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Assessment of CaO–Al2O3 Based Mold Flux System for High Aluminum TRIP Casting

机译:基于CaO–Al 2 O 3 的高铝TRIP铸模助熔剂系统的评估

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Today, the demands for Advanced High Strength Steels (AHSS) have gradually increased due to their ability to reduce vehicle weight as a means to save energy, reduce the environmental impact while simultaneously improving passenger safety. However, AHSS often require the addition of large amounts of alloying elements such as aluminum and this can make it difficult to cast sound slabs without surface defects. When casting high aluminum AHSS, due to the reaction between aluminum in steel and silica in mold flux, the viscosity and crystallization characteristics of the mold slag changes drastically, and deteriorates mold lubrication. Therefore, it is critical to limit the reaction between Al in steel and mold slag and at the same time to provide consistent and adequate mold slag in-use properties. This paper describes the development of non-traditional lime-alumina based mold fluxes which have the potential to reduce slag-steel interaction during casting of high aluminum TRIP steel. Several trial casts of 1.45% Al TRIP steel have been conducted on a pilot caster to examine the performance of mold fluxes developed. When the lime-alumina based mold fluxes were applied successfully, alumina pickup was reduced to less than 5% as compared to 15% alumina pickup for corollary trial casts using conventional lime-silica mold fluxes. The developed lime-alumna mold fluxes showed improved in-mold performance as indicated by enhanced lubrication and stable mold heat transfer, again compared to lime-silica fluxes. Cast slabs from the trials using these lime-alumina fluxes have periodic and sound oscillation marks and minimized defects.
机译:如今,对高级高强度钢(AHSS)的需求已逐渐增加,因为它们具有减轻车辆重量,节省能源,减少环境影响,同时提高乘客安全性的能力。然而,AHSS经常需要添加大量的合金元素,例如铝,这可能使得难以铸造没有表面缺陷的厚板。当铸造高铝的AHSS时,由于钢中的铝与铸模助熔剂中的二氧化硅之间的反应,铸模渣的粘度和结晶特性会急剧变化,从而使铸模润滑性变差。因此,至关重要的是限制钢中的铝与铸渣之间的反应,同时提供一致且适当的铸渣使用性能。本文介绍了非传统的基于石灰-氧化铝的保护渣的开发,这种助熔剂具有减少高铝TRIP钢铸造过程中炉渣-钢之间相互作用的潜力。已经在中试连铸机上进行了1.45%Al TRIP钢的几种试铸,以检验所开发的保护渣的性能。当成功施用基于石灰-氧化铝的铸模助熔剂时,与使用常规石灰-二氧化硅铸模助熔剂的配套试铸铸件的15%的氧化铝铸件相比,氧化铝的铸件减少到了5%以下。与石灰硅助熔剂相比,开发的石灰铝助熔剂显示出改善的模内性能,这表现为润滑性增强和稳定的模具传热。使用这些石灰-氧化铝助熔剂的试验铸坯具有周期性和合理的振动痕迹,并使缺陷最小化。

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