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Ultra Grain Refining and Decomposition of Oxide during Super-heavy Deformation in Oxide Dispersion Ferritic Stainless Steel Powder

机译:氧化物弥散铁素体不锈钢粉末超重变形过程中的超细晶粒细化和氧化物分解

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摘要

Mechanical milling using a high energy planetary ball mill was applied to the powder mixtures of iron, chromium and yttria (Y_2O_3) (Fe-24mass/100Cr-O-15mass/100Y_2O_3) to introduce a very large strain into the iron-base matrix, and microstructural changes during mechanical milling were investigated in relation to decomposition behavior of Y_2O_3 particles. Mechanical milling of more than 36 ks was long enough to allow the mechanical alloying of iron and chromium powders. After the milling of 36 ks, ultrafine bcc crystalline grains of 10 to 20 nm were formed within Fe-24mass/100Cr-15mass/100Y_2O_3 powder mixture and 15mass/100 of Y_2O_3 particles were almost decomposed. The resultant powder mixture markedly hardened to about 1000 Hv. The decomposition of Y_2O_3 particles can be explained as being due to the formation of an amorphous grain boundary layer where yttrium and oxygen atoms are enriched. As a result, it is proposed that, for the dissolution of Y_2o_3' bcc crystalline grains should be refined to a nanometric size to provide a sufficient volume fraction of the grain boundary layer, and that Y_2O_3 particles should be crushed to several nanometers to produce the driving force the decomposition of Y_2O_3 particles.
机译:使用高能行星式球磨机对铁,铬和氧化钇(Y_2O_3)(Fe-24mass / 100Cr-O-15mass / 100Y_2O_3)的粉末混合物进行机械研磨,以将非常大的应变引入铁基基体中,研究了Y_2O_3颗粒分解行为与机械研磨过程中的微观结构变化之间的关系。超过36 ks的机械研磨足够长,足以使铁和铬粉末机械合金化。研磨36 ks后,在Fe-24mass / 100Cr-15mass / 100Y_2O_3粉末混合物中形成了10至20 nm的超细bcc晶粒,并且15mass / 100的Y_2O_3颗粒几乎被分解。所得粉末混合物明显硬化至约1000Hv。 Y_2O_3颗粒的分解可以解释为是由于形成了钇和氧原子富集的无定形晶界层所致。结果,建议为了溶解Y_2o_3'bcc晶粒,将晶粒细化至纳米尺寸,以提供足够的体积分数的晶界层,并建议将Y_2O_3粒子压碎至几纳米,以制备纳米晶。驱动力分解Y_2O_3粒子。

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