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An inverted pendulum attached and driven by two fibres serves as a typical testing system for the investigation of the fibres properties influence on the system dynamic response.
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Mechanical properties of unexposed SiCpyc/SiCN and SiBNCpyc/SiCN strongly correlate with fibre properties.
The chapter describes the mechanical properties of the fabrics in the following sequence: fibre properties → yarn structure → fabric structure.
Among fibre properties, fibre length was significantly better with treatment RT1 than with the CT in 2 out of 3 years.
The influence of fibre properties, fibre diameter, free volume and free area on separation efficiency is investigated.
The relationships defined here between GA, stem architecture, and bast fibre properties in linseed provide a useful framework for manipulation of fibre properties through breeding, biotechnology, and field treatments.
In order to achieve certain desirable fibre properties that cannot be obtained by polymers alone or to overcome certain deficiencies of polymers, various additives are mixed into polymer melts or solutions prior to the spinning of fibres.
Examples of how biotechnological engineering has been used to modify fibre properties in cotton and flax are given.
Prediction of fibre properties and process parameters from the required yarn quality can be made with acceptable accuracy using ANN.
The structural information is used to interpret the relationship between spinning conditions and fibre properties.
Other favourable fibre properties such as modulus and tenacity were not compromised.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com