September 2026

Journal

Interfacial microstructure evolution of P91&304 graded composite transition joint during thermal aging and its effect on corrosion behavior

By:
Sun, Ting; Hu, Shanshan; Wen, Yuying; Wang, Yanli ; Qian, Haiyang; Feng, Zhili ; Cui, Bai; Liu, Xingbo
Journal Name:
Corrosion Science
Page Number:
114253
Volume:
272
Publication Date:
September 25, 2026
View DOI Listing:
https://doi.org/10.1016/j.corsci.2026.114253

Abstract

The novel graded composite transition joint (GCTJ) between AISI 304 stainless steel and ASTM A335 P91 steel offers a promising strategy for dissimilar metal integration in high-temperature applications. However, the long-term thermal stability and corrosion resistance of its interfacial zone remain poorly understood. This study investigates the microstructural evolution of the interfacial zone under 700 °C and its influence on hot corrosion behavior. Thermal aging progressively develops three characteristic interfacial subzones: a coarsened carbides zone (CCZ), a lathy zone (LZ) and a Cr-depleted zone (CrDZ). This aging-induced heterogeneity results in distinct zone-dependent hot corrosion behavior at 700°C. The CrDZ shows limited intergranular corrosion associated with preferential grain-boundary attack, whereas the LZ and CCZ become susceptible to early-stage localized corrosion due to local chemical heterogeneity and their reduced capability to establish and sustain protective oxide scales. In long-term thermally aged specimens, preferential corrosion propagation along carbide/matrix regions is observed within the CCZ. The work provides mechanistic insight essential for predicting long-term durability and guiding the design of dissimilar metal joints in high-temperature service environments.


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