Austenitic stainless steels are in wide-spread application in the chemical as well as nuclear industry, mainly because of their high toughness and insensitivity against corrosion attack. However, under static as well as fatigue load the material has the tendency to response with localized phase transformations from the non-magnetic g- to the martensitic and ferromagnetic a'-phase. The process starts localized at positions of higher stress intensity, i.e. at microstructure inhomogeneities like non-metallic inclusions and carbonitride precipitates. Magnetic sensitive sensors like SQUID or GMR are suitable to already sense small contents of the martensitic phase in the bulk volume. The report is to the Ti-stabilized austenitic stainless steel ...
A SQUID based NDE set up based on a precision XY scanner developed and used to evaluate the transfor...
The experiments reveal characteristic cyclic deformation cureves and corresponding Eddy Current and ...
AISI321 austenitic steel forms martensite due to quasi-static and cyclic loading. This presupposes t...
Austenitic stainless steels are in wide-spread application in the chemical as well as nuclear indust...
Austenitic stainless steels are in wide-spread application in the chemical as well as nuclear indust...
Austenitic steel of the grade AISI 321 (German Grade 1.4541 - Ti-stabilized and 1.4550 - Nb-stabiliz...
In the oil, gas and petroleum industry hydrogen attack is one reason for sometimes catastrophic comp...
For AISI 321 austenicti steel the starting point of microcracks leading to macrocracks and finally t...
Service induced degradation of material properties is the main limiting factor for the operating lif...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
The assessment of the actual fatigue damage and thus the remaining lifetime of materials is a subjec...
Fatigue damage causes continuous, cumulative microstructural changes in materials and the magnetic p...
NDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the propaga...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
The assessment of the actual fatigue damage and thus the remaining lifetime of materials is a subjec...
A SQUID based NDE set up based on a precision XY scanner developed and used to evaluate the transfor...
The experiments reveal characteristic cyclic deformation cureves and corresponding Eddy Current and ...
AISI321 austenitic steel forms martensite due to quasi-static and cyclic loading. This presupposes t...
Austenitic stainless steels are in wide-spread application in the chemical as well as nuclear indust...
Austenitic stainless steels are in wide-spread application in the chemical as well as nuclear indust...
Austenitic steel of the grade AISI 321 (German Grade 1.4541 - Ti-stabilized and 1.4550 - Nb-stabiliz...
In the oil, gas and petroleum industry hydrogen attack is one reason for sometimes catastrophic comp...
For AISI 321 austenicti steel the starting point of microcracks leading to macrocracks and finally t...
Service induced degradation of material properties is the main limiting factor for the operating lif...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
The assessment of the actual fatigue damage and thus the remaining lifetime of materials is a subjec...
Fatigue damage causes continuous, cumulative microstructural changes in materials and the magnetic p...
NDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the propaga...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
The assessment of the actual fatigue damage and thus the remaining lifetime of materials is a subjec...
A SQUID based NDE set up based on a precision XY scanner developed and used to evaluate the transfor...
The experiments reveal characteristic cyclic deformation cureves and corresponding Eddy Current and ...
AISI321 austenitic steel forms martensite due to quasi-static and cyclic loading. This presupposes t...