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Influence of the base preheating on cracking of the laser-cladded coatings

机译:基础预热对激光覆盖涂层开裂的影响

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Coatings of stellite SF6 are prepared on the chromium steel base by means of a direct laser cladding. A 1.2 kW CO2 laser is applied and the original material is delivered into the processing zone coaxially with the laser beam. The samples are produced with and without a controlled preheating of the substrate and are investigated by means of metallographic techniques. It is found that the observed micro-cracking susceptibility decreases markedly with increase of the base preheating temperature up to 750 K and the crack-free coatings are produced for preheating around 950 K. The substrate-coating interface reveals a metallic bond and the microstructure is characterized by a fine-grained, dendritic structure. The nearly constant concentration dependence of Fe, Co, Cr and Ni on the distance from interface indicates on homogeneous chemical composition of the produced coatings.
机译:通过直接激光包层在铬钢基底上制备脱晶SF6的涂层。施加1.2kW的CO2激光器,并且原始材料与激光束同轴地送入处理区。用基材的受控预热,通过金属缩放技术研究样品。发现观察到的微开裂敏感性随着高达750k的基础预热温度的增加而显着降低,并且产生了无裂缝涂层,用于预热950k。基材涂布界面露出金属键,微观结构以细粒度,树突结构为特征。 Fe,Co,Cr和Ni几乎恒定的浓度依赖性从界面的距离表示所生产的涂料的均匀化学成分。

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