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Decarburization of the Carbon Steel C45 During Annealing in Air

机译:碳钢C45在空气中退火时的脱碳

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In production it is necessary to achieve conditions that lead to the minimum decarburization of a steel product’s surfaces. In this study, the hypo-eutectoid carbon steel C45 was annealed in air in the temperature range T _(a) = 600–1100 °C. The annealing times were between t _(a) = ? h and t _(a) = 2 h. Different decarburizations occurred in different microstructures: ferrite–pearlite ( T _(a) = 600 °C and 700 °C, T _(a) < A_(C1), no visible decarburization); ferrite–austenite ( T _(a) = 760 °C, A_(C1) < T _(a) < A_(C3), visible decarburization); austenite at the beginning, ferrite– austenite after the incubation period ( T a = 850 °C, A_(C3) < T _(a) < 912 °C, visible decarburization); and austenite ( T _(a)= 950 °C and 1100 °C, T _(a)> 912 °C, visible decarburization and overheating of steel). The edges were more prone to decarburization and to overheating. Stress relieving, normalizing and annealing before quenching of the steel C45 can be carried out in air.
机译:在生产中,必须达到使钢材表面的脱碳最少的条件。在这项研究中,准共析碳素钢C45在空气中在T _(a)= 600–1100°C的温度范围内退火。退火时间在t _(a)=? h和t _(a)= 2 h。在不同的微观结构中会发生不同的脱碳:铁素体-珠光体(T _(a)= 600°C和700°C,T _(a) 912°C,可见的脱碳和钢的过热)。边缘更容易脱碳和过热。 C45钢淬火前的应力消除,正火和退火可以在空气中进行。

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