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EN
Purpose: The paper focuses on evaluation of slag regime by the help of synthetic slags based on Al2O3. The comparion of influence of synthetic slags on the production of two chosen grades of steels focused on evaluation of effectivity of created refining slag during treatment in the secondary metallurgy was the objective of plant experiments. Design/methodology/approach:During evaluation of slag regime in the ladle, steel samples for assessment of desulphurization degree were taken under the plant conditions. Slag samples were also taken for evaluation of chosen parameters: basicity, content of easily reducible oxides, proportion of CaO/Al2O3 and Mannesmann’s index. The temperature and oxygen activity in steel was continuously measured too. Findings: From plant experiments, it was found out that during using of two different types of synthetic slags during production of steel grades St52-3 and S34MnV similar values of desulphurization degree were achieved. Chosen parameters of ladle slag were monitored and it was demonstrated that the developed synthetic slag B reaches the results comparable with the standard used synthetic slag A. Research limitations/implications: Plant experiments were made under conditions of VÍTKOVICE HEAVY MACHINERY a.s. plant Obtained results are limited by the testing during production of two different steel grades St52-3, S34MnV and by the specific technology of production formed by EAF→LF→VD/VCD. Practical implications: The research results made it possible to realize the optimalization of slag regime under the plant conditions of VÍTKOVICE HEAVY MACHINERY a.s. plant. It was proved that developed synthetic slag B from the company JAP TRADING s.r.o. can adequately replace the common synthetic slag A. Originality/value:Results mentioned in this paper are intended for steel producers and they represent basic information about possibilities of slag regime optimalization in the ladle.
EN
The aim of the conducted experimental work was to study the deformation behaviour in the hot state and causes that lead to failure of compactness of a microalloyed steel determined for the tube production. The results of the formability testing are presented, performed by measurements of the strength and plastic properties by means of the tensile test performed at the forming temperatures and displacement speed of the cross beam in the range of 6 to 300 mm/min. It was shown that in the case of this material it is not essentially possible to avoid a defect formation after its cooling by a change of the forming speed.
PL
Celem przeprowadzonego eksperymentu było zbadanie technologicznej plastyczności stali HSLA w warunkach przeróbki plastycznej na gorąco, jak również przyczyn pękania stali mikroskopowych stosowanych do produkcji rur. Zaprezentowano zależność wytrzymałości i właściwości plastycznych badanej stali od warunków odkształcania. Próby rozciągania prowadzono dla temperatur z zakresu przeróbki plastycznej na gorąco tej stali z prędkością w zakresie od 6 do 300 mm/min. Wykazano, że w przypadku badanej stali zmiana prędkości kształtowania nie wpływa w istotny sposób na możliwość uniknięcia defektów po operacji chłodzenia.
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