During the cold-forming process of manufacturing, stainless steel sheets undergo plastic deformations, in particularly around corner regions of press braked sections. These plastic deformations lead to significant changes in material properties of stainless steel compared to its flat sheet properties. Consequently, yield strength and ultimate strength increments can be envisaged and this process is termed as cold working. Stainless steel exhibits significant level of strain hardening under plastic deformations. This is the main reason for these strength enhancements. In the structural design process of stainless steel sections, these strength increments are required to be considered to harness the benefits arising from it. Therefore, previo...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
Current cold-formed stainless steel design codes for distortional buckling, including the Australian...
The results of a study of the degree of workhardening on stainless steel Types 304, 409, 430 and Ty...
During the cold-forming process of manufacturing, stainless steel sheets undergo plastic deformation...
Stainless steel strain hardens to a considerably greater extent than carbon steel resulting in signi...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The bending-shear interaction response of cold-formed stainless steel lipped channel sections has be...
The bending-shear interaction response of cold-formed stainless steel lipped channel sections has be...
This paper describes and discusses the results obtained from a series of tensile tests performed on...
Cold-formed structural sections are manufactured at ambient temperature and hence undergo plastic de...
Cold-formed structural sections are manufactured at ambient temperature and hence undergo plastic de...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
Current cold-formed stainless steel design codes for distortional buckling, including the Australian...
The results of a study of the degree of workhardening on stainless steel Types 304, 409, 430 and Ty...
During the cold-forming process of manufacturing, stainless steel sheets undergo plastic deformation...
Stainless steel strain hardens to a considerably greater extent than carbon steel resulting in signi...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The shear response of the cold-formed stainless steel lipped channel sections with longitudinal stif...
The bending-shear interaction response of cold-formed stainless steel lipped channel sections has be...
The bending-shear interaction response of cold-formed stainless steel lipped channel sections has be...
This paper describes and discusses the results obtained from a series of tensile tests performed on...
Cold-formed structural sections are manufactured at ambient temperature and hence undergo plastic de...
Cold-formed structural sections are manufactured at ambient temperature and hence undergo plastic de...
The demand for highly structurally efficient stainless steel is limited to a certain extent by its h...
Current cold-formed stainless steel design codes for distortional buckling, including the Australian...
The results of a study of the degree of workhardening on stainless steel Types 304, 409, 430 and Ty...