transmission of reverberant sound through double walls . J. Acoust. Soc. Am. 1950 , 22 ( 2 ), 270 – 279 .
  • Sewell , E.C. Two-dimensional solution for transmission of reverberant sound through a double partition . J. Sound Vib. 1970 , 12 ( 1 ), 33 – 57 .
  • White , P.H. ; Powell , A. Transmission of random sound and vibration through a rectangular double wall . J. Acoust. Soc. Am. 1966 , 40 ( 4 ), 821 – 832 .
  • Hongisto , V. Sound insulation of doors—Part 1: Prediction models for structural and leak transmission . J. Sound Vib. 2000 , 230 ( 1 ), 133 – 148 .
  • Chazot , J.D. ; Guyader , J.L. Prediction of transmission loss of double panels with a patch-mobility method. J. Acoust. Soc. Am. 2007, 121(1), 267–278.
  • Xin , F.X. ; Lu , T.J. ; Chen , C.Q. Vibroacoustic behavior of clamp mounted double-panel partition with enclosure air cavity. J. Acoust. Soc. Am. 2008, 124(6), 3604–3612.
  • Xin , F.X. ; Lu , T.J. Analytical and experimental investigation on transmission loss of clamped double panels: Implication of boundary effects . J. Acoust. Soc. Am. 2009 , 125 ( 3 ), 1506 – 1517 .
  • Lee , J.H. ; Kim , J. Analysis of sound transmission through periodically stiffened panels by space-harmonic expansion method . J. Sound Vib. 2002 , 251 ( 2 ), 349 – 366 .
  • Lin , G.-F. ; Garrelick , J.M. Sound transmission through periodically framed parallel plates . J. Acoust. Soc. Am. 1977 , 61 ( 4 ), 1014 – 1018 .
  • Takahashi , D. Sound radiation from periodically connected double-plate structures . J. Sound Vib. 1983 , 90 ( 4 ), 541 – 557 .
  • Wang , J. ; Lu , T.J. ; Woodhouse , J. ; Langley , R.S. ; Evans , J. Sound transmission through lightweight double-leaf partitions: Theoretical modelling. J. Sound Vib. 2005, 286 (4–5), 817–847.
  • El-Raheb , M. ; Wagner , P. Effects of end cap and aspect ratio on transmission of sound across a truss-like periodic double panel . J. Sound Vib. 2002 , 250 ( 2 ), 299 – 322 .
  • Lauriks , W. ; Mees , P. ; Allard , J.F. The acoustic transmission through layered systems . J. Sound Vib. 1992 , 155 ( 1 ), 125 – 132 .
  • Trochidis , A. ; Kalaroutis , A. Sound transmission through double partitions with cavity absorption . J. Sound Vib. 1986 , 107 ( 2 ), 321 – 327 .
  • Narayanan , S. ; Shanbhag , R.L. Sound transmission through a damped sandwich panel . J. Sound Vib. 1982 , 80 ( 3 ), 315 – 327 .
  • Nilsson , A.C. Wave propagation in and sound transmission through sandwich plates . J. Sound Vib. 1990 , 138 ( 1 ), 73 – 94 .
  • Ford , R.D. ; Lord , P. ; Walker , A.W. Sound transmission through sandwich constructions . J. Sound Vib. 1967 , 5 ( 1 ), 9 – 21 .
  • Nilsson , A.C. Some acoustical properties of floating-floor constructions . J. Acoust. Soc. Am. 1977 , 61 ( 6 ), 1533 – 1539 .
  • Narayanan , S. ; Shanbhag , R.L. Sound transmission through elastically supported sandwich panels into a rectangular enclosure . J. Sound Vib. 1981 , 77 ( 2 ), 251 – 270 .
  • Huang , W.C. ; Ng , C.F. Sound insulation improvement using honeycomb sandwich panels. Appl. Acoust. 1998, 53 (1–3), 163–177.
  • Foin , O. ; Nicolas , J. ; Atalla , N. An efficient tool for predicting the structural acoustic and vibration response of sandwich plates in light or heavy fluid . Appl. Acoust. 1999 , 57 , 213 – 242 .
  • Wang , T.A. ; Sokolinsky , V.S. ; Rajaram , S. ; Nutt , S.R. Assessment of sandwich models for the prediction of sound transmission loss in unidirectional sandwich panels . Appl. Acoust. 2005 , 66 ( 3 ), 245 – 262 .
  • Ng , C.F. ; Hui , C.K. Low frequency sound insulation using stiffness control with honeycomb panels . Appl. Acoust. 2008 , 69 ( 4 ), 293 – 301 .
  • Cordonnier-Cloarec , P. ; Pauzin , S. ; Biron , D. ; Haddar , M. ; Hamdi , M.A. Contribution to the study of sound transmission and radiation of corrugated steel structures . J. Sound Vib. 1992 , 157 ( 3 ), 515 – 530 .
  • Ng , C.F. ; Zheng , H. Sound transmission through double-leaf corrugated panel constructions. Appl. Acoust. 1998, 53 (1–3), 15–34.
  • Mathur , G.P. Sound transmission through stiffened double-panel structures lined with elastic porous materials. In Proceedings of the 14th DGLR/AIAA Aero-Acoustics Conference, Aachen, Germany, May 11–14, 1992; 102–105.
  • Liu , T. ; Deng , Z. ; Lu , T. Structural modeling of sandwich structures with lightweight cellular cores . Acta Mech. Sinica. 2007 , 23 ( 5 ), 545 – 559 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.