In-plane permeability of small area (100 × 50 mm) alumina fiber woven fabrics grafted with aligned carbon nanotubes (CNT) was quantified by placing them in series with a glass mat of known permeability during a flow experiment. The methodology was first validated on a reference woven textile. Permeability values matched those obtained by a direct method within a margin of ±15%. Permeabilities of radial-aligned (short CNT, SCNT) and so-called ‘Mohawk’ (long CNT, LCNT) morphologies of the CNT-grafted samples were then measured and compared to the non-grafted alumina, showing a decrease attributed to a change in local textile structure as assessed in previous studies. Unsaturated permeability decreased by 77% after SCNT- and 88% after LCNT-gra...
Carbon nanotube (CNT) possess outstanding electrical, mechanical, anisotropic, and thermal propertie...
To make a computer model able to predict fabric permeability properties. Variables such as yarn diam...
Carbon nanotubes (CNTs) have gained great attention due to their excellent mechanical, electrical, a...
In-plane permeability of small area (100 × 50 mm) alumina fiber woven fabrics grafted with aligned c...
Filtration of nanofillers into porous fabric media is still an issue during the preparation of advan...
In this second international permeability benchmark, the in-plane permeability values of a carbon fa...
Growth of nanowires, particularly aligned carbon nanotubes (CNTs) on fibre surfaces, is an additive ...
In this second international permeability benchmark, the in-plane permeability values of a carbon fa...
We study how intrinsic parameters of carbon nanotube (CNT) samples affect the properties of macrosco...
© 2019 Elsevier Ltd Although good progress was made by two international benchmark exercises on in-...
In this paper, a new and versatile approach to obtain a good dispersion in water-based paste of shor...
The paper demonstrates the possibility of a correct (within the experimental scatter) calculation of...
Experimental permeability data of non-crimp fabrics (NCFs) is discussed in this chapter. The chapter...
SUMMARY: We will here combine previous studies to yield a model that can predict the true permeabili...
Flow-induced fiber-bed compaction has considerable effects on through-thickness permeability due to ...
Carbon nanotube (CNT) possess outstanding electrical, mechanical, anisotropic, and thermal propertie...
To make a computer model able to predict fabric permeability properties. Variables such as yarn diam...
Carbon nanotubes (CNTs) have gained great attention due to their excellent mechanical, electrical, a...
In-plane permeability of small area (100 × 50 mm) alumina fiber woven fabrics grafted with aligned c...
Filtration of nanofillers into porous fabric media is still an issue during the preparation of advan...
In this second international permeability benchmark, the in-plane permeability values of a carbon fa...
Growth of nanowires, particularly aligned carbon nanotubes (CNTs) on fibre surfaces, is an additive ...
In this second international permeability benchmark, the in-plane permeability values of a carbon fa...
We study how intrinsic parameters of carbon nanotube (CNT) samples affect the properties of macrosco...
© 2019 Elsevier Ltd Although good progress was made by two international benchmark exercises on in-...
In this paper, a new and versatile approach to obtain a good dispersion in water-based paste of shor...
The paper demonstrates the possibility of a correct (within the experimental scatter) calculation of...
Experimental permeability data of non-crimp fabrics (NCFs) is discussed in this chapter. The chapter...
SUMMARY: We will here combine previous studies to yield a model that can predict the true permeabili...
Flow-induced fiber-bed compaction has considerable effects on through-thickness permeability due to ...
Carbon nanotube (CNT) possess outstanding electrical, mechanical, anisotropic, and thermal propertie...
To make a computer model able to predict fabric permeability properties. Variables such as yarn diam...
Carbon nanotubes (CNTs) have gained great attention due to their excellent mechanical, electrical, a...