[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Liu et al., 2024 - Google Patents

Graphite reinforced polymers for sealing geothermal wells

Liu et al., 2024

View HTML
Document ID
12302579667294140448
Author
Liu S
Taleghani A
Tabatabaei M
Publication year
Publication venue
Composites Part B: Engineering

External Links

Snippet

The objective of this study is to develop high-temperature resistant polymers for sealing geothermal wells by reinforcing inexpensive rubber with surface-treated graphite particles. We respectively treated two types of graphite particles, small-size lamellar graphite (SFG15) …
Continue reading at www.sciencedirect.com (HTML) (other versions)

Classifications

    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUSE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
    • C08K3/00Use of inorganic ingredients
    • C08K3/02Elements
    • C08K3/04Carbon
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUSE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
    • C08K3/00Use of inorganic ingredients
    • C08K3/34Silicon-containing compounds
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUSE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
    • C08K5/00Use of organic ingredients
    • C08K5/0008Organic ingredients according to more than one of the "one dot" groups of C08K5/01 - C08K5/59
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUSE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
    • C08K7/00Use of ingredients characterised by shape
    • C08K7/22Expanded, porous or hollow particles
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08JWORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G
    • C08J5/00Manufacture of articles or shaped materials containing macromolecular substances

Similar Documents

Publication Publication Date Title
Xing et al. Multifunctional properties of graphene/rubber nanocomposites fabricated by a modified latex compounding method
Lorenz et al. Advanced elastomer nano-composites based on CNT-hybrid filler systems
Yang et al. Compatibilization of immiscible nylon 6/poly (vinylidene fluoride) blends using graphene oxides
Nasti et al. Double percolation of multiwalled carbon nanotubes in polystyrene/polylactic acid blends
Zhang et al. Enhanced compatibility and mechanical properties of carboxylated acrylonitrile butadiene rubber/styrene butadiene rubber by using graphene oxide as reinforcing filler
Liu et al. Graphite reinforced polymers for sealing geothermal wells
Bouhfid et al. Effect of graphene nanosheets on the mechanical, electrical, and rheological properties of polyamide 6/acrylonitrile–butadiene–styrene blends
George et al. Acrylonitrile‐based polymer/graphene nanocomposites: a review
Boonbumrung et al. Reinforcement of multiwalled carbon nanotube in nitrile rubber: in comparison with carbon black, conductive carbon black, and precipitated silica
Psarras et al. HNBR and its MWCNT reinforced nanocomposites: Crystalline morphology and electrical response
Elango et al. The effect of high loaded multiwall carbon nanotubes in natural rubber and their nonlinear material constants
Azizli et al. Compatibilizer/graphene/carboxylated acrylonitrile butadiene rubber (XNBR)/ethylenepropylenediene monomer (EPDM) nanocomposites: morphology, compatibility, rheology and mechanical properties
Hajibaba et al. Effect of single-walled carbon nanotubes on morphology and mechanical properties of NBR/PVC blends
Baniasadi et al. High‐performance and biobased polyamide/functionalized graphene oxide nanocomposites through in situ polymerization for engineering applications
Prakash et al. Effect of modified nanographene oxide loading on the swelling and compression set behavior of EPDM/SBR nano-composites
Esmaeili et al. Synergistic effects of double-walled carbon nanotubes and nanoclays on mechanical, electrical and piezoresistive properties of epoxy based nanocomposites
Mai et al. Oriented poly (lactic acid)/carbon nanotube composite tapes with high electrical conductivity and mechanical properties
Moni et al. Influence of exfoliated graphite inclusion on the thermal, mechanical, dielectric and solvent transport characteristics of fluoroelastomer nanocomposites
Mensah et al. Effects of Graphene Oxide and Reduced Graphene Oxide on the Mechanical and Dielectric Properties of Acrylonitrile‐Butadiene Rubber and Ethylene‐Propylene‐Diene‐Monomer Blend
Krishnamurthy et al. Dynamic mechanical behavior, solvent resistance and thermal degradation of nitrile rubber composites with carbon black‐halloysite nanotube hybrid fillers
Liu et al. Surface‐modified graphite based polymer nanocomposites for high‐temperature geothermal applications
Yuan et al. Synergistic reinforcing and stabilizing effect of carbon black–zinc dimethacrylate on the ethylene propylene diene monomer and improving mechanism of sealing resilience
Guarda et al. Mechanical characterization of polymer-grafted graphene PEG nanocomposites using molecular dynamics
Elhaouzi et al. Hyperelastic behavior and dynamic mechanical relaxation in carbon black‐polymer composites
Yang et al. Mechanical and functional properties of composites based on graphite and carboxylated acrylonitrile butadiene rubber