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Composite Materials in Aerospace Design is one of six titles in a
coherent and definitive series dedicated to advanced composite
materials research, development and usage in the former Soviet
Union. Much of the information presented has been classified until
recently. Thus each volume provides a unique insight into hitherto
unknown research and development data. This volume deals with the
design philosophy and methodology used to produce primary and
secondary load bearing composite structures with high life
expectancies. The underlying theme is of extensive advanced
composites research and development programs in aircraft and
spacecraft applications, including the space orbital ship BURAN'.
The applicability of much of this work to other market sectors,
such as automotive, shipbuilding and sporting goods is also
examined in some detail. The text starts by describing typical
structures for which composites may be used in this area and some
of the basic requirements from the materials being used. Design of
components with composite materials is then discussed, with
specific reference to case studies. This is followed by discussion
and results from evaluation of finished structures and components,
methods of joining with conventional materials and finally,
non-destructive testing methods and forecasting of the performance
of the composite materials and the structures which they form.
Composite Materials in Aerospace Design will be of interest to
anyone researching or developing in composite materials science and
technology, as well as design and aerospace engineers, both in
industry and universities.
Composite Materials in Aerospace Design is one of six titles in a
coherent and definitive series dedicated to advanced composite
materials research, development and usage in the former Soviet
Union. Much of the information presented has been classified until
recently. Thus each volume provides a unique insight into hitherto
unknown research and development data. This volume deals with the
design philosophy and methodology used to produce primary and
secondary load bearing composite structures with high life
expectancies. The underlying theme is of extensive advanced
composites research and development programs in aircraft and
spacecraft applications, including the space orbital ship `BURAN'.
The applicability of much of this work to other market sectors,
such as automotive, shipbuilding and sporting goods is also
examined in some detail. The text starts by describing typical
structures for which composites may be used in this area and some
of the basic requirements from the materials being used. Design of
components with composite materials is then discussed, with
specific reference to case studies. This is followed by discussion
and results from evaluation of finished structures and components,
methods of joining with conventional materials and finally,
non-destructive testing methods and forecasting of the performance
of the composite materials and the structures which they form.
Composite Materials in Aerospace Design will be of interest to
anyone researching or developing in composite materials science and
technology, as well as design and aerospace engineers, both in
industry and universities.
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