首页> 外文会议>International Conference on Recrystallization and Grain Growth >ON CONTROL OF GRAIN COARSENING OF AUSTENITE BY NANO-SCALE PRECIPITATE ENGINEERING OF TiN-NbC COMPOSITE IN Ti-Nb MICROALLOYED STEEL
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ON CONTROL OF GRAIN COARSENING OF AUSTENITE BY NANO-SCALE PRECIPITATE ENGINEERING OF TiN-NbC COMPOSITE IN Ti-Nb MICROALLOYED STEEL

机译:纳米淀粉淀粉矿铝矿籽粒粗化对Ti-Nbc复合材料的控制,Ti-Nb微合金钢

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Quantitative analysis of hot torsion data of Ti-Nb microalloyed steel with high number density of TiN precipitates showed that pinning force exerted by TiN-NbC composite is adequate to counteract the driving force for recrystallization of 0.1 MPa from dislocation density imparted by the applied deformation strain. Further analysis showed that this pinning force exerted by TiN-NbC composite is adequate to counteract the driving force for grain coarsening of austenite refined by recrystallization and give Zener limiting austenite grain size of 30 micron. The concept of nano-scale TiN-NbC composite precipitate engineering is based on controlling inter-particle spacing of TiN precipitate to 200 nm and promoting epitaxial growth of NbC on pre-existing TiN precipitate to increase precipitate size of TiN-NbC composite to 30 nm in order to promote adequate Zener drag of 0.1 MPa to retard recrystallization. In consequence, the temperature of no recrystallization is raised significantly (about 100°C over strain induced precipitation) that enables austenite grains in the center of thick gage to be pancaked, thereby suppress the occurrence of problematic rotated cube texture. Technological application of austenite grain size control in upstream processing and texture control on the production of thick gage line pipe steel will be examined.
机译:具有高数密度的锡沉淀物的Ti-Nb微合金钢热扭转数据的定量分析表明,锡 - Nbc复合材料施加的钉扎力是足以抵消由施加的变形菌株赋予的位错密度重结晶的驱动力。 。进一步的分析表明,通过锡-NBC复合材料施加的这种钉扎力是足以抵消通过重结晶改进的奥氏体粗化的驱动力,并使齐纳限制奥氏体粒径为30微米。纳米型锡-NBC复合沉淀工程的概念是基于控制锡沉淀物的颗粒间距,并促进NBC对预先存在的锡沉淀的外延生长,以将锡 - NBC复合材料的沉淀沉淀至30nm为了促进足够的齐纳拖拉0.1 MPa以延迟再结晶。结果,无重结晶的温度显着升高(约100°C过度诱导沉淀),使得待煎底的厚度计中的奥氏体颗粒能够抑制有问题的旋转立方体纹理的发生。研究了奥氏体晶粒尺寸控制在上游加工中的技术应用及粗厚度管线管钢生产的纹理控制。

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