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Titlebook: Design and Control of Structure of Advanced Carbon Materials for Enhanced Performance; B. Rand,S. P. Appleyard,M. F. Yardim Book 2001 Kluw

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Design and Control of Structure of Advanced Carbon Materials for Enhanced Performance978-94-010-1013-9Series ISSN 0168-132X
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Formation Control via Bearing Measurementsand phonons. We will show below that these transport properties me particularly striucture-sensitive in carbons and graphites. Indeed, if one is able to design and control their structure, it is possible to tailor these properties at a predetermined level. As a corollary, the analysis of te results
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Studies in Systems, Decision and Control having higher mechanical performances than each component taken separately. This definition applies to a very large number of compounds of biological or synthetic origin. For instance plants, bones and teeth may be considered as composites. Synthetic materials like glass fibre-reinforced plastic, s
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https://doi.org/10.1007/978-94-009-7245-2ce of graphitisable carbon, both readily available and cheap. It is the basis of both the filler and binder phases in polygranular materials, such as electrodes, nuclear graphite and mechanical carbons; it can be converted into isotropic or high performance (anisotropic) fibres; it can be used to pr
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Pancakes, Hot Gas and Microwave Distortions up to 700 MPa and modulus of 30 to 60 GPa, and the “High Performance” fiber, which has tensile strength up to 4 GPa and modulus from 180 to 900 GPa. There is also a version of the “High Performance” fiber optimized for thermal conductivity, which, at 1000 Wm.K. is 2 1/2 times more conductive than c
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https://doi.org/10.1007/978-94-009-7245-2gher strengths (both tensile and compressive) than do pitch-based carbon fibers. Consequently, they are preferred in applications where strength is critical. Pitch-based carbon fibers develop higher lattice-dependent properties (modulus and thermal conductivity) and, thus, are used when stiffness or
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Phase Transitions in Layered Film Systems, and find widespread application in both aerospace and materials processing industries. In fact, CC composites are notable as being among the most successful of the “brittle matrix composite” engineering materials. Their success largely arises from the ability to translate the lattice properties of
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