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The Influence of the Induced Ferrite and Precipitates of Ti-bearing Steel on the Ductility of Continuous Casting Slab

机译:含钛钢的感应铁素体和析出物对连铸板坯延性的影响

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In order to investigate the loss of the ductility of Ti-bearing ship plate steel under 1000 ℃, where the ductility begins to reduce rapidly, so the hot ductility of Ti-bearing ship plate steel has been obtained using the Gleeble 1500 thermal-mechanical simulator and also the studies about the effect of grain boundary ferrite films and precipitates containing Ti on the ductility has been carried out. The result showed that the TiN particles precipitating at 950 ℃ with a larger size and smaller volume fraction cannot effectively suppress the occurrence of recrystalli-zation and the ductility still retains at a high level, although R.A. value presents a certain degree of decline compared with 1000 ℃. A large number of smaller Ti(C,N) particles precipitate at 900 ℃ and can induce the formation of a very small amount of fine grain boundary ferrite, which deteriorates the adhesion strength of the grain boundary, so the R.A. value rapidly reduces to less than 50%. When the temperature falls to close Ae3 (827 ℃), the amount of the grain boundary ferrite films increase due to the ferrite phase transformation, but the ferrite film thickness becomes more uneven at the same time, which results in the increase of strain concentration and plays a leading role in causing the decrease of ductility, so the R.A. value has been kept less than 40% as the temperature cooling to 800 ℃ from 850 ℃. When the temperature further decreases, the ductility starts to recover due to the increase of average ferrite film thickness to a greater degree which greatly reduces the strain concentration of the grain boundary.
机译:为了研究在1000℃下含钛船板钢的延性开始急剧下降的损失,因此使用Gleeble 1500热机械模拟器获得了含钛船板钢的热延性。并且已经进行了关于晶界铁素体膜和含Ti的析出物对延展性的影响的研究。结果表明,在950℃析出的尺寸较大,体积分数较小的TiN颗粒虽然能达到R.A,但不能有效地抑制再结晶的发生,而塑性仍保持较高的水平。与1000℃相比,该值呈现出一定程度的下降。大量较小的Ti(C,N)颗粒在900℃析出,并能诱导形成非常少量的细晶界铁素体,从而降低了晶界的附着强度,因此R.A.。值迅速降低到小于50%。当温度下降到接近Ae3(827℃)时,由于铁素体相变,晶界铁素体膜的数量增加,但同时铁素体膜的厚度变得更加不均匀,从而导致应变集中和增加。在导致延展性降低中起主要作用,因此RA当温度从850℃冷却至800℃时,该值一直保持在40%以下。当温度进一步降低时,由于平均铁素体膜厚度增加到更大程度,延展性开始恢复,这大大降低了晶界的应变集中。

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