Robotic impact-acoustics system for tile-wall bonding integrity inspection

Mechatronics - Tập 19 - Trang 1251-1260 - 2009
B.L. Luk1, K.P. Liu1, Z.D. Jiang1,2, F. Tong3
1Department of Manufacturing Engineering and Engineering Management, City University of Hong Kong, Hong Kong
2College of Information Science and Engineering, Ningbo University, Zhejiang, China
3Key Laboratory of Underwater Acoustic Communication and Marine Information Technology of the Minister of Education, Xiamen University, Xiamen, China

Tài liệu tham khảo

Chew, 1999, Factors affecting ceramic tile adhesion for external cladding, Construct Build Mater, 13, 293, 10.1016/S0950-0618(99)00023-9 Zhao, 1997, Influence of workmanship on the bonding strength of tiles to external walls, Int J Adhesion Adhesives, 17, 47, 10.1016/S0143-7496(96)00019-X Tan, 1996, Ultrasonic evaluation of cement adhesion in wall tiles, Cement Concrete Compos, 18, 119, 10.1016/0958-9465(95)00008-9 Yang, 2001, Nondestructive detection of weak joints in adhesively bonded composite structures, Compos Struct, 51, 63, 10.1016/S0263-8223(00)00125-2 Cheng, 1993, The impact-echo response of concrete plates containing delaminations: numerical, experimental and field studies, J Mater Struct, 26, 274, 10.1007/BF02472949 McCann, 2001, Review of NDT methods in the assessment of concrete and masonry structures, NDT&E Int, 34, 71, 10.1016/S0963-8695(00)00032-3 Mori, 2002, A new non-contacting non-destructive testing method for defect detection in concrete, NDT&E Int, 35, 399, 10.1016/S0963-8695(02)00009-9 Tong, 2006, Tile-wall bonding integrity inspection based on time-domain features of impact acoustics, Sens Actuat A: Phys, 132, 557, 10.1016/j.sna.2005.12.035 Christoforou, 1998, Effect of flexibility on low velocity impact response, J Sound Vibrat, 217, 563, 10.1006/jsvi.1998.1807 Wu HD, Siegel M. Correlation of accelerometer and microphone data in the Coin Tap Test. In: Proceedings of the instrumentation and measurement technology conference, vol. 2; 1999. p. 814–9. Sardy, 2001, Robust wavelet denoising, IEEE Trans Signal Process, 49, 1146, 10.1109/78.923297 Tso SK, Fung YH, Chow WL, Zong GH, Liu R. Design and implementation of a glass-wall cleaning robot for high-rise buildings. In: Proceedings of the world automation congress eighth international symposium on robotics with applications; 2000. Paper ID: ISORA123. Hillenbrand C, Berns K, Weise F, Koehnen J. Development of a climbing robot system for non-destructive testing of bridges. In: Proceedings of the 8th IEEE conference on mechatrinics and machine vision in practice; 2001. p. 399–403. Luk, 2005, Intelligent legged climbing service robot for remote maintenance applications in hazardous environments, J Robot Autonom Syst, 53, 142, 10.1016/j.robot.2005.06.004 Luk, 2006, Tele-operated climbing and mobile service robots for remote inspection and maintenance in nuclear industry, Ind Robot, 33, 194, 10.1108/01439910610659105 Kinney P. Zigbee technology: wireless control that simply works. Technical white paper from Zigbee Alliance; <http://www.zigbee.org/en/resources/whitepapers1.asp>. He Z, Zhao J, He Y, Meng Q. Wavelet transform and multiresolution signal decomposition for machinery monitoring and diagnosis. In: Proceedings of IEEE international conference on industrial technology; 1996. p. 724–7. Donoho, 1994, Ideal spatial adaptation by wavelet shrinkage, Biometrika, 81, 425, 10.1093/biomet/81.3.425 Donoho, 1995, Adapting to unknown smoothness via wavelet shrinkage, J Am Stat Assoc, 90, 1200, 10.1080/01621459.1995.10476626