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首页> 外文期刊>International Journal of Fracture >THE INFLUENCE OF VANADIUM MICROALLOYING ON VOIDS OCCURENCE IN LOW-ALLOYED Cr-Mo STEELS AFTER CONTINUOUS CASTING
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THE INFLUENCE OF VANADIUM MICROALLOYING ON VOIDS OCCURENCE IN LOW-ALLOYED Cr-Mo STEELS AFTER CONTINUOUS CASTING

机译:连续铸造后微合金化钒对低合金Cr-Mo钢中空孔率的影响

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摘要

We discuss the correlation between segregation of carbide forming elements (vanadium) and void initiation and propagation in low-alloyed Cr-Mo steels. The internal defects are created during blooms straightening in radial type of casting machine due to strain deformation field in the temperature range characteristic for vanadium nitride, carbide or carbonitride precipitation. Based on the statistical analysis (1097 continuously cast blooms) of three low-alloyed Cr-Mo steel variants with different vanadium content, we conclude that the void occurence is strongly associated with the level of vanadium content. The experiments performed by means of microstructural, fractographic investigations and microchemical point analysis proved that preffered areas for void initiation are interdendritic segregations in the core of bloom. We observed vanadium carbide precipitates that are situated close to the cracks, whereas the content of vanadium was 7,5 times more then in an average smelt composition. The further development of defects is connected with fast heating up to the austenization temperature in soaking pit. Our results confirm that marked decrease of defects can be achieved by optimization of production process, i. e. optimized casting speed, steel overheat above the liquidus temperature and/or application of M-EMS.
机译:我们讨论了低合金Cr-Mo钢中碳化物形成元素(钒)的偏析与空隙引发和扩散之间的关系。由于在氮化钒,碳化物或碳氮化物沉淀的温度范围内的应变变形场,在径向型铸造机的大方坯矫直过程中会产生内部缺陷。基于三种不同钒含量的低合金Cr-Mo钢的统计分析(1097连续铸造大方坯),我们得出结论,空隙的发生与钒含量水平密切相关。通过微观结构,分形学研究和微化学点分析进行的实验证明,空洞引发的首选区域是大花芯部的枝晶间偏析。我们观察到碳化钒沉淀物靠近裂纹,而钒的含量是平均熔炼成分中含量的7.5倍。缺陷的进一步发展与在加热炉中快速加热到奥氏体温度有关。我们的结果证实,可以通过优化生产工艺来显着减少缺陷。 e。优化的铸造速度,高于液相线温度的钢过热和/或M-EMS的应用。

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