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Investigation on viscosity of mould fluxes during continuous casting of aluminium containing TRIP steels

机译:含铝钢钢连续铸造过程中霉菌通量粘度的研究

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Transformation induced plasticity steel with a high content of Al (Al-TRIP) is an advanced high strength steel. The reaction between Al and SiO_2 would lead to compositional changes in mould fluxes, which results in a decrease in SiO_2 content and an increase in Al_2O_3 content, and influences the physical properties of the molten fluxes. In the present study, the changes of viscosities of a series of mould fluxes with different additives and addition amounts were examined by a rotating viscometer and the crystals in the D series mould fluxes were analysed by scanning electron microscopy and X-ray diffraction. The results show that (a) the Al_2O_3 in mould fluxes containing Li_2O presents amphoteric characteristic; (b) the viscosity of the fluxes with 8% B_2O_3 decreases with the increase in w(Al_2O_3)/w(SiO_2) ratio, the result shows that the Al_2O_3 presents alkaline; (c) the viscosity of flux containing both 4% Li_2O and 5% B_2O_3 changes a little with the increase in w(Al_2O_3)/w(SiO_2) ratio. When the Al_2O_3 content is 30%, the viscosity is 0.204 Pa s and the break temperature is 1130°C; (d) mould fluxes used for Al-TRIP steel precipitate CaF_2 crystals; (e) base on the Riboud model, a suitable viscosity mathematical model for the mould fluxes with high Al_2O_3 content is established.
机译:具有高含量的Al(Al-Trap)的转化诱导的塑性钢是一种先进的高强度钢。 Al和SiO_2之间的反应将导致霉菌通量的组成变化,这导致SiO_2含量的降低和Al_2O_3含量的增加,并影响熔融助熔剂的物理性质。在本研究中,通过旋转粘度计检查具有不同添加剂和添加量的一系列霉菌通量的粘度的变化,并通过扫描电子显微镜和X射线衍射进行D系列霉菌助熔剂中的晶体。结果表明,(a)含有Li_2O的霉菌助熔剂中的Al_2O_3呈两性特性; (b)具有8%B_2O_3的助熔剂的粘度随着W(Al_2O_3)/ W(SiO_2)比的增加而降低,结果表明Al_2O_3呈现碱性; (c)含有4%Li_2O和5%B_2O_3的助焊剂随着W(Al_2O_3)/ W(SiO_2)比的增加而变化。当AL_2O_3含量为30%时,粘度为0.204Pa,断裂温度为1130°C; (d)用于Al-Trap钢沉淀Caf_2晶体的模态助熔剂; (e)基于Riboud模型,建立了具有高Al_2O_3含量的模具助熔剂的合适粘度数学模型。

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