Effect of SiO2-MWCNTs on Mechanical and Tribological Properties of Acrylic Silicone Resin Coating

被引:0
作者
Wen Zhou
Meiping Wu
Yiyao Wang
Peipei Lu
Chenyu Wang
Wentao Wei
Xiaojin Miao
机构
[1] Jiangnan University,Jiangsu Key Laboratory of Advanced Food Manufacturing Equipment and Technology, School of Mechanical Engineering
来源
Journal of Inorganic and Organometallic Polymers and Materials | 2023年 / 33卷
关键词
MWCNTs; SiO; -MWCNTs; Acrylic silicone resin; Mechanical and tribological properties;
D O I
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中图分类号
学科分类号
摘要
The characteristics of multi-impurities and high-flow velocity in the marine environment can easily cause wear and tear of the surface coating of marine equipment, affecting the reliability and service life of the equipment. In this paper, silicon dioxide (SiO2) hybrid multi-walled carbon nanotubes (MWCNTs) composites were obtained by sol-gel method, and SiO2-MWCNTs acrylic silicone resin composite coatings were prepared. The results showed that SiO2-MWCNTs had good dispersion in acrylic silicone resin, and the lower surface energy could be found in the composite coating with 1.0wt.% hybrid material, with an average contact angle of 107.68°, the impact resistance reached 70 cm·2000 g and the interfacial bonding strength reached 3.29 MPa. The hardness and tribological properties of the composite coating with 2.0wt.% hybrid material were the highest, with the hardness reached 17.7 HV0.05, the wear volume and wear rate were 2.99 × 10− 3  mm3 and 0.12  mm3 N− 1 m− 1 respectively, which were 77.1% and 77.8% higher than those of pure acrylic silicone resin coating. This was mainly attributed to the effect of hybrid MWCNTs bridging to change the direction of crack, uniform distribution of reinforcement phase could formed a larger area of lubrication layer and reduced the friction coefficient and wear rate. In conclusion, the use of SiO2-MWCNTs could effectively improve the mechanical and tribological properties of silicone acrylate resin.
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页码:529 / 543
页数:14
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共 224 条
  • [11] Yuan C(2003)Update on acrylic resins used in dentistry Nature 423 703-703
  • [12] Xu LX(2005)Super-tough carbon-nanotube fibres - these extraordinary composite fibres can be woven into electronic textiles Science 309 1215-1219
  • [13] Li YG(2004)Strong, transparent, multifunctional, carbon nanotube sheets Science 305 1273-1276
  • [14] Alam MA(2010)Rinzler, Transparent, conductive carbon nanotube films Materials 3 2884-2946
  • [15] Samad UA(2004)Microstructure and Properties of Polypropylene/Carbon Nanotube Nanocomposites J. Phys. Chem. A 108 11151-11159
  • [16] Anis A(2012)Covalent functionalization of single-walled carbon nanotubes for materials applications Polymer 53 495-504
  • [17] Alam M(2011)The influence of matrix viscosity on MWCNT dispersion and electrical properties in different thermoplastic nanocomposites Carbon 49 3378-3382
  • [18] Ubaidullah M(2000)Non-covalent/non-specific functionalization of multi-walled carbon nanotubes with a hyperbranched polyethylene and characterization of their dispersion in a polyolefin matrix Science 287 637-640
  • [19] Al-Zahrani SM(2015)Strength and breaking mechanism of multiwalled carbon nanotubes under tensile load Wear 332 855-862
  • [20] Vengadaesvaran B(2014)Wear and friction behaviour of poly-ether-ether-ketone (PEEK) filled with graphene, WS2 and CNT nanoparticles Paint Coat. Ind. 44 7-13