ISSN   1004-0595

CN  62-1224/O4

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基于微观分析的火炮挡弹装置磨损失效机理研究

Wear Mechanism of Gun Cartridge Stop Device Based on Microanalysis

  • 摘要: 针对PCrMo钢在火炮上应用较多但因零部件磨损失效造成系统故障不断的问题,利用现有摩擦磨损微观分析方法和技术,对在火炮射击及训练等特殊工况下,零部件磨损失效机理及规律进行研究.以挡弹装置中的挡弹板轴为研究对象,利用显微硬度计及扫描电镜对零件表面和剖面进行硬度测量与结构组织微观分析,结果表明零件表面磨损区域硬度明显高于未磨损区域,且磨损区域表层剖面硬度增大;依据表面形貌可将磨损区域划分为以剥落为主的初始磨损区、以切削为主的中间磨损区和磨损较轻的末端磨损区.零件磨损失效机理为以冲击滑动耦合磨损和磨粒磨损为主的磨损机制造成表面材料的损失累积与加工硬化.

     

    Abstract: PCrMo steel is applied to many gun parts. Aiming at reducing wear of parts, wear analysis were conducted to study wear mechanism and law under the shooting and training conditions. Taking the cartridge stop shaft of cartridge stop device as the object, the hardness of both surface and section were measured by a microhardness instrument and micromechanisn were analyzed by scanning electron microscopy. The results show that the surface hardness of worn area was obviously higher than that of unworn area, and the hardness of sectioned surface layer was high. The worn area could be divided into first worn area, middle worn area and end worn area in viewing the surface morphology. The wear forms of first worn area, middle worn area and end worn area were severe surface flaking, severe cutting and mild wear. The wear mechanism was both impact-sliding wear and abrasive wear resulting in surface material loss and work hardening.

     

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