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Short time austenitizing effects on the hardenability of 0.55 wt. pct. Carbon steels

机译:短时间奥氏体化对0.55重量的淬透性的影响。 PCT。 碳钢

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Three laboratory melted steels containing 0.55 wt. pct. C were preconditioned by austenitizing at 900 degrees C and oil quenching. The oil quenched specimens were induction heated at a rate of 50 degrees C/s to 850 degrees C and the hardenability was determined for austenitizing times of 2 and 10 s. Alloy compositions of the three steels in wt. pct. were 0.8 Mn, 0.2Mn-2.1 Ni, and 0.8Mn-0.5W. The changes in transformation behavior were determined on a quenching dilatometer and are described by CCT diagrams, hardness, and metallographic examination. The progression of transformation to austenite on heating was determined by metallographic examination of specimens quenched from several peak-heating temperatures. Changes in austenite grain size with the induction heating time were also characterized. The quench rate required to attain fully martensitic microstructures increased as the austenitizing time was reduced from 10 to 2 s. Conventional hardenability calculation methods did not accurately forecast the hardness and microstructure under conditions of rapid induction hardening.
机译:含有0.55重量法的三个实验室熔化钢。 PCT。通过900℃和油淬火的奥氏体化进行预处理。油猝灭试样以50℃/ s至850℃的速率加热,并测定奥氏体化时间为2和10 s的淬透性。三钢的合金组合物在重量下。 PCT。为0.8mN,0.2mn-2.1ni和0.8mn-0.5w。在淬火膨胀计上确定转化行为的变化,并由CCT图,硬度和金相检查描述。通过从几个峰加热温度淬灭试样的金相检查来确定对加热进行加热转化的进展。还表征了具有感应加热时间的奥氏体晶粒尺寸的变化。随着奥氏体化时间达到全部马氏体微观结构所需的淬火率从10至2秒降低。常规的淬透性计算方法在快速感应硬化条件下没有准确地预测硬度和微观结构。

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