FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
|
|
|
|
Nondestructive Characterization of Quantitative Bonding Strength at a Bonded Solid-Solid Interface |
CHEN Jian-Jun, ZHANG De, MAO Yi-Wei, CHENG Jian-Chun
|
Institute of Acoustics, Key Laboratory of Modern Acoustics, Nanjing University, Nanjing 210093
|
|
Cite this article: |
CHEN Jian-Jun, ZHANG De, MAO Yi-Wei et al 2011 Chin. Phys. Lett. 28 084301 |
|
|
Abstract We propose a nondestructive method to characterize the quantitative bonding strength at a bonded solid-solid interface by a contact acoustic nonlinearity (CAN) microscope. The principle of the CAN microscope is briefly described. The vibration amplitude of the incident focusing wave at the bonded interface is calculated, the standard bonding strength with a complete bonding state is established by the tension test, and the CAN parameter is calibrated. The quantitative contour of bonding strength at the interface could be obtained. The experimental contours of two samples are also presented.
|
Keywords:
43.25.+y
81.70.Cv
43.68.+z
|
|
Received: 09 September 2010
Published: 28 July 2011
|
|
PACS: |
43.25.+y
|
(Nonlinear acoustics)
|
|
81.70.Cv
|
(Nondestructive testing: ultrasonic testing, photoacoustic testing)
|
|
43.68.+z
|
|
|
|
|
|
[1] Fassbender-Pangraz S and Arnold W 1995 Review of Progress QNDE ed Thompson D O and Chimenti D E (New York: Plenum) vol 13B p 2001
[2] Han Q B, Qian M L and H Wang 2006 Ultrasonics 44 Suppl. 1 pp e1323–e1327
[3] Mulaveesala R, Pal P and Tuli S 2006 Sensors and Actuators A 128 209
[4] Olivier M, Rochat N, Chabli A, Lefeuvre G and Conne F 2001 Mater. Sci. Semiconduct. Proc. 4 15
[5] Hosson J T M D and Kooi B J 2001 Handbook of Surfaces and Interfaces of Materials (New York: Academic) pp 1–113
[6] Akker S and Arman J 1997 Ultrasonics 35 287
[7] Datta S K, Shah A H, Bratton R L and Chakraborty T 1988 J. Acoust. Sot. Am. 83 2020
[8] Rothenfusser M, Mayr M and Baumann J 2000 Ultrasonics 38 322
[9] Chen J, Jiang W and Shui Y 1999 Chin. J. Acoust. 18 89
[10] Chen J, Zhang D, Mao Y and Cheng J 2006 Ultrasonics 44 Suppl. 1 pp e1355–e1358
[11] Chen J, Zhang D, Mao Y and Cheng J 2009 Chin. Phys. Lett. 26 014302
[12] Richardson J M 1979 Int. J. Engin. Sci. 17 73
[13] Solodov I Y 1998 Ultrasonics 36 383
[14] Solodov I, Pfleiderer K, Gerhard H, Predak S and Busse G 2006 NDT & E Int. 39 176
[15] Solodov I, Pfleiderer K, Gerhard H and Busse G 2004 Ultrasonics 42 1011
[16] Monchalin J P, Aussel J D, He'on R et al 1989 J. Nondest. Eval. 8 121
[17] Lemons R F and Quate C F 1979 Acoustic Microscopy'' Chapter in Physical Acoustics: Principle and Methods ed Mason W P and Thurston R N (New York: Academic) vol XIV p 1–92
[18] Dace D E 1992 Review of Progress in QNDE ed Thompson D O and Chimenti D E (New York: Plenum) vol 11B p 2069
[19] Wu W Q, Ni Y F, Qiu G and Zhang D 1998 IEEE Ultrason. Symp. p 1175-1178
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|