Tagelsir et al., 2018 - Google Patents
Swelling and tribological properties of melt-mixed fluoroelastomer/nitrile rubber blends under crude oilTagelsir et al., 2018
View PDF- Document ID
- 18382633266868804770
- Author
- Tagelsir Y
- Li S
- Lv X
- Wang S
- Wang S
- Osman Z
- Publication year
- Publication venue
- Materials Research Express
External Links
Snippet
The melt-mixed fluoroelastomer (FKM)/nitrile rubber (NBR) blends of (90/10, 80/20, 70/30, 60/40 and 50/50) ratios with same hardness were prepared, and their swelling and tribological properties under crude oil were investigated for the purpose of developing high …
- 229920000459 Nitrile rubber 0 title abstract description 111
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Tagelsir et al. | Swelling and tribological properties of melt-mixed fluoroelastomer/nitrile rubber blends under crude oil | |
Sudarsan | Materials for hostile chemical environments | |
Caldona et al. | On the enhanced corrosion resistance of elastomer-modified polybenzoxazine/graphene oxide nanocomposite coatings | |
Qi et al. | Creep and recovery behaviors of magnetorheological elastomer based on polyurethane/epoxy resin IPNs matrix | |
Solovyeva et al. | Current downhole corrosion control solutions and trends in the oil and gas industry: a review | |
Liu et al. | Synthesis and characterization of nano-SiO2@ octadecylbisimidazoline quaternary ammonium salt used as acidizing corrosion inhibitor | |
Tian et al. | Study of shear-stiffened elastomers | |
Wei et al. | Novel self‐assembling polymeric system based on a hydrophobic modified copolymer: formulation, rheological characterization, and performance in enhanced heavy oil recovery | |
Khan et al. | Tribological properties of glass fiber filled polytetrafluoroethylene sliding against stainless steel under dry and aqueous environments: enhanced tribological performance in sea water | |
Pulikkalparambil et al. | Thermally mendable and improved hydrophilic bioepoxy/PEG-PPG-PEG blends for coating application | |
Zheng et al. | Graphene-based aqueous drilling muds as efficient, durable, and environmentally friendly alternatives for oil-based muds | |
Johari et al. | Shear band formation in magnetorheological elastomer under stress relaxation | |
Tagelsir et al. | Effect of oxidized and fluorinated MWCNTs on mechanical, thermal and tribological properties of fluoroelastomer/carbon black/MWCNT hybrid nanocomposite | |
Li et al. | Tribological and corrosion behaviors of fluorocarbon coating reinforced with sodium iron titanate platelets and whiskers | |
Irfan et al. | Long-term stress relaxation behavior of Polyaniline-EPDM blends using the time-temperature-strain superposition method | |
Scott et al. | Evaluating the performance of designed terpolymers for polymer flooding | |
Song et al. | Tribological properties of swollen nitrile rubber under dry and wet sliding conditions | |
Bigdeli et al. | A comparative study of mechanical properties and corrosion behavior of fusion-bonded epoxy and liquid epoxy coatings and their service life in drill pipe applications | |
Song et al. | Study on dynamic mechanical properties of magnetorheological elastomers based on natural rubber/thermoplastic elastomer hybrid matrix | |
Ma et al. | Effect of compatibilizer concentration on rheological behavior, morphologies, and mechanical properties of PVDF/TPU blends | |
Ma et al. | Rheological behavior and morphologies of reactively compatibilized PVDF/TPU blends | |
Renner et al. | Corrosion-resistant metal-ceramic composite coatings for tribological applications | |
Liu et al. | In situ regulating of surface morphologies, anti-corrosion and tribological properties of epoxy resin coatings by heat treatment | |
Niu et al. | The tribological properties of Ni3Si alloys with Ti addition against different counterface materials under seawater condition | |
Lan et al. | Synergistic Effect of Electrocatalytic Characteristics of a Redox Segment and Gas Barrier of rGO to Significantly Replace the Loading of Zinc Dust in Solvent-Based Epoxy Composites Applied for Heavy-Duty Anticorrosion Coatings |