By B. S. S. Daniel, G. P. Chaudhari
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Additional resources for Advances in Materials and Processing: Challenges and Opportunities: Selected, Peer Reviewed Papers From the International Conference on Advanced ... and Opportu
Chaudhari 27 and Blake’s criteria, respectively. 25 mm in length direction. The size of time step was 50 nano sec. Time marching was carried out using Newmark’s time integration technique. The excitation frequency and number of cycles were 200 kHz and five respectively, which corresponds to 25 µs of excitation duration. The excitation pulse was a tone burst modulated with Hanning window. Initially, numerical simulations were carried out on aluminium DCB, followed by steel-brass bi-metallic DCB.
5 (a), (b) and (c) shows the load vs. displacement plots of all square tube configurations, with and without foam. It is observed from this figure, that in case of empty tube, the deformation first starts from bottom and then from the top and it continues downward with the formation of folding modes. Further, it is observed that in case of single tube, the presence of foam has minor effect on the reduction of the crush load. In case of two and three tube configurations, there exist a significant reduction in crush load as depicted in Fig.
24 Ultrasonic Lamb wave based crack growth prediction for estimation of strain energy release rate C. in Keywords: Turning Lamb mode, Time-of-Flight, Strain energy release rate. Abstract. A technique is proposed to predict crack growth for the estimation of Strain Energy Release Rate (SERR) of Double Cantilever Beam (DCB) bi-metallic specimen, employing ultrasonic Lamb waves. Techniques based on the Time-of-Flight (ToF) of the Turning Lamb Mode (TLM) and Direct Lamb Mode (DLM) explored to determine the crack growth.