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1. Reciprocating dry sliding friction and wear behavior of graphene oxide-reinforced Ni-Co composite coatings NSTL国家科技图书文献中心

Duru, Erhan |  Akyuz, Malik... -  《Diamond and Related Materials》 - 2025,154 - 112210~ - 共15页

摘要:, nano-hardness, elastic modulus, friction, and wear |  in wear rate compared to pure Ni-Co coatings. These |  composite coatings for applications requiring high wear | Graphene oxide (GO)-reinforced Ni-Co composite |  coatings were fabricated on medium carbon steel
关键词: Tribological behavior |  Composite coating |  Electrodeposition |  Graphene oxide |  Ni-Co

2. The Reciprocating Wear Response of Additively Manufactured, Al_2O_3-Based Ceramics Produced Using Digital Light Processing NSTL国家科技图书文献中心

A. M. David |  M. Y. Amegadzie... -  《Proceedings of the 63rd Conference of Metallurgists,vol.1》 -  Conference of Metallurgists - 2025, - 11~14 - 共4页

摘要: (A1_2O_3) for evaluating their reciprocating wear |  behavior. The investigation focused on the influence of |  underwent wear tests perpendicular to the individual |  layers. Wear tests, conducted with a β-Si_3N_4 counter |  manufacturing (AM) technologies for producing ceramic wear
关键词: Alumina |  Vat polymerization |  Reciprocating wear |  Tribolayer

3. Tribological and mechanical behaviors of Fe3O4NPs reinforced UHMWPE biocomposite NSTL国家科技图书文献中心

Wafa Khairallah |  Riadh Autay... -  《Journal of Thermoplastic Composite Materials》 - 2025,38(May.) - 1950~1967 - 共18页

摘要:. Wear and friction behaviors were studied using a |  reciprocating pin-on-disc tribometer under a sliding speed of | . Mechanical behavior was investigated using tensile and |  surface morphology and to investigate wear mechanisms |  UHMWPE matrix hardness and wear resistance. A maximum
关键词: Ultra high molecular weight polyethylene |  magnetite nanoparticles |  wear |  coefficient of friction |  mechanical properties

4. Microstructural analysis and tribological characteristics of thermally sprayed Co-Ni-O ternary oxide coatings NSTL国家科技图书文献中心

Roy, Amit |  Jalilvand, Vahid... -  《Journal of the European Ceramic Society》 - 2025,45(1) - 116850~ - 共17页

摘要: behavior of the thermally sprayed Co0.75Ni0.25O and |  reciprocating friction tests were performed against an Al2O3 |  friction and wear of Co0.75Ni0.25O oxide coatings did not |  temperature conditions, whereas the friction and wear of the |  subsurface microstructure induced by wear, and the wear
关键词: Co0.75Ni0.25O |  Co0.5Ni0.5O |  Ternary oxides |  HVOF |  Tribology |  Elevated temperatures

5. The wear behavior of (Ti, W, Mo, Cr) (C, N)-based cermet under a wide load range NSTL国家科技图书文献中心

Zheng, Ziyuyang |  Wang, Lu... -  《International Journal of Refractory Metals & Hard Materials》 - 2025,129 - 共12页

摘要: behavior and mechanisms under reciprocating sliding |  investigate the unlubricated tribological behavior and wear | , and other wear- resistant parts. However, their wear | )(C, N)-based cermet exhibits excellent wear | . The low friction coefficient and wear rate are
关键词: (Ti, W, Mo, Cr) (C, N)-based cermet |  Dry sliding |  Tribological behavior |  Wear mechanism

6. Improving the Wear Behavior of As-Cast B319 Aluminum Alloy Through Graphene Addition NSTL国家科技图书文献中心

Lava Kumar Pillari |  Kyle Lessoway... -  《Proceedings of the 63rd Conference of Metallurgists,vol.2》 -  Conference of Metallurgists - 2025, - 1623~1625 - 共3页

摘要: in the wear behavior of the B319 alloy. |  friction and wear response of the resultant castings were |  studied under reciprocating dry sliding conditions. The | -0.3 wt.% graphene composite exhibited the best wear | . The dominant wear mechanisms in the B319 alloy were
关键词: B319 alloy |  Graphene |  Wear

7. Research on the synergistic damage behavior of tribocorrosion of CoCrFeNi-X (Ti, Mn, Mo, Al) high-entropy alloys NSTL国家科技图书文献中心

Yang, Xianchen |  Li, Xinmei -  《Tribology International》 - 2025,201 - 共19页 - 被引量:1

摘要:This study investigates the damage behavior of |  under reciprocating friction in a 3.5 wt% NaCl |  analyze the synergistic effects of corrosion and wear |  potential difference between the wear scar region and the |  corrosion significantly enhances the wear volume.
关键词: HEAs |  Tribocorrosion |  Synergies |  Worn area |  Galvanic corrosion

8. Tribological behavior of the carbon fiber-reinforced epoxy resin matrix composite with orderly arranged carbon nanotubes NSTL国家科技图书文献中心

Li, Wei |  Li, Zhen... -  《Tribology International》 - 2025,201 - 共14页 - 被引量:1

摘要:In order to improve the wear resistance of |  34.44% decrease in wear rate of the CF/EP composite | , including time, load, and reciprocating frequency, the |  variations in the characteristics and wear forms of the |  tribological behavior of the C-CNTs/CF/EP composite.
关键词: Carbon fiber |  Carbon nanotubes |  Resin matrix composite |  Tribological behavior

9. Effect of SiC particle size and content on the mechanical and tribological properties of porous Si_3N_4-SiC composites fabricated following a facile low-temperature processing route NSTL国家科技图书文献中心

Siddharth |  Sakshi Tiwari... -  《CERAMICS INTERNATIONAL》 - 2025,51(14) - 19508~19523 - 共16页

摘要: toughness, and reciprocating dry sliding wear behavior |  the wear behavior was performed, and the primary |  loads of 5 and 15 N. The friction and wear properties |  MPa√m, wear rate of ~1 × 10~(- 8) mm~3/N-m, and a |  wear mechanisms were identified.
关键词: porous Si_3N_4-SiC composites |  low-temperature processing |  hardness |  fracture toughness |  tribological properties

10. High entropy (Hf0.2Zr0.2Ta0.2Ti0.2Nb0.2)B2 ceramics and its tribological properties NSTL国家科技图书文献中心

Qureshi, Tabrez |  Khan, Mohammad Mohsi...... -  《CERAMICS INTERNATIONAL》 - 2025,51(5) - 6379~6396 - 共18页

摘要: relative density of 92.18 %. Linear reciprocating wear |  sintering to investigate its tribological behavior under |  N, revealing load- sensitive frictional behavior |  0.20 across 8500 cycles. Notably, the wear rate |  mechanical stress. Wear mechanisms transitioned from
关键词: High entropy ceramics |  Spark plasma sintering |  High entropy borides |  Fretting wear and friction analysis |  Tribo-oxidative layer
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