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首页> 外文期刊>Materials Characterization >Development of high strength ductile eutectoid steel through cyclic heat treatment involving incomplete austenitization followed by forced air cooling
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Development of high strength ductile eutectoid steel through cyclic heat treatment involving incomplete austenitization followed by forced air cooling

机译:通过不完全奥氏体化然后强制风冷的循环热处理开发高强度延性共析钢

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摘要

Annealed AISI 1080 steel bars were subjected to cyclic heat treatment up to 3 cycles. Each cycle consisted of short duration holding (incomplete austenization) for 6 min at 775 degrees C (in fully austenitic region) followed by forced air cooling (air flow rate: 38.4 m(3) h(-1)) to the room temperature. Such a typical thermal cycling resulted in a significant increase in hardness and strength on execution of 2 cycles. This was attributed to a novel microstructure consisting of matted fine pearlite containing submicroscopic cementite spheroids. The hardness (368 HV) and strength (UTS = 1095 MPa) achieved after 2 cycles of heat treatment was much higher and ductility (%Elongation = 16) was quite reasonable when compared with that in annealed condition (Hardness = 222 HV, UTS = 740 MPa, %Elongation = 21). Execution of third cycle resulted in decrease in hardness and strength due to disappearance of matted fine pearlite region. Furthermore, with regard to previously carried out research by the authors, the process efficiency has been greatly enhanced (heat treatment duration is reduced) on adoption of more intense forced air cooling without compromising strength and ductility. (C) 2016 Elsevier Inc. All rights reserved.
机译:退火的AISI 1080钢筋经过3次循环热处理。每个周期包括在775摄氏度(在完全奥氏体区域)短时间保持(不完全奥氏体化)6分钟,然后强制风冷(空气流速:38.4 m(3)h(-1))至室温。这样的典型热循环在执行2个循环后导致硬度和强度显着增加。这归因于一种新型的微观结构,该结构由含有亚微观渗碳体球体的无光泽细珠光体组成。与退火条件(硬度= 222 HV,UTS =)相比,经过2个循环的热处理后,硬度(368 HV)和强度(UTS = 1095 MPa)要高得多,延展性(%伸长率= 16)相当合理。 740 MPa,伸长率= 21)。由于磨砂细珠光体区域的消失,第三次循环的执行导致硬度和强度降低。此外,关于作者先前进行的研究,在采用更强的强制空气冷却的同时,不降低强度和延展性的情况下,处理效率得到了极大的提高(热处理时间减少了)。 (C)2016 Elsevier Inc.保留所有权利。

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