Javascript must be enabled to continue!
Deterioration of Property of Aluminum Alloys (EN AW-1050A, EN AW-5754 and EN AW-6060) by Absorbed Hydrogen
View through CrossRef
The paper reports the results of research on the effect of hydrogen penetration on the variations in the mechanical properties of selected aluminum alloys. As a result of the study, it can be observed that such variations contribute to the deterioration of mechanical properties, which, in turn, contributes to shortening the reliability time associated with the operation of aluminum alloy structures. The analysis involved structural aluminum alloys: EN AW-1050A, EN AW-5754 and EN AW-6060. Tensile strength and impact strength were measured. It was demonstrated that the absorption of hydrogen by the analyzed alloys led to the deterioration of mechanical properties of aluminum alloys. The performed measurements were compared to the previous research results regarding the influence of hydrogen on the deterioration of corrosion properties. The analysis of the influence of hydrogen on both issues allowed us to notice the reasons for shortening the operational reliability time of aluminum alloy parts. The awareness of the influence of hydrogen on aluminum alloys may contribute to the development of hydrogen systems or installations in which aluminum alloys can be used as a construction material, e.g., fuel cells, hydrogen supply pipes, block of combustion engine powered by hydrogen, etc. In the era of the development of zero-emission vehicles, the use of hydrogen as fuel is gaining more and more importance, where the influence of hydrogen on the properties of materials is an important issue.
Title: Deterioration of Property of Aluminum Alloys (EN AW-1050A, EN AW-5754 and EN AW-6060) by Absorbed Hydrogen
Description:
The paper reports the results of research on the effect of hydrogen penetration on the variations in the mechanical properties of selected aluminum alloys.
As a result of the study, it can be observed that such variations contribute to the deterioration of mechanical properties, which, in turn, contributes to shortening the reliability time associated with the operation of aluminum alloy structures.
The analysis involved structural aluminum alloys: EN AW-1050A, EN AW-5754 and EN AW-6060.
Tensile strength and impact strength were measured.
It was demonstrated that the absorption of hydrogen by the analyzed alloys led to the deterioration of mechanical properties of aluminum alloys.
The performed measurements were compared to the previous research results regarding the influence of hydrogen on the deterioration of corrosion properties.
The analysis of the influence of hydrogen on both issues allowed us to notice the reasons for shortening the operational reliability time of aluminum alloy parts.
The awareness of the influence of hydrogen on aluminum alloys may contribute to the development of hydrogen systems or installations in which aluminum alloys can be used as a construction material, e.
g.
, fuel cells, hydrogen supply pipes, block of combustion engine powered by hydrogen, etc.
In the era of the development of zero-emission vehicles, the use of hydrogen as fuel is gaining more and more importance, where the influence of hydrogen on the properties of materials is an important issue.
Related Results
Current aspects of hydrogen and oxygen content in aluminum alloys
Current aspects of hydrogen and oxygen content in aluminum alloys
The analysis of the scientific researches devoted to questions of influence of the content of hydrogen and oxide inclusions in aluminum alloys in the context of these impurities in...
Elucidating hydrogen-solid interactions using computational modeling
Elucidating hydrogen-solid interactions using computational modeling
Hydrogen has significant chemical utility, both as a synthetic reagent and as an energy carrier. As the world moves away from fossil fuels being the predominant energy carrier, the...
TWO TYPES OF GALLIUM EXPOSURE TO ALUMINUM
TWO TYPES OF GALLIUM EXPOSURE TO ALUMINUM
The effect of gallium on aluminum during their fusion is investigated. The corrosion rate of aluminum alloys with 1, 2 and 5 at % gallium content was experimentally determined, whi...
Promotion of properties of deformed aluminium alloys in modification with nanocomposites
Promotion of properties of deformed aluminium alloys in modification with nanocomposites
The objective of the work is to obtain a dispersed structure and increase the mechanical and technological properties of deformed aluminum alloys by treating melts with nanodispers...
Fatigue Lifetime Improvement of Aluminum Alloys
Fatigue Lifetime Improvement of Aluminum Alloys
Today, aluminum alloys are being considered as substitutes for many automotive parts made from steels because of the growing interest in producing lightweight vehicles. Consequentl...
Thermopysical properties and thermodynamic functions of aluminum conductive alloy E-AlMgSi (Aldrey) doped with indium
Thermopysical properties and thermodynamic functions of aluminum conductive alloy E-AlMgSi (Aldrey) doped with indium
Aluminum and its alloys are widely used in electrical engineering as a conductor and structural material. As a conductor material, aluminum is characterized by high electrical and ...
Contribution of Severe Plastic Deformation via High-Pressure Torsion to the Hydrogen Cycle: From Hydrogen Production and Storage to Hydrogen Embrittlement
Contribution of Severe Plastic Deformation via High-Pressure Torsion to the Hydrogen Cycle: From Hydrogen Production and Storage to Hydrogen Embrittlement
Hydrogen is a key energy carrier for achieving carbon neutrality, yet its widespread deployment is hindered by challenges associated with efficient hydrogen production, safe and re...

