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Causes and Countermeasures of Cracking in Cogging Process of 40Cr Bloom

机译:40Cr绽放齿槽过程中开裂的原因及对策

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This paper has analyzed the solidification structure and thermodynamic state of bloom by means of the electron microscopy observation and heat transfer model, and studied the cracking mechanism and influence factors in the cogging process of 40Cr bloom. The results show that the main cracking reasons are the unreasonable secondary cooling scheme, the high reheating temperature in the bloom surface, the coarser grain and Widmanstatten structure of the bloom subsurface. When the bloom is conveyed from the steel mill to rolling mill, the bloom may crack for the phase transition stress and thermal stress, some micro-cracks occur in the bloom surface, furthermore, the crack will expand when it is heated in the heating furnace and rolled in the cogging mill, the cracking occurs in bloom eventually. In order to reduce the bloom cracking in the cogging process, it must optimize the secondary cooling system, reduce the cooling intensity, and adopt the thermal insulation, hot delivery and hot charge process. If the bloom can not be conveyed in the hot delivery and hot charge mode, it should be conveyed to the slow cooling pit.
机译:本文分析盛开的凝固组织和热力学状态由电子显微镜的观察和传热模型的装置,以及在40Cr钢盛开的齿槽过程研究的开裂机理和影响因子。结果表明,主要的裂化原因是不合理的二次冷却方案,在开花表面高加热温度,较粗的颗粒和魏氏组织钢坯地下。当盛开从钢厂输送至轧机,钢坯可能开裂用于相变应力和热应力,发生在开花表面一些微裂纹,此外,裂纹将当在加热炉中加热膨胀而在开坯机轧制,开裂盛开最终发生。为了减少钢坯在齿槽过程开裂,它必须优化次级冷却系统,降低冷却强度,并采用热绝缘,热传递和热装过程。如果布隆不能在热送热充电模式被输送,应当传送到缓冷坑。

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