Materials (ISSN 1996-1944; CODEN: MATEG9) is an open access journal of materials science and engineering published semi-monthly online by MDPI. IF 3.2 (2024)
📢 All articles in Materials, Volume 19, Issue 2 (January-2 2026), are now freely available to access, read and download!
👉 View cover paper: https://t.co/tiwyTenIY0
👉 Access the full issue: https://t.co/LZ6ucfFm2c
The study investigated how waste rock wool dosage affects the properties of fiber-reinforced #mortar, finding that it reduced workability and compressive strength but improved flexural-to-compressive ratio and abrasion resistance at certain dosages
👉https://t.co/1Ea1VCo7r9
This study fabricated a self-driven #photodetector using a single-crystal perovskite/monolayer #graphene#heterostructure via an optimized wet transfer method, achieving a fast response time of 2/30 μs at zero bias due to the high-quality interface.
👉https://t.co/PgkbKhA9US
This study investigated the kinetics of alkali-silica reaction in sandstone, revealing that temperature and aggregate size critically influence gel retention and expansion, which informs an ASR prediction model.
👉https://t.co/reo7YIjk0a
#MaterialsScience#MDPIMaterials
This study evaluated the durability of prestressed pipe piles in an actual leachate environment through accelerated #corrosion experiments, finding that an epoxy resin coating effectively inhibited chloride ion penetration
👉https://t.co/Zo6M0bVL9S
#MaterialsScience
We are pleased to share that Materials was awarded an increased Impact Factor of 3.7 and now ranks Q2 in the “#Metallurgy & Metallurgical Engineering” & “Materials Science, Multidisciplinary” categories
#MaterialsScience#MetallurgicalEngineering
We are pleased to announce that Prof. Dr. Sergio Torres-Giner has been appointed Section Editor-in-Chief of the Section “Green Materials” in Materials (ISSN 1996-1944).
👉https://t.co/hjDFnoai6K
#MaterialsScience#MDPIMaterials#GreenMaterials
This study established a stress-deformation analysis model for prestressed wound composite components with arch-shaped sections, revealing a unique additional bending moment effect
👉https://t.co/kELNwCHaPv
#MaterialsScience#MDPIMaterials
This study established a #material removal model based on the Preston equation for free-form #rubber surfaces, quantified the distributions of grinding pressure and speed, and #experimentally verified the validity of the model.
👉https://t.co/SyvJDh4Yhi
#MaterialsScience
To accurately assess the residual stress distribution on the superficial layer of the weld for a pure #copper butt-welded joint after laser shock peening a coupled model was established by integrating #experimental measurements with numerical simulations
👉https://t.co/4UfWQi3zZi
To improve chip removal efficiency and drilling performance in oxygen-free copper a multi-objective optimization of gun drilling process parameters was conducted using a response surface methodology and a genetic algorithm
👉Read the full paper:https://t.co/L9mAPeNiYp
#Materials
📢Read all 12 papers in our paper collection "Sustainable Recycling Techniques of Pavement Materials II"
📌This Special Issue focused on innovative and efficient techniques and materials for #pavement#recycling and #reconstruction
👉https://t.co/TJOpBEpysH
#MaterialsScience
On 23 June, MDPI marks International #WomeninEngineering Day (#INWED26), led by WES, and the 2026 theme “#EngineeringIntelligence”. Explore our webinars, award, Special Issues and articles supporting a more inclusive engineering future.
Website: https://t.co/SdUijTWnXt
@INWED1919
👉Come & meet us @ the annual academic conference of the Chinese Materials Research Society: The China Materials Conference!
📅 12 - 15th July
🗺️Wuhan, China
📌Booth # A4-043-045
🔗https://t.co/ZMVns75tyl
#Conference#MaterialsScience#Booth#MDPIMaterials
This study evaluated the feasibility of using waste seashell lime as a binder for stabilizing clayey soil and found that, when alkali-activated, it outperformed Type III Portland #cement at lower contents.
👉https://t.co/0dwlsOlat2
#MaterialsScience#MDPIMaterials
This study demonstrated that a 20% recycled concrete powder substitution for cement in concrete provided an optimal balance between slightly reduced mechanical strength and significant environmental benefits.
👉https://t.co/S6amkxCNS3
#MaterialsScience#MDPIMaterials
This study employed the crystal plasticity finite element method to analyze how pore size, morphology, and location affect stress concentration in LMD-produced AlSi10Mg, revealing a competitive mechanism between pores and grains
👉https://t.co/h4fJbZ5oHO
#MaterialsScience