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首页> 外文期刊>Thermal engineering >Determination of Characteristics of Erosion Wear of Grade 15Kh11MF Steel with the Cr-CrC Ion-Plasma Sprayed Coating
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Determination of Characteristics of Erosion Wear of Grade 15Kh11MF Steel with the Cr-CrC Ion-Plasma Sprayed Coating

机译:Cr-CrC离子等离子喷涂涂层测定15Kh11MF级钢的冲蚀磨损特性

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摘要

Results of investigations of the influence of a Cr-CrC ion-plasma sprayed protective coating on characteristics and the intensity of erosion wear of grade 15Kh11MF steel at a gas-abrasive flow incidence angle of 30° and an experimental specimen (target) surface temperature of 550℃ are presented. The Cr-CrC ion-plasma sprayed coating was formed in a Gefest vacuum installation by magnetron deposition. Investigations of the formed coating were carried out using a research and experimental facility complex that provided the study of the composition and structure of the coating, measurement of its thickness, roughness, microhardness, and determination of its relative resistance at the combined action of the gas-abrasive flow and high temperatures. The Cr-CrC coating with a thickness of 6.5 ± 0.3 μm has a finegrained structure with grains with dimensions of 20-40 nm and contains layers of chromium and chromium carbide. The main coating element is chromium. Its content in carbide layers is 89.4-91.9% at a carbon content of 6.8-9.5%. The coating microhardness is H_(0.05) = 1350 ± 50 HV. The maximum wear of the 15Kh11MF steel target is observed at the angle of the gas-abrasive flow incidence that is close to 30° (30 ± 7°). With this incidence angle and a target surface temperature of 550℃, the Cr-CrC coating extends the term to the surface failure and the appearance of a clear abrasive trace no less than four times. The coating failure has a local character, i.e., the target surface forms islands with the coating, between which the intensive wear of the base material occurs.
机译:Cr-CrC离子等离子喷涂保护涂层对15Kh11MF级钢在气体磨蚀流入射角为30°且实验样品(目标)表面温度为15Kh11MF时的性能和腐蚀磨损强度的影响的研究结果。提出了550℃。 Cr-CrC离子等离子喷涂涂层是在Gefest真空设备中通过磁控管沉积形成的。使用研究和实验设施综合体对形成的涂层进行研究,该综合体提供了涂层组成和结构,厚度,粗糙度,显微硬度的测量以及在气体联合作用下相对电阻的确定的研究。 -磨料流和高温。厚度为6.5±0.3μm的Cr-CrC涂层具有细晶粒结构,晶粒尺寸为20-40 nm,并包含铬和碳化铬层。主要涂层元素是铬。在碳含量为6.8-9.5%时,其在碳化物层中的含量为89.4-91.9%。涂层的显微硬度为H_(0.05)= 1350±50 HV。在接近30°(30±7°)的气体磨料流入射角处观察到15Kh11MF钢靶的最大磨损。在这种入射角和550℃的目标表面温度下,Cr-CrC涂层将这一术语扩展到表面破坏,并且清晰的研磨痕迹的出现不少于四次。涂层失效具有局部特征,即,目标表面与涂层形成岛,在它们之间发生基础材料的强烈磨损。

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  • 来源
    《Thermal engineering》 |2016年第6期|449-453|共5页
  • 作者单位

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

    Moscow Power Engineering Institute (MPEI, National Research University), ul. Krasnokazarmennaya 14, Moscow, 111250 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    abrasive wear; gas-abrasive flow; incidence angle; ion-plasma sprayed coating; incubation period; abrasive resistance;

    机译:磨料磨损气体研磨流入射角离子等离子喷涂涂层;潜伏期;耐磨性;

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