An attractive, alternative approach for the reduction of harmful residual stresses in weld zones is reviewed, which utilises low temperature, solid-state, displacive phase transformations in steel. The theory, latest concepts and practice for the design of such low transformation temperature (LTT) filler alloys are considered. By engineering the phase transformation temperature of the weld metal so as to take advantage of transformation expansion, the residual stress state within the weld zone can be significantly altered, most particularly where the weld thermally contracts with any movement of base parts constrained. To date, the technique has been shown to increase fatigue strength for some common weld geometries, which may enable engine...
ABSTRACT hnprovement of high-cycle fatigue strength by reducing residual stress in welded joints is ...
Weld filler alloys that exploit transformation plasticity through low austenite to martensite transf...
The effect of solid-state phase transformation at low temperature on residual stresses in butt welde...
AbstractThe results reported in this research study are part of a larger EU RFCS (Research Fund for ...
The development of high-strength structural steels with yield strengths up to 1000 MPa results in th...
Fatigue cracks often initiate at welds as a consequence of large residual stresses and changes in ge...
A great deal of effort goes into production of modern steel for structural applications. The structu...
A great deal of effort goes into production of modern steel for structural applications. The structu...
Fusion welding of steel pressure vessels provides one of the most economic methods for creating such...
Compared to conventional welding consumables using low transformation temperature (LTT)filler materi...
Welding processes often produce high levels of tensile residual stress. Low transformation temperatu...
The application of low transformation temperature (LTT) wire can effectively reduce residual stress,...
The current paper presents residual stress analyses of large scale LTT Low Transformation Temperatu...
A new low transformation temperature (LTT) welding material 16Cr8Ni was developed to satisfy the opt...
This paper investigates the manipulation of chemical composition of a laser weld by dissimilar fille...
ABSTRACT hnprovement of high-cycle fatigue strength by reducing residual stress in welded joints is ...
Weld filler alloys that exploit transformation plasticity through low austenite to martensite transf...
The effect of solid-state phase transformation at low temperature on residual stresses in butt welde...
AbstractThe results reported in this research study are part of a larger EU RFCS (Research Fund for ...
The development of high-strength structural steels with yield strengths up to 1000 MPa results in th...
Fatigue cracks often initiate at welds as a consequence of large residual stresses and changes in ge...
A great deal of effort goes into production of modern steel for structural applications. The structu...
A great deal of effort goes into production of modern steel for structural applications. The structu...
Fusion welding of steel pressure vessels provides one of the most economic methods for creating such...
Compared to conventional welding consumables using low transformation temperature (LTT)filler materi...
Welding processes often produce high levels of tensile residual stress. Low transformation temperatu...
The application of low transformation temperature (LTT) wire can effectively reduce residual stress,...
The current paper presents residual stress analyses of large scale LTT Low Transformation Temperatu...
A new low transformation temperature (LTT) welding material 16Cr8Ni was developed to satisfy the opt...
This paper investigates the manipulation of chemical composition of a laser weld by dissimilar fille...
ABSTRACT hnprovement of high-cycle fatigue strength by reducing residual stress in welded joints is ...
Weld filler alloys that exploit transformation plasticity through low austenite to martensite transf...
The effect of solid-state phase transformation at low temperature on residual stresses in butt welde...