Advanced Composites for Aerospace, Marine, and Land by Tomoko Sano, T. S. Srivatsan

By Tomoko Sano, T. S. Srivatsan

The papers during this quantity disguise a huge spectrum of themes that characterize the actually different nature of the sphere of composite fabrics. lately, composite fabrics have grown in energy, stature, and value to develop into a key fabric of more desirable clinical curiosity and resultant study into realizing their habit for choice and secure use in a large spectrum of technology-related functions. This assortment provides examine and findings correct to the newest advances in composites fabrics, particularly their use in aerospace, maritime, or even land purposes. The editors have made each attempt to collect authors who placed forth contemporary advances of their learn whereas at the same time either elaborating on and thereby bettering our triumphing realizing of the salient features relating to the technological know-how, engineering, and far-reaching technological purposes of composite materials.

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However, due to the huge local deformation micro-cracks can be sporadically detected in the titanium surface, see Figure 5. Figure 4: SEM micrographs of the of the interface of the sample produced with an extrusion ratio of 20 Figure 5: Detail of an SEM micrograph of the interface of the sample produced with an extrusion ratio of 20 In Figure 6 and Figure 7, the interface of the sample produced with an extrusion ratio of 4 is displayed. Even with the lower extrusion ratio of 4 no gap between the joining partners was detected.

In this context, the i m p a c t of a subsequent h e a t treatment will be investigated thoroughly. Local b o n d i n g properties will b e studied according to previous w o r k s [12] as well as the c o m p o u n d ' s p e r f o r m a n c e with f o c u s on internal stresses and distortion [13]. T h e s e results of the n e w L A E process will be c o m p a r a b l e with other b o n d i n g techniques for c o m p o u n d profiles, for e x a m p l e laser b e a m welding. All of these aspects will b e part o f the subsequent studies.

334 [3] J. Hirsch: Walzen von Flachprodukten. Wiley-VCH, Weinheim, 2001. [4] M. Schmidtchen, P. Simecek, D. Hadjuk: International Conference on Metal Forming MEFORM 2004, Freiberg, Deutschland, 2004, pp. 81-110. [5] J. S. Lee, T. H. Son, C. S. Kang, C. H. Yun, S. C. Lim, H. C. Kwon: Fabrication and characterisation of Ti-Cu clad materials by direct extrusion; Journal of Materials Processing Technology 187-188 (2007), pp. 653-656. [6] J. J. Theler, A. Wagner, A. Ames: Herstellung von Aluminium/ StahlVerbundstromschienen mit metallurgischer Bindung zwischen Aluminium und Stahl durch Verbundstrangpressen.

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