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Wear and Corrosion Behavior of Functionally Graded Semi-Solid 9Cr18Mo Steel

机译:功能梯度半固态9Cr18Mo钢的磨损和腐蚀行为

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A kind of 9Cr18Mo multidiameter shaft part was fabricated through a designed thixoforging set-up. As compared with conventional heat treatment specimen, wear and corrosion behavior of 9Cr18Mo thixoforging specimen were studied. The results showed the surface of 9Cr18Mo thixoforging specimen demonstrated fine wear and corrosion resistance. Thixoforging specimen exhibited functionally graded property with inner austenite particles and fine dendrite eutectic skin layer. At the skin layer, the former solidified liquid led to the concentration of alloying elements such as Cr and Mo. Besides, eutectic structure of secondary austenite and M_7C_3 carbide helped to improve the hardness. The high hardness of M_7C_3 carbide and high concentration of Cr, Mo elements at the edge skin layer contributed to reducing the delamination wear, abrasive wear and the appearance of oxidation. Even at higher wear load, relative sliding occurred at the wear surface, which avoided crack formation and chunk spalling. As compared with conventional heat treatment specimen, corrosion current density of thixoforging surface reduced, while corrosion potential increased. Thixoforging surface also exhibited passivation behavior and the corrosion resistance increased slightly. High concentration of Cr and Mo at the skin layer avoided the formation of chromium depleted zone. In view that wear and corrosion failure tend to occur at the surface of specimen, the thixoforging specimen with a wear and corrosion skin layer might provide a possibility for expanding the application fields of 9Cr18Mo steel.
机译:通过设计的触变结构制造了一种9Cr18Mo多直径轴零件。与常规热处理试样相比,研究了9Cr18Mo触变组织试样的磨损和腐蚀行为。结果表明,9Cr18Mo触变试样的表面表现出良好的耐磨性和耐蚀性。触变试样具有内部奥氏体颗粒和细小的枝晶共晶皮层的功能梯度特性。在表皮层,前者凝固的液体导致Cr和Mo等合金元素的浓缩。此外,二次奥氏体和M_7C_3碳化物的共晶结构有助于提高硬度。 M_7C_3碳化物的高硬度和边缘表层的Cr,Mo元素的高浓度有助于减少分层磨损,磨料磨损和氧化现象。即使在较高的磨损负荷下,在磨损表面也会发生相对滑动,从而避免了裂纹的形成和块状剥落。与常规热处理试样相比,触变表面的腐蚀电流密度降低,而腐蚀电位升高。触变表面也表现出钝化行为,耐蚀性略有提高。在表皮层上高浓度的Cr和Mo避免了铬耗尽区的形成。考虑到试样表面容易发生磨损和腐蚀失效,具有磨损和腐蚀表皮层的触变性试样可能为扩大9Cr18Mo钢的应用领域提供了可能。

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