阮士朋, 王利军, 陈继林, et al. Effect of Control-Rolling-Cooling Process on Structure and Properties of Steel SCM435 Rod Coil[J]. Special Steel, 2016, 37(5): 45-47.
阮士朋, 王利军, 陈继林, et al. Effect of Control-Rolling-Cooling Process on Structure and Properties of Steel SCM435 Rod Coil[J]. Special Steel, 2016, 37(5): 45-47.DOI:
The production flowsheet of test steel SCM435 rod coil (/% :0.33-0.38C
0.15-0.35Si
0.60-0.85Mn
≤0.025P
≤0.025S
0.90-1.20Cr
0.15-0.30Mo) is 80t BOF-LF-280 mm x325 mm casting bloom-160 mm x 160 mm hot-rolled billet-hot continuous rolling to Φ16 mm rod coil. The effect of 160 mm x 160 mm hot-rolled billet rolling to rod coil processes by normal rolling ( beginning rolling at 1060 °C
finishing rolling at 930-950℃
finishing exit temperature 860-900℃
cooling rate 0.5-0.6℃/s) and control-rolling-cooling (beginning rolling at 1060℃
finishing rolling at 820-850°C
finishing exit temperature 780-820℃
cooling rate 0.4-0.5°C/s) on structure and mechanical properties of steel SCM435 hot-rolled rod coil has been tested and studied. Results show that with decreasing the finishing temperature and cooling rate
the structure of steel hot-rolled rod coil is improved and the tensile strength of steel decreases obviously
that is the average tensile strength of steel SCM435 hot-rolled rod coil rolled by normal rolling process is 952 MPa with structure of ferrite + pearlite + bainite + martensite
while the average tensile strength of SCM435 hot-rolled rod coil rolled by control rolling-cooling process is 817 MPa with structure of ferrite + pearlite. Based on the principle of control-rolling-cooling the analysis on change of structure and properties of steel has been carried out.