《Advances in Materials Physics and Chemistry》

作品数:476被引量:162H指数:3
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《Advances in Materials Physics and Chemistry》
主办单位:美国科研出版社
最新期次:2024年11期更多>>
发文主题:LTSUBIXRDDIFFRACTION更多>>
发文领域:理学医药卫生金属学及工艺一般工业技术更多>>
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Influence of Sugarcane Bagasse Fibers on the Mechanical Strength and Porosity of Concrete Made with Forspak 42.5 N Cement in the Republic of Congo
《Advances in Materials Physics and Chemistry》2024年第11期249-263,共15页Christ Ariel Malanda Ceti Alain Second Dzabana Honguelet Ferland Ngoro-Elenga Timothée Nsongo Abel Dominique Eboungabeka Hilaire Elenga Nice Ngouallat Mfoutou 
The concrete mixed to sugarcane bagasse fibers and polypropylene fibers prepared with varied conditions were presented. The aim of our study is to formulate a concrete mixed with sugarcane bagasse fibers, which will g...
关键词:CONCRETE Bagasse Fiber Polypropylene Fiber Tensile Test Compression Test 
Determination of the Performance Scores of a Photovoltaic Power Plant Connected to the Grid: The Zagtouli Photovoltaic Power Plant in Burkina-Faso
《Advances in Materials Physics and Chemistry》2024年第11期264-272,共9页Toussaint Tilado Guingane Eric Korsaga Sosthène Tassembedo Rene Ouedraogo 
Photovoltaic solar energy is still in its infancy in Burkina Faso, despite the country’s high solar potential. The electricity grid is experiencing an increase in demand for energy, creating a shortfall in supply. Th...
关键词:Solar Energy Solar Power Plant Climatic Parameters PERFORMANCE Classification 
Heat-Generating Effects Involving Multiple Nanofluids in a Hybrid Convective Boundary Layer Flow on the Sloping Plate in a Porous Medium
《Advances in Materials Physics and Chemistry》2024年第10期235-247,共13页Md. Nasir Uddin Md. Abdullah Al Mamun Md. Masudar Rahman 
The hybrid convective boundary layer circulation involving multiple nanofluids via a medium with pores is approaching a sloping plate. An investigation regarding the heat-generating effects upon the examined nanofluid...
关键词:Heat-Generating Hybrid Convection Nanofluids Porous Medium Sloping Plate 
Molecular Dynamics, Physical Properties, Diffusion Coefficients and Activation Energy of the Lithium Oxide (Li-O) and Sodium Oxide (Na-O) Electrolyte (Cathode)
《Advances in Materials Physics and Chemistry》2024年第9期213-234,共22页Alain Second Dzabana Honguelet Abel Dominique Eboungabeka Timothée Nsongo 
This work is a simulation model with the LAMMPS calculation code of an electrode based on alkali metal oxides (lithium, sodium and potassium) using the Lennard Jones potential. For a multiplicity of 8*8*8, we studied ...
关键词:Molecular Dynamics Diffusion Coefficients Activation Energy Lithium Oxide Sodium Oxide Lennard Jones Potential Data File Atomic and Charge Models CATHODE LAMMPS 
A Future Life of Binary Phase Diagrams
《Advances in Materials Physics and Chemistry》2024年第8期123-136,共14页Yuri Ustinovshikov 
The article raises the question of what to do with one of the main achievements of metal science in recent years—binary phase diagrams. These diagrams play a key role in the science of alloys and therefore their reli...
关键词:Phase Transformation “Ordering-Separation” Electronic Transition “Ionic Bond  Covalent Bond” Binary Phase Diagrams Transmission Electron Microscopy 
Properties and Characterization of Two Clays Raw Material from Mountain District (West of Côte d’Ivoire) for Use in Low-Carbon Cements
《Advances in Materials Physics and Chemistry》2024年第8期137-145,共9页Wedjers Max Robin Manouan Bi Irié Hervé Gouré Doubi Lébé Prisca Marie-Sandrine Kouakou Atta Kouamé Brice Koffi Alfred Niamien Kouamé Namory Méité 
This work was devoted to the study of the physico-chemical properties of two clay minerals from the Mountain District (West Côte d'Ivoire) referenced ME1 and ME2. These samples were characterized by the experimental t...
关键词:QUARTZ KAOLINITE Mountain District Low-Carbon Cements 
Thermophysical, Mechanical and Durability Characterization of Adobe Bricks Reinforced with Fonio (Digitaria exilis) Sounds
《Advances in Materials Physics and Chemistry》2024年第8期146-164,共19页Colbert Babé Etienne Yanné Souaibou   Mojonda   Lémankréo Bakaiyang Bernard Kola Gustave Assoualaye Layndé Tawé Raidandi Danwé Dieudonné Kidmo Kaoga Noël Djongyang 
Buildings constructed using modern materials such as cement are energy-intensive, facilitate heat transfer and thus promote warming inside the building. However, the Sudano-Sahelian regions have a hot climate occupyin...
关键词:DURABILITY Thermal Comfort Building SOIL Fonio Faste 
Analysis of the Effect of Temperature and Relative Humidity on the Reliability of a Photovoltaic Module
《Advances in Materials Physics and Chemistry》2024年第8期165-177,共13页Abdoulaye Kabré Dominique Bonkoungou Zacharie Koalaga 
Photovoltaic energy occupies a significant place in the renewable energy market, with photovoltaic (PV) modules playing a vital role in converting solar energy into electricity. However, their effectiveness is likely ...
关键词:Solar Energy PV Module LIFESPAN RELIABILITY EFFICIENCY 
Preparation and Characterisation of Corncob-Based Biosorbents in Côte d’Ivoire
《Advances in Materials Physics and Chemistry》2024年第8期178-195,共18页Miezan Gnoan Ghislaine De Bouanzi Patrick Grah Atheba Serge Kouassi Gbamélé Martin Alla Aka Albert Trokourey 
This study focuses on the preparation of corncob-based biosorbents. The chemical impregnation method was used to vary the chemical agent namely phosphoric acid H3PO4 (BA) and sodium hydroxide NaOH (BB). The physicoche...
关键词:BIOSORBENT Corncobs Chemical Activation Phosphoric Acid Sodium Hydroxide 
Allophane as a Nanotechnological Additive in Masonry Materials to Increase Resistance and Waterproofing
《Advances in Materials Physics and Chemistry》2024年第8期196-212,共17页Edward H. Jiménez Joao Rivera Juan H. Villalba Paola E. Vera Marlon Cuenca Belén Granja Javier Fuentes Sandra Gavilanes Daniel Hidalgo Fernando Garcia Jose Bermudez Washington Ruiz Alexis Martial Debut 
The constant need for high-strength materials in the construction industry promotes the research of additives that improve the properties of masonry materials. The use of allophane as an additive in concrete and morta...
关键词:ALLOPHANE Nano Additive Strength IMPERMEABILITY CONCRETE MORTAR 
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