Dissertation > Excellent graduate degree dissertation topics show

Research on the Charged Characteristics of Nanoparticles and Properties of Polyethylene Nanocomposites

Author: ChenTao
Tutor: ZhangWenLong
School: Harbin University of Science and Technology
Course: Polymer Chemistry and Physics
Keywords: Zeta potential high voltage direct current cable nanocomposite modification low density polyethylene
CLC: O632.12
Type: Master's thesis
Year: 2014
Downloads: 8
Quote: 0
Read: Download Dissertation

Abstract


In recent years, the requirements for power system of high voltage directcurrent cable (HVDC) are increasingly critical accompanying with the rapiddevelopment of HVDC in domestic. Space charges can be effectively suppressedand the insulation properties and mechanical properties can be improved in theinsulator layer by mixing low density polyethylene (LDPE) with inorganicnanoparticles. The particularly important work is to choose different kinds ofnanoparticles to prepare the polyethylene nanocomposites with high dielectricproperties, it has become the focus of attention. Based on this, the paper focusedon the preparation of polyolefin nanocomposite latex with high dielectricproperties, the research on the relationships between charged characteristics ofinorganic nanoparticles and electrical characteristics and mechanical propertiesof polyethylene nanocomposite latex.The charged characteristics of inorganic nanoparticles are measured by Zetapotential. Given by the Zeta potential of nanoparticles, they were measured withthe ZetaProbe potential tester for the first time. They were measured in liquidparaffin owing to the similar structure between the liquid paraffin andpolyethylene. In the paper, four kinds of liquid paraffin suspension solutionswere made by four different kinds of nanoparticles.The results showed that Zeta potentials of nanoparticles modified bycoupling agent were larger than unmodified nanoparticles: Zeta potentials of fourkinds of50nm nano-SiO2, nano-MgO, nano-TiO2and nano-BaTiO3particleswere-41.6mV,1.80mV,5.80mV,-0.67mV respectively. Zeta potentials of themodified nano-SiO2, MgO, TiO2, and BaTiO3particles in the liquid paraffin are-53.40mV,10.12mV,6.40mV,6.59mV respectively. The results also revealed that The Zeta potentials were lower due to the increasing of the size of nano-SiO2particles, their Zeta potentials were-68.40mV,-68.20mV,-53.40mVrespectively when the size of nano-SiO2particles were at15nm,30nm,50nm.Zeta potentials indicted a decreasing trend after the first increase trend when thecontents of nano-SiO2particles was increased, their zeta potentials were-58.30mV,-68.40mV,-36.40mV respectively when the contents of15nm-SiO2particles was at1wt%,2wt%and3wt%.Comparing with the unmodified nanocomposites, the dispersion of thepolyethylene nanocomposites prepared by the four modified nanoparticles wasimproved, the electrical and mechanical properties are also improved to somedegree, while the changes of Zeta potential remained the same. The Zetapotential increases with the increment of the particle size of nano-SiO2while theelectrical and mechanical properties of the polyethylene nanocompositesincreased. The Zeta potential showed a decreasing trend after the first increaseswhen the content of the nano-SiO2was increased, the electrical and mechanicalproperties of the polyethylene nanocomposites increased.Polyethylene nanocomposites with optimum comprehensive performancewas obtained when the size of the SiO2particle size is15nm and the content inpolyethylene is2wt%, and its tensile strength of13.9N/mm2, elongation atbreak of957.2%, work of fracture of14.3J, elastic modulus volume of116.3N/mm2, volume resistivity of20.8×1014·m, the breakdown field strength of30.73kV/mm.

Related Dissertations

  1. Optimizition of Compositions and Processing Parameters and Wear Properties of Cemented Carbides YG11R Modified by Nanosized Rare Earth,TG135.5
  2. Research of High Speed Image Pre-processing System Based on FPGA,TP391.41
  3. First- principles calculations of doped anatase titanium dioxide photocatalytic properties,O643.36
  4. Synthesis of Polysulfones and Modification for Epoxy Adhesives,TQ433.437
  5. Synthesis and Performance Study of Bisphenol AP-based Polybenzoxazines,TQ320.1
  6. Preparation of Crop Stalk-Based Sorption Materials with High Performances and Their Applications for Pah Removal from Water,X712
  7. Synthesis and Biocompatibility of different types of hydrophilic surface - modified polyurethane,R318.08
  8. Hydrophilic structure of different types of surface -modified polyurethane material and coagulation 12 factor nine peptide fragments,and fibrinogen P1 fragment of computer simulation of the interaction,O631.3
  9. Research on the Interface Modification of Epoxy Resin/Metallic Substrates and Epoxy Resin/Pigment,TQ630.1
  10. Nano-Packaging and Processing Technology on Preservation Quality of Tea,TS272
  11. The Effects of Exposure to Bisphenol-a between Adolescence and Early Adulthood on Behaviors in Mice and Its Molecular Mechanism,R965
  12. Selenium Modification of Astragalus Polysaccharide and Its Antioxidant Activity in Vitro,R284.1
  13. Physical Modification of the Soybean Protein Concentrate by Alcohol Extraction,TS201.21
  14. Effect of Single and Double Mutations of Yeast H3K79L、H4K20L on the Function of ELP3 and Expression of SSA3,Q75
  15. Research on the Modified Methods of Fly Ash for Ammonia-nitrogen Wastewater Treatment,X703
  16. Polyaniline / short fiber reinforced natural rubber properties,TQ330.1
  17. Phosphate modification of nano- TiO 2 Photoelectrochemical Properties of the,TB383.1
  18. Multi-dimensional charge transport group modify iridium complex design, synthesis and optical properties,O627.8
  19. Preparation and Performances of Aluminum Oxide Coated Zirconia Composite Powders,TB383.3
  20. Study on the Synthesis、Preparation and Properties of Modification Phenolic Resin/NBR Composite Adhesive,TQ433
  21. The Study of the Spinning Process of Aromatic Modified Nylon 6 Fibers,TQ323.6

CLC: > Mathematical sciences and chemical > Chemistry > Polymer chemistry ( polymer ) > Carbon - chain polymers > Unsaturated hydrocarbon polymers . > Olefin polymers
© 2012 www.DissertationTopic.Net  Mobile