Reference |
Specimen dimension (L x W) |
Gauge length* |
Strain rate |
Remarks |
Junkasem et al 2006 |
120 x 10 mm |
50 mm |
20 mm/min |
|
Kim et al 2012 |
25 x 5 mm |
Not specified |
1 mm/s |
|
Forouhardshad et al 2010 |
Not specified |
50 mm |
12.5 mm/min |
|
Ojha et al 2008 |
Not specified |
30 mm |
10 mm/min |
|
Luong 2012 |
40 x 10 mm |
20 mm |
5 mm/min |
|
Chen et al 2012 |
Width: 10 mm |
20 mm |
90 mm/min |
Load cell: 100 N
|
*Gauge length – Length of the specimen between the tabs for testing.
▼ Reference
-
Chen D W C, Liao J Y, Liu S J, Chan E C. Novel biodegradable sandwich-structured nanofibrous drug-eluting membranes for repair of infected wounds: an in vitro and in vivo study. International Journal of Nanomedicine 2012; 7: 763.
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Forouhardshad M, Saligheh O, Arasteh R, Farsani R E. Manufacture and Characterization of Poly (butylene terephthalate) Nanofibers by Electrospinning. Journal of Macromolecular Science 2010; 49: 833.
-
Junkasem J, Rujiravanit R, Supaphol P. Fabrication of a-chitin whisker-reinforced poly(vinyl alcohol) nanocomposite nanofibres by electrospinning. Nanotechnology 2006; 17: 4519.
-
Kim Y H, Min Y K, Lee B T. Fabrication and material properties of fibrous PHBV scaffolds depending on the cross-ply angle for tissue engineering. J Biomat. App. 2012
-
Luong N T H. Engineered Poly(L-lactic acid)-based nanofibers for osteogenic differentiation of human and mesenchymal stem cells. PhD Thesis. NUS 2012.
-
Ojha S S, Afshari M, Kotek R, Gorga R E. Morphology of Electrospun Nylon-6 Nanofibers as a Function of Molecular Weight and Processing Parameters. J. Appl. Polym. Sci. 2008; 108: 308.
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