Effect of Tungsten Contents and Heat Treatment on the Microstructures and Mechanical Properties of Hastelloy C-276 Alloy Investment Castings

Byung-Ki Yoo, Heung-Il Park, Cha-Hurn Bae, Sung-Gyoo Kim, Hae-Yong Jeong
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Abstract

The effects of W content and heat treatment on the microstructure and mechanical properties of Hastelloy C-276 alloy investment castings were discussed. As the W content was increased, dendritic microstructure was refined and network type precipitate formed during solidification was distributed on the dendritic grain boundaries. Cr, Fe and Mn were highly segregated in the Ni-based dendrite matrix, and Mo, W, C and Si were in the precipitates. Due to the heat treatment, fine granular and flake precipitates were newly formed in the matrix, and unresolved network type precipitates remained on the grain boundary. The network type precipitates and the granular and flake precipitates formed by heat treatment were confirmed to be µ phase intermetallic compounds with similar compositions. Due to the increase of the W content and the heat treatment, hardness and tensile strength were sig-nificantly increased. However, tensile strength after aging treatment was decreased with the W content. These results can be explained in that brittle fracturing by the unresolved network type precipitates dispersed in the grain boundary was predominant over ductile fracturing by the dimple ruptures originating from the fine granular precipitates in the matrix.
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钨含量及热处理对哈氏C-276合金熔模铸件组织和力学性能的影响
讨论了W含量和热处理对哈氏C-276合金熔模铸件组织和力学性能的影响。随着W含量的增加,枝晶组织细化,凝固过程中形成的网状析出物分布在枝晶晶界上。Cr、Fe和Mn在ni基枝晶基体中高度偏析,Mo、W、C和Si在析出相中析出。由于热处理,在基体中新形成了细小的粒状和片状相,在晶界上留下了未解决的网状相。经热处理形成的网状相和粒状、片状相均为成分相近的µ相金属间化合物。由于W含量的增加和热处理,合金的硬度和抗拉强度显著提高。时效处理后的拉伸强度随W含量的增加而降低。这些结果可以解释为,由分散在晶界的未解决的网状型析出物引起的脆性断裂比由基体中细颗粒析出物引起的韧窝断裂更占优势。
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