Buch, Englisch, 110 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 400 g
ISBN: 978-3-03785-165-4
Verlag: Trans Tech Publications
Volume is indexed by Thomson Reuters BCI (WoS).With energy costs increasing, the gains to be made from weight-saving are most significant in the aerospace domain, but such gains are clearly also advantageous for road transport and this is even beginning to be recognised in shipbuilding. Consequently, improved reliability and resistance to degradation and durability in severe environments are always important requirements. Thus the development of composites, nano-composites and refractory alloys having specific properties has become a key factor in industrial and technological progress. Another challenge is the recyclability of advanced materials, as reflected by the emergence of projects involving thermoplastic-matrix composite fuselages. Moreover, the incorporation of biopolymers extracted from diverse raw materials can be an interesting alternative route to attaining the objective of 100% biodegradability. The purpose of these topics is to bring together researchers and specialists from universities and industry who are working on new composites and nano-composites, titanium alloys, etc., as well as structural characterisation using destructive or non-destructive testing, numerical analysis and composite processes.
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Preface
An Analytical Method for Free Vibration Analysis of Composite Beams Subjected to Initial Thermal Stresses
Polynomial Approach Modeling of Resonator Piezoelectric Disc
Study of the Transmission of Ultrasonic Guided Wave at the Junction of Two Different Elastic Plates with the Presence of a Defect
Identification of the Dynamic Coefficients of Hybrid Bearings
Impact Resistance of Composite Materials under Biaxial Preloading
Characterization of Grains Size by Ultrasounds
Identification of Materials Properties Using Displacement Field Measurement
Physical and Mechanical Properties of the Reinforced Polyester: Characterization - Probabilistic Analysis
Seismic Vulnerability Assessment Using the Instrumentation of an Existing Building
High Temperature Tribological Behaviour of Metal Matrix Composites Produced by SPS