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Effect of Cold Swaging on the Bulk Gradient Structure Formation and Mechanical Properties of a 316-Type Austenitic Stainless Steel
Authors:Dmitrii Panov  Ruslan Chernichenko  Egor Kudryavtsev  Denis Klimenko  Stanislav Naumov  Alexei Pertcev
Affiliation:1.Laboratory of Bulk Nanostructured Materials, Research Institute of Materials Science and Advanced Technologies, Belgorod State University, 85 Pobeda Str., 308015 Belgorod, Russia; (R.C.); (E.K.); (D.K.); (S.N.);2.Department Chief Metallurgist, Perm Scientific-Research Technological Institute, 41 Geroev Khasana Str., 614990 Perm, Russia;
Abstract:The present study aimed to discover the effect of cold swaging reduction on the bulk gradient structure formation and mechanical properties of a 316-type austenitic stainless steel. The initial rod was subjected to radial swaging until 20–95% reduction of initial rod diameter, at room temperature. According to finite element simulation, higher plastic strain was accumulated in the surface layer compared to the center region during swaging. Microstructural investigations revealed three-stage gradient structure formation in the center and edge regions of the deformed rod. Meanwhile, cold swaging resulted in the development of strong 111ǁBA, 001ǁBA, and weak 111ǁBA texture components in the center and edge, respectively. Significant tensile strengthening was observed after cold swaging. For instance, the yield strength (YS) increased from 820 MPa to 930 MPa after 40–80% reduction respectively, without the loss of ductility (δ–14%). This unique aspect of the mechanical behavior was attributed to the gradient structure of the cold swaged material and explained in detail.
Keywords:gradient structure   austenitic stainless steel   swaging   finite element simulation   texture   strength   ductility
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