For the design of suspension components the behavior under extreme, special events, loading as well as the durability under operational usage are decisive. While the behavior under extreme loading depends on the component stiffness, which is mainly influenced by the design and the material mechanical properties, durability is influenced by the fatigue properties under operational loading. For this purpose the fatigue properties on aluminum alloys 5083 and 6009 using different types of stresses (tension, shear, torsion, bending), loading-time histories (constant and variable amplitude loading) and welding technology were investigated and will be presented in this paper
Aluminium is widely used in many welding applications. 6061 aluminium alloy is one of the most commo...
International audienceAA2618 aeronautical aluminum alloy has been largely used in the past, especial...
Aluminum alloys are widely used for fabrication of aircraft, civil structures, and space vehicles. F...
The structural durability design of welded aluminium components in the vehicle industry is based on ...
Increasing usage of welded aluminium structures and specific field experience require one to summari...
Designers have a major interest about fatigue properties of materials used in transport industry. Ea...
Different approaches - the nominal stress, structural hot spot stress and notch stress approach - to...
The structural durability design of welded vehicle structures of aluminium also comprises the aspect...
Fatigue mechanical behavior of wrought aluminum alloy (Al-Mg-Si) 6156 at T4 temper is experimentally...
The aspects of fatigue life prediction based on local strains and the material data for components m...
This article deals with determining of fatigue lifetime of aluminum alloy 6063-T66 during by multiax...
Most of the structural components in real applications are subjected to variable amplitude loading. ...
In this study, the fatigue characteristics of aluminum alloys and mechanical components were investi...
The development of the aluminium shipbuilding industry has seen greater demands put upon the design ...
Aluminium alloys are increasingly being used as welded construction materials in order to achieve mo...
Aluminium is widely used in many welding applications. 6061 aluminium alloy is one of the most commo...
International audienceAA2618 aeronautical aluminum alloy has been largely used in the past, especial...
Aluminum alloys are widely used for fabrication of aircraft, civil structures, and space vehicles. F...
The structural durability design of welded aluminium components in the vehicle industry is based on ...
Increasing usage of welded aluminium structures and specific field experience require one to summari...
Designers have a major interest about fatigue properties of materials used in transport industry. Ea...
Different approaches - the nominal stress, structural hot spot stress and notch stress approach - to...
The structural durability design of welded vehicle structures of aluminium also comprises the aspect...
Fatigue mechanical behavior of wrought aluminum alloy (Al-Mg-Si) 6156 at T4 temper is experimentally...
The aspects of fatigue life prediction based on local strains and the material data for components m...
This article deals with determining of fatigue lifetime of aluminum alloy 6063-T66 during by multiax...
Most of the structural components in real applications are subjected to variable amplitude loading. ...
In this study, the fatigue characteristics of aluminum alloys and mechanical components were investi...
The development of the aluminium shipbuilding industry has seen greater demands put upon the design ...
Aluminium alloys are increasingly being used as welded construction materials in order to achieve mo...
Aluminium is widely used in many welding applications. 6061 aluminium alloy is one of the most commo...
International audienceAA2618 aeronautical aluminum alloy has been largely used in the past, especial...
Aluminum alloys are widely used for fabrication of aircraft, civil structures, and space vehicles. F...