Comptes Rendus
Changes in the physicomechanical characteristics of a ceramic paste during drying
Comptes Rendus. Mécanique, Volume 343 (2015) no. 7-8, pp. 419-428.

This paper is a contribution to the determination of the variations of the physical and rheological properties of a ceramic paste during drying. The ceramic's density was determined as a function of moisture content using the Archimedes' Principle. The shrinkage was derived from the experimental density data and also determined by measuring the variation of the sample's dimensions during drying. Compression tests were performed at different deformation rates in order to identify the linear and non-linear viscoelastic domains of the material. Relaxation tests were carried out and the results of fitting showed that the generalized Maxwell model could be used to describe the viscoelastic behavior of the samples. Rupture tests were also made to measure the strength of the material for different moisture contents and to study the influence of temperature on the strength of the dried product.

Reçu le :
Accepté le :
Publié le :
DOI : 10.1016/j.crme.2015.06.001
Mots clés : Porcelain, Density, Shrinkage, Viscoelastic behavior, Maxwell model, Strength
Imen Hammouda 1 ; Kamel Jlassi 1 ; Daoued Mihoubi 1

1 Thermal Processes Laboratory, Research and Technology Center of Energy, B.P. N
@article{CRMECA_2015__343_7-8_419_0,
     author = {Imen Hammouda and Kamel Jlassi and Daoued Mihoubi},
     title = {Changes in the physicomechanical characteristics of a ceramic paste during drying},
     journal = {Comptes Rendus. M\'ecanique},
     pages = {419--428},
     publisher = {Elsevier},
     volume = {343},
     number = {7-8},
     year = {2015},
     doi = {10.1016/j.crme.2015.06.001},
     language = {en},
}
TY  - JOUR
AU  - Imen Hammouda
AU  - Kamel Jlassi
AU  - Daoued Mihoubi
TI  - Changes in the physicomechanical characteristics of a ceramic paste during drying
JO  - Comptes Rendus. Mécanique
PY  - 2015
SP  - 419
EP  - 428
VL  - 343
IS  - 7-8
PB  - Elsevier
DO  - 10.1016/j.crme.2015.06.001
LA  - en
ID  - CRMECA_2015__343_7-8_419_0
ER  - 
%0 Journal Article
%A Imen Hammouda
%A Kamel Jlassi
%A Daoued Mihoubi
%T Changes in the physicomechanical characteristics of a ceramic paste during drying
%J Comptes Rendus. Mécanique
%D 2015
%P 419-428
%V 343
%N 7-8
%I Elsevier
%R 10.1016/j.crme.2015.06.001
%G en
%F CRMECA_2015__343_7-8_419_0
Imen Hammouda; Kamel Jlassi; Daoued Mihoubi. Changes in the physicomechanical characteristics of a ceramic paste during drying. Comptes Rendus. Mécanique, Volume 343 (2015) no. 7-8, pp. 419-428. doi : 10.1016/j.crme.2015.06.001. https://comptes-rendus.academie-sciences.fr/mecanique/articles/10.1016/j.crme.2015.06.001/

[1] S.K. Das; K. Dana; N. Singh; R. Sarkar Shrinkage and strength behaviour of quartzitic and kaolinitic clays in wall tile compositions, Appl. Clay Sci., Volume 29 (2005), pp. 137-143

[2] S. Chemkhi; F. Zagrouba Characterisation of potato slices during drying: density, shrinkage, and thermodynamic of sorption, Int. J. Food Eng., Volume 7 (2011) no. 3

[3] M.S. Rahman; C.O. Perera; X.D. Chen; R.H. Driscoll; P.L. Potluri Density, shrinkage and porosity of calamari mantle meat during air drying in a cabinet dryer as a function of water content, J. Food Eng., Volume 30 (1996), pp. 135-145

[4] D. Mihoubi; F. Zagrouba; M. Ben Amor; A. Bellagi Drying of clay: I. Material characteristics, Dry. Technol., Volume 20 (2002), pp. 465-487

[5] S. Chemkhi Séchage d'un milieu déformable non saturé: modélisation du couplage hygromécanique, École nationale d'ingénieurs de Monastir, Tunisie, 2008 (Thesis)

[6] G. Musielak; A. Tomkowiak; A. Kieca Influence of drying conditions on mechanical strength of material, Dry. Technol., Volume 27 (2009), pp. 888-893

[7] M.K. Krokida; V.T. Karathanos; Z.B. Maroulis Compression analysis of dehydrated agricultural products, Dry. Technol., Volume 18 (2000), pp. 395-408

[8] W.K. Solomon; V.K. Jindal Comparison of mechanical tests for evaluating textural changes in potatoes during thermal softening, J. Texture Stud., Volume 33 (2002), pp. 529-542

[9] P.P. Lewicki; E. Jakubczyk Effect of hot air temperature on mechanical properties of dried apples, J. Food Eng., Volume 64 (2004), pp. 307-314

[10] G.A. Miller; S. Azad Influence of soil type on stabilization with cement kiln dust, Constr. Build. Mater., Volume 14 (2000), pp. 89-97

[11] D.J. O'Brien; P.T. Mather; S.R. White Viscoelastic properties of an epoxy resin during cure, J. Compos. Mater., Volume 35 (2001), pp. 883-904

[12] M. Kfoury; M. Mpagana; J. Hardy Influence de l'affinage sur les propriétés rhéologiques du camembert et du saint-paulain, Le Lait, Volume 69 (1985), pp. 137-149

[13] S.J. Kowalski; D. Mierzwa Numerical analysis of drying kinetics for shrinkable products such as fruits and vegetables, J. Food Eng., Volume 114 (2013), pp. 522-529

[14] J. Telis-Romero; L.K. Guizzo-Silva; V.R.N. Telis Rheological properties of rehydrated papaya, Braz. J. Food Eng., Volume 6 (2003), pp. 221-227

[15] S.J. Kowalski; J. Banaszak; A. Rybicki Plasticity in materials exposed to drying, Chem. Eng. Sci., Volume 65 (2010), pp. 5105-5116

[16] S.J. Kowalski; G. Musilac; M. Grzegorz; A. Rybicki; T. Sliwa Stresses and strains in elastic, viscoelastic, and plastic materials during drying, Dry. Technol., Volume 30 (2012), pp. 1176-1189

Cité par Sources :

Commentaires - Politique


Ces articles pourraient vous intéresser

Reactivity of chromium-based pigments in a porcelain glaze

Louisiane Verger; Olivier Dargaud; Gwenaëlle Rousse; ...

C. R. Phys (2018)


Preparation and characterization of tubular cermet membrane for microfiltration separation: application to the treatment of textile wastewater

Mabrouk Ben Hamden; Jamel Bouaziz

C. R. Chim (2021)


2-D hydro-viscoelastic model for convective drying of deformable and unsaturated porous material

Lamine Hassini; Lamloumi Raja; Gisèle Laure Lecompte-Nana; ...

C. R. Méca (2017)