Results 61 to 70 of about 1,700 (186)
Magnesium alloys are being extensively demanded in airplane and space industry, biomedical product manufacturing and particularly in automotive industry because of their low density, high corrosion resistance and good strength properties.
Ali Yürük
doaj +1 more source
Biodegradable Implantable Electronics with Wireless Technology for Real‐Time Clinical Applications
The article explores how bioresorbable implantable electronics merge wireless communication and power delivery with biodegradable materials to enable real‐time clinical applications. It highlights advances in materials, system design, and medical uses across neural, cardiovascular, digestive, immune, and drug‐delivery systems.
Myeongki Cho +4 more
wiley +1 more source
High‐Entropy Alloys: Founding Concepts and Pathways for Biomedical Future Development
Studies on the use of high‐entropy alloys (HEAs) as biomedical implants have increased tremendously because of their superior mechanical strength, corrosion resistance and biocompatibility. HEAs are contrasted to the traditional alloys, which are formed on one main element, and consist of more than one main element in approximately equal proportions ...
Joseph O. Dirisu +4 more
wiley +1 more source
To establish a model that can accurately predict the performance of magnesium anode alloy materials using material structural information and accelerate the screening of magnesium alloys, this paper proposes an alloy design process, as shown in Figure 1. This method can also be applied to the design of other types of alloy materials.
Xiaoda Liu +9 more
wiley +1 more source
An ultrafine-grained (UFG) magnesium AZ31 alloy was achieved with an average grain size of ∼200 nm by high-pressure torsion (HPT) at room temperature (RT) under a pressure of 6.0 GPa through 5 turns. Micro-embossing tests were conducted in a V-groove die
Xu Jie +4 more
doaj +1 more source
Plasma electrolytic oxidation is combined with ultrasonic spray deposition of polycaprolactone (PCL) on WE43 magnesium alloy to improve adhesion, corrosion resistance, and cytocompatibility. The hybrid coating demonstrates significantly reduced hydrogen evolution and enhances mechanical bonding, offering a promising strategy for next‐generation ...
Seyed Masih Mousavizadeh +9 more
wiley +1 more source
An ideal implant should mimic native tissues such that it can integrate, sense, heal, and continue to function, i.e., be autonomous. Although early, there are good steps taken in this way, e.g., the development of stimuli‐responsive, self‐powering, self‐actuating, self‐healing, self‐regenerating, and self‐aware implants.
Jagan Mohan Dodda +5 more
wiley +1 more source
In this paper, the effects of extrusion–shear (ES) on the microstructures and mechanical properties of AZ31 magnesium alloy has been studied, which has been achieved by conducting a lot of experiments and tests, including ES process, direct extrusion ...
Hu H.J. +4 more
doaj +1 more source
Advances in Magnesium Metal and Its Alloys for Promoting Angiogenesis
ABSTRACT Magnesium‐based materials show great promise for bone repair due to their biodegradability, bone‐like mechanical properties, and dual pro‐angiogenic/osteogenic activities. Pure magnesium implants enhance vascularization in bone defect models through Mg2+ release.
Junjie Huang +3 more
wiley +1 more source
The automotive, biomedical, and aerospace industries are among those with a rising need for lightweight materials with enhanced mechanical and tribological qualities. Composites based on magnesium alloys have attracted interest because of their excellent
Jothi Arunachalam +4 more
doaj +1 more source

