Könyv Flow Induced Alignment in Composite Materials T. D. Papathanasiou

Flow Induced Alignment in Composite Materials

Nyelv: Angol
Kötés: Kemény kötésű
Kiadó: Elsevier Books
Elérhetőség: Kiadói készleten rendelésre
Küldés 28-34 napon belül
72 527 Ft
The purpose of aligning short fibres in a fibre-reinforced material is to improve the mechanical pro...

Információk a könyvről

Nyelv
Angol
Kötés
Könyv - Kemény kötésű
Kiadva
1997
oldal
363
EAN
9781855732544
ISBN
1855732548
Enbook ID
05115308
Súly
830
Méretek
216 x 279 x 36

Teljes leírás

The purpose of aligning short fibres in a fibre-reinforced material is to improve the mechanical properties of the resulting composite. Aligning the fibres, generally in a preferred direction, allows them to contribute as much as possible to reinforcing the material. Flow induced alignment in composite materials details, in a single volume, the science, processing, applications, characterisation and properties of composite materials reinforced with short fibres that have been orientated in a preferred direction by flows arising during processing. The topics discussed include fibre alignment and materials rheology; processes that can produce fibre alignment in polymeric, liquid crystal polymeric, and metallic composites; materials characterization and mechanical properties; and modelling of processes and materials properties. The technology of fibre-reinforced composites is continually evolving and this book provides timely and much needed information about this important class of engineering materials. The bookis an essential reference work for industry and an indispensable guide for the research worker, advanced student and materials scientist.

Érdekelheti

Azok a vásárlók, akik ezt a könyvet megvásárolták, a következőket is megvásárolták

Israel

Philipp Müller
2 485 Ft

Introduzione alla neurobiologia

Cesare Colucci D'Amato
16 829 Ft

Gedichte

Nikolaus Lenau
8 935 Ft
5 041 Ft

Lampálie v ohrožení

Martin Šinkovský
2 529 Ft

Beyin Daha Fazlasini Ister

Daniel Z. Lieberman
6 308 Ft