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Effect of dilution and macrosegregation on corrosion resistance of laser clad AerMet100 steel coating on 300M steel substrate

机译:稀释和大乳糖测定对300M钢基材激光包覆Aermet100钢涂层耐腐蚀性的影响

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To improve the corrosion resistance of low alloy ultra-high strength steel 300M, AerMet100 steel coating was fabricated on 300M steel using laser cladding under different laser powers and scanning speeds. Chemical compositions, hardness, microstructures and corrosion resistances of the coating were investigated. Results show that as-laser clad AerMet100 steel layer consists of fine lath martensite, a small amount of retained austenite and rod-shaped xi-carbides within the martensitic laths. Dilution ratios of the layers increase with the increase of laser powers and scanning speeds. Macrosegregations took place in AerMet100 steel coatings when convection of molten liquid is insufficient, and which could be avoided by applying high laser power as well as slowing down the scanning speeds. The corrosion resistance of 300M steel substrate could be greatly improved after coating with the AerMet100 steel. High dilution ratios and severe macrosegregations are observed to degrade the corrosion resistance of clad layers by reducing the alloy elements Cr, Mo and Ni in the zones where riches in 300M steel. (c) 2017 Elsevier B.V. All rights reserved.
机译:为了提高低合金超高强度钢300m的耐腐蚀性,使用不同激光功率和扫描速度的激光包层在300m钢上制造Aermet100钢涂层。研究了涂层的化学成分,硬度,微观结构和耐腐蚀性。结果表明,当马氏体板内的少量Lath Martensite,钢材层由精细板块,少量保留的奥氏体和棒状Xi碳化物组成。层的稀释比随着激光功率的增加和扫描速度而增加。当熔融液的对流不足时,在Aermet100钢涂层中发生宏指令,通过施加高激光功率以及减慢扫描速度,可以避免。在用Aermet100钢涂覆后,可以大大提高300m钢基板的耐腐蚀性。观察到高稀释比和严重的宏指令格,以通过在300m钢中的物区中减少合金元素Cr,Mo和Ni来降低包层层的耐腐蚀性。 (c)2017年Elsevier B.V.保留所有权利。

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