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Effect of Carbon and Sulfur in Continuously Cast Strand on Longitudinal Surface Cracks

机译:连铸坯中碳和硫对纵向表面裂纹的影响

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Effects of carbon and sulfur on the longitudinal surface cracks have been investigated by calculating the non-equilibrium pseudo binary Fe-C phase diagram and introducing the strain in brittle temperature range for continuous casting of steels. The cracking tendency as a function of carbon content was well described by the strain in brittle temperature range. The strain in brittle temperature range was influenced by the other solute elements as well as carbon. The carbon content at which longitudinal surface cracking is maximized decreased with increasing sulfur content. At a given carbon content, the possibility of surface cracking increased with increasing sulfur content.
机译:通过计算非平衡伪二元Fe-C相图,并引入脆性温度范围内的钢进行连续铸造,研究了碳和硫对纵向表面裂纹的影响。由脆性温度范围内的应变很好地描述了裂纹倾向与碳含量的关系。脆性温度范围内的应变受其他溶质元素以及碳的影响。纵向表面裂纹最大化的碳含量随硫含量的增加而降低。在给定的碳含量下,表面裂纹的可能性随着硫含量的增加而增加。

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