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Application of chemical-thermal treatment for hardening of sprayed with supersonic coatings

机译:化学热处理在超音速涂层喷涂硬化中的应用

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In the global economy there is a significant increase in the scale of traffic, the implementation of which directly depends on the quality of transport equipment. Therefore, the work considers new technologies for hardening by modifying the working surfaces of parts of transport machines.The most effective ion-beam nitriding and thermodiffusion carbonitriding were selected for the modification of sputtered steel coatings. Experiments have shown that as the temperature of the nitriding process increases, the depth of the modified layer increases, and the microhardness of the layer also increases. The main phases are nitrides. The increased wear resistance of the nitrided layer is revealed. Carbonation leads to the formation of a modified layer with a thickness of 150-200 μm and a microhardness of 6500-7000 MPa. The main phase is carbonitrides. To regulate the depth and hardness of the layer, the technology of nitrocarburization has been changed by increasing the temperature and changing the composition of the medium. High adhesion strength was obtained.
机译:在全球经济中,交通规模显着增加,其实施方式直接取决于运输设备的质量。因此,这项工作考虑了通过修改运输机械零件的工作表面来硬化的新技术。选择了最有效的离子束渗氮和热扩散碳氮共渗技术来改性溅射钢涂层。实验表明,随着氮化过程温度的升高,改性层的深度增加,并且该层的显微硬度也增加。主要相是氮化物。揭示了氮化层的增加的耐磨性。碳化导致形成厚度为150-200μm且显微硬度为6500-7000 MPa的改性层。主要相是碳氮化物。为了调节涂层的深度和硬度,已经通过提高温度和改变介质的成分来改变碳氮化技术。获得高的粘合强度。

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