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The Customized Heat Treatment for Enhancing the High-Temperature Durability of Laser-Directed Energy Deposition-Repaired Single-Crystal Superalloys

机译:用于提高激光定向能量沉积修复的单晶高温合金高温耐久性的定制热处理

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摘要

The high-temperature durability performance plays a crucial role in the applications of single-crystal (SX) superalloys repaired by laser-directed energy deposition (L-DED). A specialized heat treatment process for L-DED-repaired SX superalloys was developed in this study. The effect of the newly customized heat treatment on the microstructure and high-temperature mechanical properties of DD32 SX superalloy repaired by L-DED was investigated. Results indicate that the repaired area of the newly customized heat treatment specimen still maintained a SX structure, the average size of the γ′ phase was 236 nm, and the volume fraction was 69%. Obviously recrystallized grains were formed in the repair area of the standard heat treatment specimens, and carbide precipitated along the grain boundary. The size of the γ′ phase was about 535 nm. The high-temperature durable life of the newly custom heat treatment specimen was about 19.09 h at 1000 °C/280 MPa, the fracture mode was microporous aggregation fracture, and the fracture location was in the repair area. The durable life of the standard heat treatment specimen was about 8.70 h, the fracture mode was cleavage fracture, and the fracture location was in the matrix area. The crack source of both specimens was interdendrite carbide.
机译:高温耐久性能在激光定向能量沉积 (L-DED) 修复的单晶 (SX) 高温合金的应用中起着至关重要的作用。本研究开发了一种用于 L-DED 修复的 SX 高温合金的专用热处理工艺。研究了新定制的热处理对 L-DED 修复的 DD32 SX 高温合金的显微组织和高温力学性能的影响。结果表明,新定制的热处理样品的修复区域仍然保持 SX 结构,γ' 相的平均尺寸为 236 nm,体积分数为 69%。在标准热处理试样的修复区形成了明显的再结晶晶粒,碳化物沿晶界析出。γ' 相的大小约为 535 nm。新定制的热处理试件在 1000 °C/280 MPa 下的高温耐久寿命约为 19.09 h,断裂模式为微孔聚集断裂,断裂位置在修复区。标准热处理试件的耐用寿命约为 8.70 h,断裂模式为解理断裂,断裂位置在基体区域。两个试样的裂纹源都是枝晶间碳化物。

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