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In this paper, an additional size effect resulting from a variation of the fibres' lengths and the interaction between both size effects is carefully analysed.
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Practically all synthetic fibres are made originally in filament form and then cut into staples, or fibre lengths.
The critical RVE side length is shown to be approximately four times the fibre length when considering convergence of the tensile and shear stiffnesses for the range of fibre lengths and volume fractions studied.
The resulting material is sieved to provide an indication of mass fraction at various fibre lengths.
Rheological data have been analysed on the basis of fibre length (or aspect ratio) and/or distribution of the fibre lengths by using the rheological model proposed by Maron and Pierce.
The examined varying fibre lengths have no influence on application properties.
In Figure 3 we numerically evaluated Eq. (2) with a range of different fibre lengths for three different satellite heights.
Bacterial nanocellulose/CMC (carboxymethylcellulose) fibres suspensions were obtained from JeNaCell GmbH (Jena, Germany) in three different average fibre lengths (cf. Table 1).
Expressed in terms of fibre lengths per second (Lf/s), this equates to a velocity of 0.20±0.01 Lf/s in adult mice and 0.17±0.00 Lf/s in aged mice, assuming a fibre length to muscle length ratio of 0.44 [55].
Further increase in the number of atoms should be possible by extending the fibre length.
Four metrics are used to quantify nerve fibres: Nerve fibre length (NFL), Nerve fibre density (NFD), Nerve-branch density (NBD) and Nerve fibre tortuosity (NFT).
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