材料科学
放电等离子烧结
粒度
奥氏体
冶金
奥氏体不锈钢
可塑性
退火(玻璃)
粉末冶金
体积分数
马氏体
无扩散变换
复合材料
微观结构
腐蚀
作者
Baptiste Flipon,Lucía García de la Cruz,Éric Hug,Catherine Keller,Fabrice Barbe
摘要
Samples of 316L austenitic stainless steel with bimodal grain size distributions are elaborated using two distinct routes. The first one is based on powder metallurgy using spark plasma sintering of two powders with different particle sizes. The second route applies the reverse-annealing method: it consists in inducing martensitic phase transformation by plastic strain and further annealing in order to obtain two austenitic grain populations with different sizes. Microstructural analy ses reveal that both methods are suitable to generate significative grain size contrast and to control this contrast according to the elaboration conditions. Mechanical properties under tension are then characterized for different grain size distributions. Crystal plasticity finite element modelling is further applied in a configuration of bimodal distribution to analyse the role played by coarse grains within a matrix of fine grains, considering not only their volume fraction but also their spatial arrangement.
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