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EVALUATION OF DLC COATING FOR PARTS OF WEAPONS AND MILITARY EQUIPMENT

机译:评价DLC涂层对武器和军事装备部分的评价

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The article deals with tribological evaluation of DLC coating. This coating is deposited on a material which, due to its mechanical properties, is suitable for components of weapons and military equipment. The results of the Department of Engineering of the Faculty of Military Technology of the University of Defense in Brno in the field of plasma nitriding are used in this work. Plasma nitriding technology has been found to have a positive effect on the performance of components operating under extreme conditions. One of the significant surface changes is the increase in surface hardness. Further increases wear resistance and corrosion resistance. By setting the parameters of plasma nitriding technology appropriately, fatigue life can be increased.Deposition of the DLC coating by PVD technology on a tempered or plasma nitrided surface results in qualitative changes on the surface of the component. Evaluation of tribological properties such as coefficient of friction or wear coefficient can be verified by adjusting surface treatment technologies to specific applications, eg in armaments production. The paper presents the results of tribological properties of the surface of the DLC coating deposited on substrate of the heat-treated steel 42CrMo4. The comparison was done with the deposition of a DLC coating on the surface substrate of a steel 42CrMo4 that has been plasma nitrided, like a duplex system. Tribological properties such as friction coefficient and wear coefficient were measured by a Tribolab UMT-3 equipment. Tribological tests such as Scratch test and Ball on Disc were performed on this device.
机译:本文涉及DLC涂层的摩擦学评价。将该涂层沉积在材料上,由于其机械性能,适用于武器和军用设备的组件。在这项工作中使用了在氮化领域的布尔诺军队军事技术教师工程系的结果。已发现等离子体氮化技术对在极端条件下运行的部件的性能产生积极影响。其中一个重要的表面变化是表面硬度的增加。进一步提高耐磨性和耐腐蚀性。通过适当地设定等离子体氮化技术的参数,可以增加疲劳寿命。通过PVD技术在回火或等离子体氮化表面上掺入DLC涂层导致组分表面的定性变化导致定性变化。可以通过将表面处理技术调节到特定应用,例如在制造生产中,通过将表面处理技术调节到特定应用来验证摩擦或磨损系数的摩擦或磨损系数的评估。本文介绍了沉积在热处理钢42crmo4的基材上的DLC涂层表面的摩擦学性质的结果。在钢42crmo4的表面基板上沉积具有等离子体氮化的表面基板的DLC涂层进行比较,如双工系统。摩擦系数和磨损系数的摩擦学特性由TriceLab UMT-3设备测量。在该装置上执行摩擦擦拭试验和球的摩擦测测试。

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