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Optimization of mechanical alloying and spark-plasma sintering regimes to obtain ferrite–martensitic ODS steel

机译:机械合金化和火花等离子烧结工艺的优化,以获得铁素体-马氏体ODS钢

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Highlights ? Spark-plasma sintering (SPS) of reactor ferritic/martensitic ODS steel. ? Optimization of mechanical alloying regimes of powders. ? Optimization of SPS regimes for producing the samples of high density. ? Determination of optimal content of dispersed Y 2 O 3 particles in steel. Abstract The results of structure investigation, distribution uniformity of dispersed particles of Y 2 O 3 , porosity and density of the ferritic/martensitic reactor steel EP-450 (0.12C–13Cr–2Mo–Nb–V–B, wt%) produced by spark-plasma sintering (SPS) are presented. More than 140 samples were produced using different combinations of mechanical alloying (time, speed of attritor rotation) and SPS parameters (temperature, speed of reaching preset temperature, pressure and time of exposure under pressure, concentration of strengthening particles). It is determined that the absence of strengthening Y 2 O 3 nano-particles in local volumes of sintered specimens is connected with the imperfection of mechanical alloying, namely, the formation of agglomerates of matrix steel powder containing no oxide nano-particles. It has been determined that the time of mechanical alloying should not exceed 30 h to provide minimum powder agglomeration, uniform distribution of Y 2 O 3 particles in the powder mixture and minimum porosity of sintered samples. Spark-plasma sintering should be performed at the lowest possible temperature. As a result it was found that samples with 99% theoretical density can be obtained using the following optimized SPS-parameters: sintering temperature is 1098 ÷ 1163 K; speed for reaching the preset temperature is 573 K/min; load is 70 ÷ 80 MPa; time of exposure under pressure – either without isothermal exposure, or exposure during ≥ 3 min; optimum quantity of Y 2 O 3 is 0.2 ÷ 0.5 wt%.
机译:强调 ?反应堆铁素体/马氏体ODS钢的火花等离子体烧结(SPS)。 ?粉末机械合金化方案的优化。 ?优化SPS方案以生产高密度样品。 ?确定钢中分散的Y 2 O 3颗粒的最佳含量。摘要铁素体-马氏体反应堆EP-450(0.12C–13Cr–2Mo–Nb–V–B,wt%)的结构研究,Y 2 O 3分散颗粒的分布均匀性,孔隙率和密度。介绍了等离子烧结(SPS)。使用机械合金化(时间,磨碎机旋转速度)和SPS参数(温度,达到预设温度的速度,压力和在压力下的暴露时间,强化颗粒的浓度)的不同组合生产了140多个样品。可以确定的是,在烧结样品的局部体积中不存在增强的Y 2 O 3纳米颗粒与机械合金化的缺陷有关,即,不包含氧化物纳米颗粒的基体钢粉附聚物的形成。已经确定,机械合金化的时间不应超过30小时,以提供最小的粉末团聚,粉末混合物中Y 2 O 3颗粒的均匀分布以及烧结样品的最小孔隙率。火花等离子体烧结应在尽可能低的温度下进行。结果发现,使用以下优化的SPS参数可以获得具有99%理论密度的样品:烧结温度为1098÷1163 K;达到预设温度的速度> 573 K / min;负载为70÷80 MPa;在压力下的暴露时间–没有等温暴露或≥3分钟的暴露; Y 2 O 3的最佳量为0.2÷0.5重量%。

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