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首页> 外文期刊>Revista de metalurgia >Evaluación de las transformaciones estructurales en recubrimientos de WC10Ni depositados por laser cladding sobre acero para herramienta EN 12379
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Evaluación de las transformaciones estructurales en recubrimientos de WC10Ni depositados por laser cladding sobre acero para herramienta EN 12379

机译:评估在EN 12379工具钢上通过激光熔覆沉积的WC10Ni涂层的结构转变

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Carbide metal matrix composite materials are known for a high resistance to all types of wear. It is due to a beneficial combination of properties given by hard phase particles included in a tough matrix. Different kinds of those materials have been employed in the development of new high properties cutting tools. Laser cladding (LC) technique allows obtaining an accurate defect-free coating with a low thermal affectation of the component. But in the case of WC cermet coatings due to its high laser absorption and the different mechanical and thermal properties between substrate and coating can appear a wide range of different defects as cracks, pores, massive carbide dilution and lacks of adherence. The aim of the present work is to study the metallurgical transformations during LC process of WC cermet coating on cold work tool steel substrate (EN 12379). Also it has been related process parameters with defects generation. Microstructure and composition of the coating and the heat affected zone have been analysed. Microhardness evolution profile has been obtained. Results show that although process parameters control reduce the generation of defects, in the deposition of overlapped layers appear different metallurgical transformations related with massive WC decomposition and the diffusion of alloying elements from substrate to the coating.
机译:硬质合金基体复合材料以其对各种磨损的高耐受性而著称。这是由于韧性基质中包含的硬相颗粒所赋予的性能的有益结合。在新的高性能切削刀具的开发中已经采用了不同种类的那些材料。激光熔覆(LC)技术可在不影响组件的情况下获得准确无缺陷的涂层。但是就WC金属陶瓷涂层而言,由于其较高的激光吸收率以及基材与涂层之间不同的机械和热性能,可能会出现各种不同的缺陷,例如裂纹,气孔,大量碳化物稀释和缺乏附着力。本工作的目的是研究在冷作模具钢基材上进行WC金属陶瓷涂层的LC工艺过程中的冶金转变(EN 12379)。此外,它已与缺陷生成相关的工艺参数。已经分析了涂层和热影响区的微观结构和组成。已经获得了显微硬度演变曲线。结果表明,尽管工艺参数控制可减少缺陷的产生,但在重叠层的沉积中会出现与大量WC分解以及合金元素从基底到涂层的扩散有关的不同冶金转变。

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