Physicochemical and rheological characterization of Prosopis juliflora seed gum aqueous dispersions

2014 ◽  
Vol 35 ◽  
pp. 348-357 ◽  
Author(s):  
Fernando Rincón ◽  
José Muñoz ◽  
Pablo Ramírez ◽  
Hortensia Galán ◽  
M. Carmen Alfaro
2020 ◽  
Vol 15 (4) ◽  
pp. 495-508
Author(s):  
Vahideh Sarabi-Aghdam ◽  
Seyed H. Hosseini-Parvar ◽  
Ali Motamedzadegan ◽  
Saeed Mirarab Razi ◽  
Ali Rashidinejad

2017 ◽  
Vol 66 ◽  
pp. 206-215 ◽  
Author(s):  
Ali Alghooneh ◽  
Seyed Mohammad Ali Razavi ◽  
Fataneh Behrouzian

2000 ◽  
Vol 11 (2-3) ◽  
pp. 243-247 ◽  
Author(s):  
R.A. Holser ◽  
C.J. Carriere ◽  
J.S. Park ◽  
T.P. Abbott

2009 ◽  
Vol 23 (5) ◽  
pp. 1394-1397 ◽  
Author(s):  
Louis M. Nwokocha ◽  
Peter A. Williams

TAPPI Journal ◽  
2019 ◽  
Vol 18 (11) ◽  
pp. 641-649
Author(s):  
JOSHUA OMAMBALA ◽  
CARL MCINTYRE

The vast majority of tissue production uses creping to achieve the required set of properties on the base sheet. The Yankee coating helps to develop the desired crepe that in turn determines properties such as bulk and softness. The adhesion of the sheet to the Yankee surface is a very important characteristic to consider in achieving the desired crepe. The coating mix usually consists of the adhesive, modifier, and release. A good combination of these components is essential to achieving the desired properties of the tissue or towel, which often are determined by trials on the machine that can be time consuming and lead to costly rejects. In this paper, five compositions of an industrial Yankee coating adhesive, modifier, and release were examined rheologically. The weight ratio of the adhesive was kept constant at 30% in all five compositions and the modifier and release ratios were varied. The normal force and work done by the different compositions have been shown at various temperatures simulating that of the Yankee surface, and the oscillatory test was carried out to explain the linear and nonlinear viscoelastic characteristic of the optimal coating composition.


Author(s):  
Luiz Eduardo Rodrigues Vieira ◽  
Leonardo Rosa Ribeiro da Silva ◽  
Felipe Chagas Rodrigues de Souza ◽  
Wisley Sales ◽  
Álisson Rocha Machado

Author(s):  
Joel López Bonilla ◽  
Cesar Celis ◽  
Danmer Maza

Polymers ◽  
2021 ◽  
Vol 13 (6) ◽  
pp. 948
Author(s):  
Nicola Zerbinati ◽  
Sabrina Sommatis ◽  
Cristina Maccario ◽  
Maria Chiara Capillo ◽  
Giulia Grimaldi ◽  
...  

(1) Background: Injectable hyaluronic acid (HA) dermal fillers are used to restore volume, hydration and skin tone in aesthetic medicine. HA fillers differ from each other due to their cross-linking technologies, with the aim to increase mechanical and biological activities. One of the most recent and promising cross-linkers is polyethylene glycol diglycidyl ether (PEGDE), used by the company Matex Lab S.p.A., (Brindisi, Italy) to create the HA dermal filler PEGDE family. Over the last few years, several studies have been performed to investigate the biocompatibility and biodegradability of these formulations, but little information is available regarding their matrix structure, rheological and physicochemical properties related to their cross-linking technologies, the HA content or the degree of cross-linking. (2) Methods: Seven different injectable HA hydrogels were subjected to optical microscopic examination, cohesivity evaluation and rheological characterization in order to investigate their behavior. (3) Results: The analyzed cross-linked dermal fillers showed a fibrous “spiderweb-like” matrix structure, with each medical device presenting different and peculiar rheological features. Except for HA non cross-linked hydrogel 18 mg/mL, all showed an elastic and cohesive profile. (4) Conclusions: The comparative analysis with other literature works makes a preliminary characterization of these injectable medical devices possible.


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