This paper presents complementary data corresponding to characterization tests done for our research article entitled “Uniaxially aligned electrospun fibers for advanced nanocomposites based on a model PVOH-epoxy system” (Karimi et al., 2016) [1]. Poly(vinyl alcohol) and epoxy resin were selected as a model system and the effect of electrospun fiber loading on polymer properties was examined in conjunction with two manufacturing methods. A novel electrospinning technology for production of uniaxially aligned nanofiber arrays was used. A conventional wet lay-up fabrication method is compared against a novel, hybrid electrospinning–electrospraying approach. The structure and thermomechanical properties of resulting composite materials were ex...
We introduce a versatile advanced method of electrospinning for fabricating various kinds of nanofib...
In this study, a simple approach was described to investigate the theoretical models for electrospun...
Electrospinning is one of the most versatile methods used to fabricate nanofibers. Sub micron and na...
AbstractThis paper presents complementary data corresponding to characterization tests done for our ...
This paper presents complementary data corresponding to characterization tests done for our research...
This paper presents complementary data corresponding to char- acterization tests done for our resea...
This work demonstrates the potential of aligned electrospun fibers as the sole reinforcement in nano...
Electrospinning of polymers has gained surging interest in the last decades due to its wide range of...
Using an electrospinning technique, polymer materials have been spun using electrostatic potential t...
Polymeric electrospun fibers have the potential to be utilized for a variety of applications such as...
Electrospun nanofibres as the potential reinforcement in manufacturing composite materials are recen...
This pilot study elaborates the development of novel epoxy/electrospun polylactic acid (PLA) nanofib...
This pilot study elaborates the development of novel epoxy/electrospun polylactic acid (PLA) nanofib...
Electrospinning has become a valuable technique for producing micro-to-nanoscale polymeric fibers wi...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
We introduce a versatile advanced method of electrospinning for fabricating various kinds of nanofib...
In this study, a simple approach was described to investigate the theoretical models for electrospun...
Electrospinning is one of the most versatile methods used to fabricate nanofibers. Sub micron and na...
AbstractThis paper presents complementary data corresponding to characterization tests done for our ...
This paper presents complementary data corresponding to characterization tests done for our research...
This paper presents complementary data corresponding to char- acterization tests done for our resea...
This work demonstrates the potential of aligned electrospun fibers as the sole reinforcement in nano...
Electrospinning of polymers has gained surging interest in the last decades due to its wide range of...
Using an electrospinning technique, polymer materials have been spun using electrostatic potential t...
Polymeric electrospun fibers have the potential to be utilized for a variety of applications such as...
Electrospun nanofibres as the potential reinforcement in manufacturing composite materials are recen...
This pilot study elaborates the development of novel epoxy/electrospun polylactic acid (PLA) nanofib...
This pilot study elaborates the development of novel epoxy/electrospun polylactic acid (PLA) nanofib...
Electrospinning has become a valuable technique for producing micro-to-nanoscale polymeric fibers wi...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
We introduce a versatile advanced method of electrospinning for fabricating various kinds of nanofib...
In this study, a simple approach was described to investigate the theoretical models for electrospun...
Electrospinning is one of the most versatile methods used to fabricate nanofibers. Sub micron and na...