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首页> 外文期刊>Journal of Materials Engineering and Performance >Thermal Stability Study of Ultrafine Grained 304L Stainless Steel Produced by Martensitic Process
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Thermal Stability Study of Ultrafine Grained 304L Stainless Steel Produced by Martensitic Process

机译:马氏体法生产超细晶粒304L不锈钢的热稳定性研究

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An ultrafine grain 304L stainless steel with average grain size of about 650 nm was produced by martensitic process. 10 mm as-received sheets were 80% cold rolled in the temperature of -15℃ and then annealed at 700℃ for 300 min to obtain ultrafine grained microstructure. The results showed that the ultrafine grained 304L steel has yield strength of 720 MPa, tensile strength of about 920 MPa, and total elongation of 47% which is about twice that of coarse grain structure. The effect of annealing temperature (750-900℃) on the grain growth kinetics was modeled by isothermal kinetics equation which resulted in the grain growth exponent (n) and activation energy for grain growth of 4.8 and 455 KJ/mol, respectively. This activation energy was also compared with those for other austenitic steels to better understanding of the nature of grain growth and atoms mobility during annealing. It was found that activation energy for grain growth is about twice higher than self-diffusion activation energy of austenite that is related to the Zener pinning effects of the second phase particles.
机译:通过马氏体法生产平均晶粒尺寸为约650nm的超细晶粒304L不锈钢。将10mm的原样板在-15℃的温度下冷轧80%,然后在700℃退火300分钟,以获得超细晶粒的组织。结果表明,超细晶粒304L钢的屈服强度为720 MPa,抗拉强度约为920 MPa,总伸长率为47%,约为粗晶粒组织的两倍。用等温动力学方程模拟了退火温度(750-900℃)对晶粒长大动力学的影响,得出晶粒长大指数(n)和晶粒长大的活化能分别为4.8和455 KJ / mol。还将该活化能与其他奥氏体钢的活化能进行了比较,以更好地了解退火过程中晶粒生长的性质和原子迁移率。发现晶粒生长的活化能比奥氏体的自扩散活化能高大约两倍,这与第二相颗粒的齐纳钉扎效应有关。

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