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Inconel 601鎳基高溫合金激光焊焊縫的顯微組織
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更新時間:2015-09-17
對3.0 mm厚的Inconel 601鎳基合金激光焊后焊接接頭的顯微組織進行研究。
Inconel 601鎳基高溫合金激光焊焊縫的顯微組織Microstructure of Inconel 601 nickel-based superalloy laser welded joint
對3.0 mm厚的Inconel 601鎳基合金激光焊后焊接接頭的顯微組織進行研究。結果表明:凝固后焊縫金屬仍呈奧氏體相,其相組成由奧氏體基體γ相、γ′相(Ni3Al為主)以及碳化物相(Cr23C6)組成。同時,熔池金屬以交互結晶的方式優先依附在半熔化狀態的母材晶粒表面生長。另外,在焊縫金屬中觀察到以胞狀和樹枝狀為主的亞結構,亞結構中存在凝固亞晶界、凝固晶粒邊界和遷移晶粒邊界。
The welded joint microstructure of 3.0 mm-thickness Inconel 601 superalloy was analyzed. The results show that the phase composition of the welded joint consists of austenite matrix γ phase, γ′ phase (Ni3Al-based) and carbide phase (Cr23C6), which is similar with the metal phase composition. And the molten pool metal grows up in the form of interaction crystallization, which is prior to attach to the semi-molten state of the metal surface. The cellular and dendritic substructures are observed in the welded joint microstructures. Solidification sub-grain boundary (SSGB), solidification grain boundary (SGB) and migrated grain boundary (MGB) exist in the substructure.
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