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Microstructure evolution and room temperature fracture toughness of directionally solidified NiAl-31Cr3Mo-0.2Si near-eutectic alloy at different withdrawal rates

机译:定向凝固NiAl-31Cr3Mo-0.2Si近共晶合金在不同抽速下的组织演变和室温断裂韧性

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摘要

The microstructure evolution and room temperature fracture toughness of directionally solidified NiAl-31Cr3Mo-0.2Si (at%) near-eutectic alloy at different withdrawal rates were investigated. The results showed that NiAl dendrites were eliminated and fully eutectic structure was achieved by applying appropriate withdrawal rates. The microstructure evolved from planar eutectic to primary NiAl dendrites + cellular eutectic and then to dendritic eutectic with the increasing withdrawal rate. Correspondingly, the interlamellar spacing and cell size decreased gradually. The relationship between eutectic interlamellar spacing with withdrawal rate can be summarized as λ = 4.74V~(-0.38). The fracture toughness of alloys with fully eutectic structure was much higher than that of alloys with NiAl dendrites. It increased up to 2.5 times. The high fracture toughness may be attributed to some toughening mechanisms, such as crack bridging, crack deflection, interface debonding and microcrack linkage. The existence of primary dendrites would seriously deteriorate the fracture toughness.
机译:研究了定向凝固NiAl-31Cr3Mo-0.2Si(at%)近共晶合金在不同抽出速率下的组织演变和室温断裂韧性。结果表明,通过应用适当的抽提率,可以消除NiAl树枝状晶体并获得完全的共晶结构。显微组织从平面共晶演化为主要的NiAl树突+细胞共晶,然后随着抽提率的提高而发展为树状共晶。相应地,层间间距和细胞大小逐渐减小。共晶层间距与退出率之间的关系可以总结为λ= 4.74V〜(-0.38)。具有全共晶组织的合金的断裂韧性远高于具有NiAl树枝晶的合金。它增加了2.5倍。较高的断裂韧性可能归因于某些增韧机制,例如裂纹桥接,裂纹变形,界面剥离和微裂纹连接。初级枝晶的存在会严重破坏断裂韧性。

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  • 来源
    《Materials Science and Engineering》 |2016年第10期|243-251|共9页
  • 作者单位

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

    State Key Laboratory of Advanced Special Steel, Shanghai University, Shanghai 200072, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    NiAl intermetallics; Directional solidification; Microstructure; Fracture toughness;

    机译:NiAl金属间化合物;定向凝固;微观结构断裂韧性;

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