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Effects of Boron, Silicon on Structure and Properties of Fe-based Superalloy

机译:硼,硅对铁基高温合金组织和性能的影响

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The affecting laws of boron and silicon on structure and properties of Fe-based superalloy were studied by analyses of scanning electron microscope (SEM), electron probe microanalysis (EPMA) and X-ray diffraction (XRD). Proper content of boron could not only purify the matrix and restrain the polymerizing and growing of carbides effectively, but also promote the forming of secondary precipitate of borides, which dispersed in form of micro particles to strengthen grain boundaries and enhance the heat strength for Fe-based superalloy. Boron was an adverse element to high temperature oxidation resistance. Silicon could toughen the matrix by solid solution strengthening. Overfed silicon in alloys caused great dropping of strength and toughness. The component of SiO2 endowed the oxide scale with flat and compact structure, fine and even grains, and few exfoliating. The optimum contents of boron and silicon in Fe-based superalloy are 0.02wt.% and 1.5wt.% respectively by comprehensive consideration of high temperature mechanical properties and oxidation resistance.
机译:通过扫描电子显微镜(SEM),电子探针显微分析(EPMA)和X射线衍射(XRD)分析研究了硼和硅对铁基高温合金结构和性能的影响规律。适当的硼含量不仅可以有效地净化基体,有效地抑制碳化物的聚合和生长,而且可以促进硼化物二次沉淀的形成,其以微粒的形式分散以增强晶界并增强Fe-的热强度。基超级合金。硼是耐高温氧化性的不利元素。硅可以通过固溶强化来强化基体。合金中过量的硅导致强度和韧性大大降低。 SiO 2的成分使氧化物鳞片具有平坦而致密的结构,细小且均匀的晶粒,并且很少剥落。综合考虑高温机械性能和抗氧化性,铁基高温合金中硼和硅的最佳含量分别为0.02wt。%和1.5wt。%。

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