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Effects of Fine Precipitates on Austenite Grain Refinement of Micro-alloyed Steel during Cyclic Heat Treatment

机译:细小沉淀物对循环热处理微合金钢奥氏体晶粒细化的影响

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The effects of fine precipitates on the austenite grain refinement of micro-alloyed steel during cyclic heat treatment were investigated under different solution treatments. After three rounds of cyclic heat treatment of A_(c3) and A_(r3) transformations of the as-received steel rod with rapid heating and cooling, the austenite grain size was 3–10 μ m. On the other hand, three rounds of cyclic heat treatment after solution treatment at 1300°C reduced the austenite grain size to 2–5 μ m. The as-received sample included AlN–Ti(C,N)–MnS composite particles with a mean diameter of 30 nm and a number density of 11 μ m~(?3), and the mean diameter did not change during cyclic heat treatment. Thus, it was considered that the reduction in austenite grain size without solution treatment was caused by the increase in the nucleation site of austenite phase with increasing number of cycles, due to the refinement of the prior austenite grains with martensitic structure during the cyclic heat treatment. When solution-treated at 1300°C, the AlN–Ti(C,N)–MnS composite particles were solved, and they were precipitated during the cyclic heat treatment with a mean diameter of 12 nm and an increased number density of 85 μ m~(?3). Thus, it was considered that the further reduction in austenite grain size with solution treatment was caused by the pinning effect of the fine precipitates, in addition to the increase in the number of austenite phase nucleation sites with increasing number of heat treatment cycles.
机译:研究了在不同固溶处理条件下细小析出物对微合金钢奥氏体晶粒细化的影响。经过快速加热和冷却后的原钢棒的A_(c3)和A_(r3)相变的三轮循环热处理,奥氏体晶粒尺寸为3-10 µm。另一方面,在1300°C固溶处理后进行的三轮循环热处理将奥氏体晶粒尺寸减小到2–5μm。收到的样品中包含AlN–Ti(C,N)–MnS复合颗粒,其平均直径为30 nm,数密度为11μm〜(?3),并且在测量过程中平均直径没有变化循环热处理。因此,认为由于在循环热处理中奥氏体组织的细化,奥氏体相的成核部位随着循环次数的增加而增加,因此不进行固溶处理而使奥氏体晶粒尺寸减小。 。当在1300°C固溶处理时,AlN–Ti(C,N)–MnS复合颗粒溶解,并且在循环热处理过程中以平均直径12 nm和增加的数密度85 μm〜(?3)。因此,认为除了随着热处理循环次数的增加奥氏体相成核部位的增加以外,还通过细化析出物的钉扎作用使固溶处理使奥氏体粒径进一步减小。

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