Effects of microstructures on the slurry wear properties of X70 pipeline steels
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摘要: 利用濕砂橡膠輪磨損試驗機對同成分不同組織的三種管線鋼進行了漿料磨損實驗,隨后對磨損后的試樣表面進行掃描電鏡觀察和三維白光干涉分析,研究組織類型影響耐磨性的原因及磨損的微觀機理.結果表明:當磨損機理以微觀犁溝和微觀疲勞為主時,復相組織中共存的兩相硬度差別越大,磨痕的微觀變形越不易協調,磨損質量損失越明顯;當整體力學性能接近時,粒狀貝氏體+針狀鐵素體的復相組織最為耐磨,粒狀貝氏體+多邊形鐵素體復相組織次之,板條貝氏體+多邊形鐵素體復相組織耐磨性最差.Abstract: Slurry wear tests of three designed pipeline steels with the same chemical composition but different microstructures were performed by utilizing a wet sand/rubber wheel abrasion test apparatus. The worn surfaces were further investigated by scanning electron microscopy and 3D white light interference analysis to reveal the wear mechanism and the relation between the microstructure and wear resisting perforumnce. It is found that the mass loss increases with the increase of the micro-hardness difference between two phases in the muhiphase strueture when the predominant wear mechanism is micro-ploughing combined with micro-fatigue. That is due to a misfit of micro deformation between the hard phase and the soft phase. Among the three different muhiphase steels with nearly the same mechanical properties, the wear resistance of the granular bainite-acicular ferrite muhiphase structure is the best, followed by the granular bainite-polygonal ferrite structure, and then the lath bainite-polygonal ferrite structure.
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Key words:
- pipeline steel /
- microstructure /
- slurry /
- wear
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