Tribological and thermal characteristics of reduced phosphorus plain ZDDP oil in the presence of PTFE/FeF3/TiF3 under optimized extreme loading condition and a break in period using two different rotational speeds
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- Type
- article
- Published
- 2013-04-01
- Cited by
- 14
- References
- 8
- OpenAlex
- https://openalex.org/W2093620968
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136967322
Keywords
Materials science, Tribology, Lubrication, Coating, Zinc
References
- Interactions of fluorinated catalyst and polutetrafluoroethylene in two different plain zinc dialkyldithiophosphate oils and one fully formulated oil using design of experiment
- Introduction to Design of Experiments
- The tribological behaviors of 2-mercaptobenzoxazole derivatives as additives in liquid paraffin
- The History and Mechanisms of ZDDP
- Effect of contact load and lubricant volume on the properties of tribofilms formed under boundary lubrication in a fully formulated oil under extreme load conditions
- Fluorinated mix in plain ZDDP oil and commercial oil using design of experiment analysis of all interactions and fundamental study of fluorinated mix in plain ZDDP oils under 2 different r/min test cycles and extreme boundary lubrication
- The effect of FeF3/TiF3 catalysts on the thermal and tribological performance of plain oil ZDDP under extreme pressure loading
- Performance testing and analysis of anti-wear additives in engine oil for reducing phosphorus content and improving tail pipe emissions
- A Brief Introduction to Design of Experiments
Cited by
- The Effect of Phosphorus Exposure on Diesel Oxidation Catalysts—Part I: Activity Measurements, Elementary and Surface Analyses
- Role of TiF3 catalyst in the tribological properties of biofuel soot-contaminated liquid paraffin
- Phosphate Esters, Thiophosphate Esters and Metal Thiophosphates as Lubricant Additives
- Towards the Minimization of Friction and Wear Using Fluorinated Additives under Extreme Boundary Lubrication in Fully Formulated Oil
- The Impact of Surface Roughness and PTFE/TiF3/FeF3 Additives in Plain ZDDP Oil on the Friction and Wear Behavior Using Thermal and Tribological Analysis under Extreme Pressure Condition
- Friction and wear reductions in fluorinated plain and fully formulated oils through enhanced heating time using moderate loading under boundary lubrication conditions
- Tribofilm formation and characterization of lubricating oils with biofuel soot and inorganic fluorides
- Ionic liquid stabilized nanoparticle additive in a steel-ceramic contact for extreme pressure application
- Reduced friction and wear enabled by arc-discharge method-prepared 3D graphene as oil additive under variable loads and speeds
- Improvement of the lubrication properties of grease with Mn3O4/graphene (Mn3O4#G) nanocomposite additive
- Separating mechanism of dandelion (Taraxacum officinale) seed: Results from model analysis and separation force measurement
- Experimental Investigations on the Effect of Surface Pocket in a Powder-Lubricated Journal Bearing on Friction and Vibration
- Impact of Fatty Triamine on Friction Reduction Performance of MoDTC Lubrication Additive
- Effects of Spectrum Loading and break in period using molybdenum disulphide (MoS2) and zinc dialkyl dithiophosphate (ZDDP) as EP additives in lithium based grease
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