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Polymerkoncentrationens inverkan på härdresultatet av seghärdningsstål / The polymer concentration influence on the hardening result for quench and tempering steelLind, Fredrik January 2017 (has links)
Ovako Sweden AB i Hällefors har vid seghärdning av stål problem med sprickor. Studier visar på att tillsatser av polymer i kylvattnet ger ett långsammare och jämnare kylförlopp, vilket minskar risken för sprickor. För att fastställa vilken mängd polymer som är lämplig att tillsätta i kylvattnet vid härdning av deras låglegerade segment av seghärdat stål, så har undersökningar utförs på två stålsorter. Skillnaden i härdresultat mellan de olika testade koncentrationsnivåerna var små, men vid högre polymerkoncentration så fördelades hårdheten något jämnare genom hela tvärsnittet. / Ovako Sweden AB have problems with cracks during the process of hardening of steel. Studies show that the additives of polymer in the cooling water gives a slower and more even cooling process, which reduce the risk of crack onset. To decide the amount of polymer that is suitable to put in the cooling water at the hardening of their low-alloy steel segment of quenched and tempered steel, so studies have been conducted on two types of steel. The difference in hardening results between different tested concentration levels were small, but at higher polymer concentration the hardness was distributed slightly more evenly throughout the cross section.
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Increase the capacityof continuous annealing furnaces at OvakoDahlqvist, v January 2012 (has links)
The capacity of soft annealing of low alloyed tubes at Ovako’s continuous annealing furnaces have been evaluated by comparing how it is done today with information from published and internal articles on the subject. It was found that it is possible to reduce the cycle time by 30 % for one furnace, 55 % for one furnace and 72 % for two furnaces. Two separate fullscale tests were made to assess whether the faster soft annealing procedure was feasible. The tests were performed without any reconstruction of the furnace and were made by continuously vary the speed of the batch inside thefurnace. The temperature in the batch was measured and compared with results from computer simulations of the heating/cooling sequences. The computer simulations were performed in COMSOL. The soft annealing was evaluated according to the SEP-520 standard ,which means evaluating the microstructure and hardness. The results show that the faster heat treatment could yield lower grades than today but still meet it’s requirements. In order to achieve this increase a reconstruction of the furnaces is needed and the reconstruction is briefly treated in the report. Ideas to further increase the speed of the soft annealing procedure are also presented.
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