TY - JOUR
T1 - Synergistic protective effect between phenyltriethoxysilane-functionalized silica and BTA and its synergy applications for electrical contact protection on brass
AU - Bai, Lu
AU - Li, Weiping
AU - Ye, Hui
AU - Zhu, Liqun
AU - Chen, Haining
AU - Liu, Huicong
N1 - Publisher Copyright:
© 2020
PY - 2020/5
Y1 - 2020/5
N2 - Electrical contact elements fail due to surface film or organic adsorption. The traditional method of protection is surface coating. However its process is complex and the coating is usually thick, which may increase the contact resistance. In this paper, we prepared phenyltriethoxysilane-functionalized silica (PTES-SiO2) by co-condensation of tetraethoxysilane (TEOS) and phenyltriethoxysilane (PTES), and mainly studied its synergistic effect with BTA, which provided a basis for the rapid protection of electrical contact elements. The results show PTES-SiO2, rough surface and hydrophobicity, can improve the absorption of BTA on brass. We further sprayed the PTES-SiO2 and BTA mixture. The protective performance of brass is significantly enhanced while ensuring the conductivity of brass within 10 times for covering a few particles by this new method. The air barrier layer forms between PTES-SiO2 and corrosive medium, improving the electrolyte transfer resistance (Rt) of brass. The hydrophobicity of the surface is also improved. This method has broad application prospects in the field of electrical contact component protection.
AB - Electrical contact elements fail due to surface film or organic adsorption. The traditional method of protection is surface coating. However its process is complex and the coating is usually thick, which may increase the contact resistance. In this paper, we prepared phenyltriethoxysilane-functionalized silica (PTES-SiO2) by co-condensation of tetraethoxysilane (TEOS) and phenyltriethoxysilane (PTES), and mainly studied its synergistic effect with BTA, which provided a basis for the rapid protection of electrical contact elements. The results show PTES-SiO2, rough surface and hydrophobicity, can improve the absorption of BTA on brass. We further sprayed the PTES-SiO2 and BTA mixture. The protective performance of brass is significantly enhanced while ensuring the conductivity of brass within 10 times for covering a few particles by this new method. The air barrier layer forms between PTES-SiO2 and corrosive medium, improving the electrolyte transfer resistance (Rt) of brass. The hydrophobicity of the surface is also improved. This method has broad application prospects in the field of electrical contact component protection.
KW - Electrical contact elements
KW - Hydrophobicity
KW - PTES-SiO
KW - PTES-SiO and BTA mixture
KW - Synergistic protective effect
KW - The transfer of electrolyte corrosion resistance
UR - https://www.scopus.com/pages/publications/85082719479
U2 - 10.1016/j.colcom.2020.100260
DO - 10.1016/j.colcom.2020.100260
M3 - 文章
AN - SCOPUS:85082719479
SN - 2215-0382
VL - 36
JO - Colloids and Interface Science Communications
JF - Colloids and Interface Science Communications
M1 - 100260
ER -