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Effect of Al Content on the Characteristics of Inclusions in Al–Ti Complex Deoxidized Steel with Calcium Treatment

机译:Al含量对钙处理Al-Ti复合脱氧钢中夹杂物特性的影响

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摘要

To improve the effect of calcium treatment and the cleanliness of steel and to make use of fine TiO_(x) to refine the microstructure of steel, the effect of aluminum content on inclusion characteristics of aluminum-titanium complex deoxidized and calcium treated steel is investigated based on the experiment with SEM/EDS, Image Pro-Plus 6.0 and FactSage 6.1 softwares and thermodynamic calculation in the present work. The results show that the inclusions in two steels with different aluminum content are obviously spherical composite inclusions with a two-layer complex structure, consisting of an Al_(2)O_(3)–CaO–TiO_(X) core surrounded by MnS. In low aluminum steel, the oxide core of inclusions contains much TiO_(x) and CaO, and their composite structure is mosaic compared with bundle in high aluminum steel, the number of inclusions is 2.5 times more than that in high aluminum steel, the thickness of MnS on oxides surface is also thinner. In addition, melting point of the inclusions in low aluminum steel is lower, the cleanliness of the steel is relatively improved because of the inclusions floating up, and the deformation aspect ratio of calcium aluminate inclusions with a certain amount of Ti_(2)O_(3) is effectively improved, which is about 1–2 while the composition of oxide core is x _(Al_(2)O_(3)) = 35–55%, x _(Ti_(2)O_(3)) = 15–35%, and x _(CaO) = 10–25%. As a result, less calcium is needed to modify the alumina inclusions to liquid calcium aluminate in the case of lower aluminum deoxidized steel, thus the calcium treatment effect can be improved. The low aluminum in steel is more effective to control the inclusion characteristics to reduce the harm of MnS and to improve the cleanliness of steel.
机译:为了提高钙处理效果和钢的清洁度,并利用细的TiO_(x)细化钢的微观结构,研究了铝含量对脱氧钙处理的铝钛复合物的夹杂特性的影响。在当前工作中使用SEM / EDS,Image Pro-Plus 6.0和FactSage 6.1软件进行的实验以及热力学计算。结果表明,两种铝含量不同的钢中的夹杂物明显是具有两层复合结构的球形复合夹杂物,由Al_(2)O_(3)–CaO–TiO_(X)芯包围着MnS组成。在低铝钢中,夹杂物的氧化物核中含有大量的TiO_(x)和CaO,与高铝钢中的束相比,它们的复合结构是镶嵌的,夹杂物的数量是高铝钢的2.5倍。氧化物表面上的MnS含量也更薄。另外,低铝钢中夹杂物的熔点较低,由于夹杂物浮起,且含一定量的Ti_(2)O_()的铝酸钙夹杂物的变形长宽比,使钢的清洁度相对提高。 3)得到有效改善,当氧化物核的组成为 x _(Al_(2)O_(3))= 35-55%, x _(Ti_(2)时,约为1-2。 O_(3))= 15–35%,x_(CaO)= 10–25%。结果,在低铝脱氧钢的情况下,需要较少的钙来将氧化铝夹杂物改性成液态铝酸钙,因此可以改善钙处理效果。钢中的低铝对于控制夹杂物特征以减少MnS的危害并提高钢的清洁度更为有效。

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