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Rheological Properties of Pullulan and Aloe Vera Nanofiber Solutions

Open Access
|Oct 2020

Figures & Tables

Figure 1.

The overall process to develop the nanofiber demonstrating the multiple applications.
The overall process to develop the nanofiber demonstrating the multiple applications.

Figure 2.

Nanofiber using PHD 4400 Syringe Pump at 30 kV (a) 10,000 times magnification, (b) 50,000 times magnification
Nanofiber using PHD 4400 Syringe Pump at 30 kV (a) 10,000 times magnification, (b) 50,000 times magnification

Figure 3.

Nanofiber using PHD 4400 Syringe Pump at 28 kV (a) 50,000 times magnification, (b) 25,000 times magnification
Nanofiber using PHD 4400 Syringe Pump at 28 kV (a) 50,000 times magnification, (b) 25,000 times magnification

Figure 4.

Elastic and viscous modulus of a mixture as a function of frequency at 19 oC.
Elastic and viscous modulus of a mixture as a function of frequency at 19 oC.

Figure 5.

Complex modulus as a function of frequency at 19 oC
Complex modulus as a function of frequency at 19 oC

Figure 6.

(a) Viscosity vs. stress, (b) Viscosity vs. shear rate
(a) Viscosity vs. stress, (b) Viscosity vs. shear rate

Figure 7.

Validation of cross model with experimental data.
Validation of cross model with experimental data.

Figure 8.

Storage and loss modulus vs. time
Storage and loss modulus vs. time
Language: English
Page range: 9 - 15
Published on: Oct 14, 2020
Published by: Xi’an Technological University
In partnership with: Paradigm Publishing Services
Publication frequency: 4 times per year

© 2020 Haifa El-sadi, Shady Sally, Alex Bossart, Dilhan Kalyon, published by Xi’an Technological University
This work is licensed under the Creative Commons Attribution 4.0 License.