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Recrystallization Behaviour of Nb and Ti + Nb added Ferritic Stainless Steels

机译:Nb和Ti + Nb添加铁素体不锈钢的再结晶行为

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摘要

The effect of alloying elements and rough rolling condition on the microstructure evolution of ferritic stainless steel has been investigated in order to understand the recrystallization and precipitation behaviour during hot rolling. In the present study, a series of high temperature compression tests with plane strain deformation mode were conducted for Nb added and Ti+Nb added ferritic stainless steels. Compression tests then were subjected to various conditions of deformation temperature, reduction ratio and holding time. After the tests, EBSD mapping and SEM observation were performed to analyze the recrystallization and precipitation behaviour. Nb added and Ti + Nb added steels show an increasing tendency of recrystallization with an elevation of deformation temperature, holding time and reduction ratio. An increase of holding temperature and holding time enlarges the recrystallized regime due to a decrease of activation energy for recrystallization and a growth of recrystallized grain. A higher reduction ratio also increases the recrystallized regime due to a rise of stored energy for recrystallization. Nb added steel, however, is more resistant to recrystallization because most of Nb(C, N) particles in Nb added steel are finely dispersed in the matrix.
机译:为了了解热轧过程中的再结晶和析出行为,研究了合金元素和粗轧条件对铁素体不锈钢组织演变的影响。在本研究中,对添加Nb和添加Ti + Nb的铁素体不锈钢进行了一系列具有平面应变变形模式的高温压缩试验。然后对压缩试验进行变形温度,压缩比和保持时间的各种条件的测试。试验后,进行EBSD作图和SEM观察以分析重结晶和沉淀行为。随着变形温度,保持时间和压下率的升高,添加Nb和添加Ti + Nb的钢显示出增加的再结晶趋势。保持温度和保持时间的增加由于用于重结晶的活化能的降低和重结晶晶粒的生长而扩大了重结晶范围。较高的还原率还由于增加了用于重结晶的能量而增加了重结晶范围。但是,添加Nb的钢具有更好的抗重结晶性,因为添加Nb的钢中的大多数Nb(C,N)颗粒都精细地分散在基体中。

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