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Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification

Xiangyi Ren et al · SpringerOpen · 2026

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Abstract Superalloy is the only utilizable material for underground coal gasification channel joint. In this research, the high temperature gas flow erosion wear behavior of superalloy with strengthened layer by boronizing is systematically investigated, including microstructure and hardness. The results reflect that boronizing process can effectively strengthen the surface of superalloy. The high temperature gas erosion wear testing results indicate that boronized layer on superalloy has obvious effect on protecting matrix from high temperature erosion. GH5188 possesses the best high temperature erosion wear resisitance. Before boronizing, wear mechanism of superalloy GH3536 is surface oxidation with spalling of oxide layer by particles impacting, and wear mechanism of superalloy GH5188 and boronized superalloy GH3536 is irregular micro-cutting by high speed particles.

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APA 7

al, X. R. E. (2026). Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification. https://doi.org/10.1186/s40712-026-00446-5

MLA

al, Xiangyi Ren et. "Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification." 2026. https://doi.org/10.1186/s40712-026-00446-5.

Chicago

al, Xiangyi Ren et. 2026. "Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification.". https://doi.org/10.1186/s40712-026-00446-5.

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al, X. R. E. 2026, Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification, SpringerOpen, available at: https://doi.org/10.1186/s40712-026-00446-5 [Accessed 8 Aug. 2026].

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Title
Research on high temperature erosion wear behavior of surface strengthened superalloy for underground coal gasification
Author / contributors
Xiangyi Ren et al
Publisher
SpringerOpen
Publication year
2026
ISSN
3004-8958
ISSN
3004-8958
Language
English

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