New Copper-Based Composites for Heavy-Loaded Friction Units

被引:0
作者
T. A. Roik
O. A. Gavrysh
Iu. Iu. Vitsiuk
O. I. Khmiliarchuk
机构
[1] National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”,
来源
Powder Metallurgy and Metal Ceramics | 2018年 / 56卷
关键词
bearing bushing; copper; composite material; solid lubricant; technology; friction films; wear resistance; chassis;
D O I
暂无
中图分类号
学科分类号
摘要
Constraints in the use of bushings produced of the new copper-based bearing composite material alloyed with nickel and molybdenum and containing the additives of CaF2 (DN5M3KF9) solid lubricant are analyzed. The structure and tribotechnical properties are examined during reverse friction under heavy load (temperature 400–600°C and load up to 6.0 MPa in air). The study focuses on the distribution of CaF2 in a composite with Cu–Ni–Mo matrix, the role of calcium fluoride in the self-lubrication of the material, and the distribution of chemical elements of friction pair and CaF2 in the friction zone under extreme operating conditions. It is shown that the solid lubricant is evenly distributed along the contact surfaces as it envelops the entire friction zone during reverse friction under heavy load. It is established that tribofilms formed in the presence of CaF2 solid lubricant provide high wear resistance. Also, the new material possesses high thermal conductivity. These properties extend the application of new cooper-based composite bearing bushings in a chassis.
引用
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页码:516 / 522
页数:6
相关论文
共 38 条
[1]   New Copper-Based Composites for Heavy-Loaded Friction Units [J].
Roik, T. A. ;
Gavrysh, O. A. ;
Vitsiuk, Iu. Iu. ;
Khmiliarchuk, O. I. .
POWDER METALLURGY AND METAL CERAMICS, 2018, 56 (9-10) :516-522
[2]   Contribution Self-lubrication Mechanism of New Antifriction Copper-Based Composites in the Vehicles' Heavy-Loaded Friction Units [J].
Jamroziak, Krzysztof ;
Roik, Tetiana .
PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON FRACTURE, FATIGUE AND WEAR, FFW 2021, 2022, :273-283
[3]   Tribotechnical Properties of Copper-Based Antifriction Composites for High-Speed Friction Units of Printing Machines [J].
Roik, T. A. ;
Gavrysh, O. A. ;
Maistrenko, Yu. Yu. .
POWDER METALLURGY AND METAL CERAMICS, 2024, 63 (1-2) :69-81
[4]   Effect of CaF2 surface layers on the friction behavior of copper-based composite [J].
Konopka, K. ;
Roik, T. A. ;
Gavrish, A. P. ;
Vitsuk, Yu. Yu. ;
Mazan, T. .
POWDER METALLURGY AND METAL CERAMICS, 2012, 51 (5-6) :363-367
[5]   Effect of CaF2 surface layers on the friction behavior of copper-based composite [J].
K. Konopka ;
T. A. Roik ;
A. P. Gavrish ;
Yu. Yu. Vitsuk ;
T. Mazan .
Powder Metallurgy and Metal Ceramics, 2012, 51 :363-367
[6]   Physicochemical Tribomechanics of Antifriction Materials Operating in Heavy-Loaded Friction Pairs in Active Lubricating Media [J].
L. I. Kuksenova ;
V. I. Savenko .
Journal of Friction and Wear, 2023, 44 :333-345
[7]   Physicochemical Tribomechanics of Antifriction Materials Operating in Heavy-Loaded Friction Pairs in Active Lubricating Media [J].
Kuksenova, L. I. ;
Savenko, V. I. .
JOURNAL OF FRICTION AND WEAR, 2023, 44 (06) :333-345
[8]   Carbon diffusion in copper-based metal matrix composites [J].
Dorfman, S ;
Fuks, D .
SENSORS AND ACTUATORS A-PHYSICAL, 1995, 51 (01) :13-16
[9]   The synergistic effect of carbon materials on properties of copper-based friction materials [J].
Xueyang, Lin ;
Rutie, Liu ;
Lin, Wang ;
Zhengzhou, Li ;
Xiang, Xiong ;
Ning, Liao ;
Jie, Chen .
INDUSTRIAL LUBRICATION AND TRIBOLOGY, 2021, 73 (01) :170-176
[10]   SYNTHESIS OF COPPER-BASED MULTI-WALLED CARBON NANOTUBE COMPOSITES [J].
Domagala, K. ;
Borlaf, M. ;
Kata, D. ;
Graule, T. .
ARCHIVES OF METALLURGY AND MATERIALS, 2020, 65 (01) :157-162