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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Influence of tempering on impact behaviour of quenched and tempered steels with low hardenability
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Influence of tempering on impact behaviour of quenched and tempered steels with low hardenability

机译:回火对淬透性低的调质钢冲击性能的影响

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The influence of tempering on the impact behaviour and strength of quenched and tempered C-Mn-Al steel flanges made to the ASTM A350 LF2 specification has been determined. Specimens of Al containing forged flanges were heated to 950 degrees C, followed by quenching in oil or ice water to produce a variety of commercially obtainable microstructures, from fine grained ferrite to almost fully bainitic. After quenching, the blocks were tempered at 600, 650, and 700 degrees C and the Charpy V notch impact transition curves and tensile data obtained. Tempering the as quenched steels caused a marked reduction in strength and the impact behaviour improved. Although increasing the tempering temperature from 600 to 700 degrees C continued to I educe the strength, the impact behaviour hardly changed. For the oil quenched steel (major phase being ferrite), this insensitivity of the impact behaviour to the higher tempering temperature range is believed to be a result of the deterioration in impact behaviour, resulting from the coarsening of the carbides which is largely offset by the reduction in yield stress; the latter being expected to improve the impact behaviour. For the ice water quenched steel (major phase being bainite), the impact behaviour was very poor after quenching, probably as a result of the presence of some martensite. Tempering at 600 degrees C considerably improved the impact performance but again, tempering in the range 600-700 degrees C had little influence on the toughness, although there was a considerable fall in strength. This is a result of a gradual transition from a lath to a recrystallised bainitic ferrite grain structure; the removal of low angle boundaries reducing strength but having little influence oil impact behaviour. The expected improvement in impact behaviour owing to removal of dislocations and reduction in dispersion strengthening was counteracted by the coarsening of the grain boundary carbides. Except for the untempered ice water condition, the impact requirement for the specification was always met. (C) 1997 The Institute of Materials.
机译:确定了回火对按ASTM A350 LF2规范进行淬火和回火的C-Mn-Al钢法兰的冲击行为和强度的影响。将含铝的锻造法兰的试样加热到950摄氏度,然后在油或冰水中淬火,以生产从细晶粒铁素体到几乎完全贝氏体的各种可商购获得的微结构。淬火后,将块在600、650和700摄氏度下回火,并获得夏比V缺口冲击转变曲线和拉伸数据。对淬火钢进行回火会导致强度显着降低,并且冲击性能得到改善。尽管将回火温度从600℃继续提高至强度,但冲击行为几乎不变。对于油淬火钢(主相为铁素体),这种冲击行为对较高回火温度范围的不敏感性被认为是由于碳化物变粗而导致的冲击性能下降的结果,而碳化物的粗化在很大程度上抵消了碳化物的侵蚀。降低屈服应力;后者有望改善影响行为。对于冰水淬火钢(主相为贝氏体),淬火后的冲击性能非常差,可能是由于存在一些马氏体。在600摄氏度回火可显着改善冲击性能,但再次强调,在600摄氏度至700摄氏度的范围内回火对韧性几乎没有影响,尽管强度明显下降。这是从板条逐渐过渡到再结晶贝氏体铁素体晶粒结构的结果。去除低角度边界会降低强度,但对油的冲击行为影响很小。晶界碳化物的粗化抵消了由于消除位错和减少分散增强而导致的预期的冲击性能改善。除了未回火的冰水条件外,始终满足规范的影响要求。 (C)1997材料研究所。

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