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Tuning the Composition and Microstructure of Fe-Based Alloy Thick Coatings for Heavy Duty Applications

机译:调整重型应用中的铁基合金厚涂层的成分和组织

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摘要

Thick coatings for heavy duty applications in many industrial fields are produced by generating hard layers of Fe-based complex alloys on the critical surfaces. The composition and structure of these coatings have to be carefully tuned in order to generate a defect-free layer after solidification and to meet the expected service conditions. The present study is aimed at investigating and developing improved Fe-based alloys for the above described thick coatings by a careful definition of the microstructural features required to bear service conditions and by defining the optimal compositions to achieve the desired properties. Primary carbide distribution and size as well as steel matrix composition are the main microstructural features that will be evaluated in order to fine tune coating performance in terms of toughness and hardness. The experimental part of the investigation here presented will be mainly concerned to laboratory casting the above alloys and to assess their microstructure and properties.
机译:在许多工业领域中,用于重型应用的厚涂层是通过在关键表面上生成铁基复杂合金的硬层而制成的。这些涂层的成分和结构必须仔细调整,以便在固化后产生无缺陷的层并满足预期的使用条件。本研究旨在通过仔细定义承受使用条件所需的微观结构特征并通过定义实现所需性能的最佳组成,来研究和开发用于上述厚涂层的改进的铁基合金。主要的显微组织特征是主要的碳化物分布和尺寸以及钢基质成分,将对其进行评估,以便根据韧性和硬度来微调涂层性能。这里介绍的研究的实验部分将主要涉及实验室铸造上述合金并评估其微观结构和性能。

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