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Uncertainty Quantification of Material Properties in Ballistic Impact of Magnesium Alloys. [PDF]

open access: yesMaterials (Basel), 2022
The design and development of cutting-edge light materials for extreme conditions including high-speed impact remains a continuing and significant challenge in spite of steady advances. Magnesium (Mg) and its alloys have gained much attention, due to their high strength-to-weight ratio and potential of further improvements in material properties such ...
Sun X.
europepmc   +2 more sources

Superfunctional materials by ultra-severe plastic deformation [PDF]

open access: yesMaterials 16 (2023) 587, 2022
Superfunctional materials are defined as materials with specific properties being superior to the functions of engineering materials. Numerous studies introduced severe plastic deformation (SPD) as an effective process to improve the functional and mechanical properties of various metallic and non-metallic materials. Moreover, the concept of ultra-SPD -
arxiv   +1 more source

Magnesium Alloys Structure and Properties [PDF]

open access: yes, 2022
Magnesium Alloys Structure and Properties is a comprehensive overview of the latest knowledge in the field of magnesium alloys engineering. Modern magnesium alloys are promising for a variety of applications in many branches of the industry due to their ...

core   +1 more source

Impact of Severe Plastic Deformation on Kinetics and Thermodynamics of Hydrogen Storage in Magnesium and Its Alloys [PDF]

open access: yesJournal of Materials Science and Technology, Vol. 146, pp. 221-239, 2023, 2023
Magnesium and its alloys are the most investigated materials for solid-state hydrogen storage in the form of metal hydrides, but there are still unresolved problems with the kinetics and thermodynamics of hydrogenation and dehydrogenation of this group of materials. Severe plastic deformation (SPD) methods, such as equal-channel angular pressing (ECAP),
arxiv   +1 more source

Microstructure and plastic properties of mg-Li alloys smelted in vacuum induction furnaces after hot working [PDF]

open access: yes, 2017
The paper analyses the characteristics of plasticity and microstructure of magnesium alloys with lithium meant for hot plastic working with different lithium content. The alloys were prepared in conditions of vacuum smelting. Achieved ingots were subject
Hadasik, Eugeniusz   +3 more
core   +1 more source

Friction behavior of laser cladding magnesium alloy against AISI 52100 steel [PDF]

open access: yes, 2012
The use of magnesium alloys in engineering applications is becoming increasingly important as a relatively low density allows savings in energy consumption and therefore reduction in air pollution.
FABRE, Agnès, MASSE, Jean-Eric
core   +5 more sources

Advances in the Study of Magnesium Alloys and Their Use in Bone Implant Material [PDF]

open access: yes, 2022
Magnesium and magnesium alloys have great application potential in the field of orthopaedics. Compared with traditional inorganic nonmetallic materials and medical polymer materials, magnesium alloys have many advantages, such as better strength ...
Chang, Jinke   +7 more
core  

Application of Ultrasonics on Preparation of Magnesium Alloys [PDF]

open access: yes, 2019
This chapter mainly describes the application of ultrasonic on preparation of magnesium alloys, which includes all of the interesting and novel research results of authors in the past decade.
Chen, Xingrui, Le, Qichi
core   +2 more sources

Effect of Al addition on microstructure of AZ91D [PDF]

open access: yes, 2014
Casting is a net shape or near net shape forming process so work-hardening will not be applicable for improving properties of magnesium cast alloys.
Chen   +13 more
core   +1 more source

Magnesium and magnesium alloys as degradable metallic biomaterials [PDF]

open access: yes, 2008
Drawbacks associated with permanent metallic implants lead to the search for degradable metallic biomaterials. Magnesium has been considered as it is essential to bodies and has a high biodegradation potential.
Shi, Z. M., Wang, H., Yang, K.
core   +1 more source

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