Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Zied Antar"'
Autor:
Mouna kallel, Mouna Masseoud, Zied Antar, Vincent Fridrici, Massimiliano Barletta, Khaled Elleuch
Publikováno v:
Journal of Materials Research and Technology, Vol 13, Iss , Pp 857-871 (2021)
The development of composite coating with higher dispersive second phase is a crucial goal to achieve its performance against wear. In this respect, an interesting experimental investigation on the behavior of Ni–B–TiO2 sol composite coating towa
Externí odkaz:
https://doaj.org/article/2538ba70f5da42f5962a0eb5e8030263
Autor:
M. Kallel, Massimiliano Barletta, Vincent Fridrici, Mouna Masseoud, Khaled Elleuch, Zied Antar
Publikováno v:
Journal of Materials Research and Technology, Vol 13, Iss, Pp 857-871 (2021)
The development of composite coating with higher dispersive second phase is a crucial goal to achieve its performance against wear. In this respect, an interesting experimental investigation on the behavior of Ni–B–TiO2 sol composite coating towa
Autor:
Sofiene B. M. Hammami, Sami Chaari, Narjes Baazaoui, Riadh Drira, Noureddine Drira, Karim Aounallah, Asma Maazoun, Zied Antar, Jesús V. Jorrín Novo, Taoufik Bettaieb, Hava F. Rapoport, Besma Sghaier-Hammami
Publikováno v:
Sustainability; Volume 14; Issue 19; Pages: 12676
The date palm, a central plant in the fragile oasis ecosystem, is considered one of the fruit species most tolerant to salt stress. However, the tolerance mechanisms involved are yet to be addressed and their evaluation until now was mainly based on
Ni–B–TiO2 composite coatings were elaborated by conventional and novel methods. While the first one was designed using TiO2 powder, the second was prepared by adding TiO2 sol in the bath solution. A comparative study between both coatings was per
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d8fa71e35070740434d06b22df2b3950
https://hdl.handle.net/11590/401220
https://hdl.handle.net/11590/401220
Publikováno v:
Journal of Materials Engineering and Performance. 27:4635-4644
A technique for wear sensing using a sacrificial layer with specific material properties has been developed successfully. This is achieved by recording the temperature evolution underneath the sacrificial organic layer during sliding tests, and by co
Publikováno v:
Tribology International. 115:493-505
This paper presents the premature wear case of high chromium cast iron hammers used for barite rocks crushing. The failure investigations of worn hammer surfaces and examination of barite rocks have been conducted to identify the failure mechanisms.
Publikováno v:
Friction, Vol 5, Iss 2, Pp 171-182 (2017)
Reinforced polymer–matrix composites are widely used under sliding contact conditions in various boating and automotive applications. In this paper, the friction and wear of bulk epoxy and carbon filler reinforced epoxy composites have been investi
Publikováno v:
Wear
Wear, Elsevier, 2018, 394-395, pp.71-79. ⟨10.1016/j.wear.2017.10.007⟩
Wear, Elsevier, 2018, 394-395, pp.71-79. ⟨10.1016/j.wear.2017.10.007⟩
International audience; A nanocrystallized surface layer of around 150 µm thickness was created on AISI 304L by nano-scale surface peening. Electron back scattered diffraction (EBSD) has revealed that the upper layer of the nanocrystallized surface
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b0eb62499e89691e6b5d556fda6f6cbb
https://hal.univ-lorraine.fr/hal-02392339
https://hal.univ-lorraine.fr/hal-02392339
Publikováno v:
Journal of Tribology. 140
Ternary iron–tungsten–phosphorus (Fe–W–P) coatings were electrodeposited with different sodium tungstate (NaWO4·2H2O) concentration on stainless steel 316 L substrate. These coatings were characterized by energy dispersive X-ray spectrometer
Publikováno v:
Polymers for Advanced Technologies. 24:638-645
To reduce both the cost and the environmental impact of copper-based thermal solar absorbers, we have investigated their possible substitution by bio-based conductive polymer nanocomposite (CPC) elements. Our results show that carbon nanotubes (CNT)