Quan Li
China University of Petroleum
DurabilityComposite numberSuperhydrophobic coatingFoulingFabricationDegradation (geology)AcicularComposite materialIndentation hardnessX-ray photoelectron spectroscopyMetallurgyMaterials scienceCorrosionGlass microsphereCurrent densityMagnesium alloyAnti-corrosionAlloyImidazolateCoatingZeolitic imidazolate frameworkChemical engineeringElectrochemistryMagnesiumSiliconBattery (electricity)Amorphous solidContact angleMicrostructureAnode
6Publications
1H-index
1Citations
Publications 5
Newest
#1Wang Jun (China University of Petroleum)H-Index: 1
#2Sirong Yu (China University of Petroleum)H-Index: 7
Last. Xizhen Yang (Changchun University)
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Abstract Inspired by the “lotus effect’’, more and more attention has been paid to the water repellent and self-cleaning surface. Due to its excellent properties, Mg alloy is considered to be one of the most promising engineering materials so far. However, the humid and corrosive environment makes Mg alloy susceptible to corrosion, which greatly limits its wide application. So it is very necessary to improve the properties of Mg alloy through surface treatment. Because of good chemical stability...
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#1Quan LiH-Index: 1
#2Wei XiongH-Index: 3
Last. Bingying WangH-Index: 1
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#1Liyuan Wang (China University of Petroleum)H-Index: 1
#2Ximei Xiao (Qingdao University)
Last. Jing Li (China University of Petroleum)
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Abstract The poor corrosion resistance of magnesium (Mg) alloys limits their applications, and preparing the superhydrophobic coating with a facile and cost-effective method is meaningful for anti-corrosion protection of Mg alloys. In this work, a superhydrophobic needle-like Ca-P coating was fabricated on AZ31 substrate by a chemical conversion method and low energy modification with stearic acid. The water contact angle of the obtained coating was about 158.7° and the sliding angle was 1.5°. D...
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#1Lin Liu (China University of Petroleum)H-Index: 3
#2Sirong Yu (China University of Petroleum)H-Index: 4
Last. Xizhen Yang (Changchun University)
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In this study, micro-arc oxidation (MAO) coatings were prepared on a novel glass microsphere reinforced Mg alloy composite to retard the degradation of the composite in the liquid environment containing Cl− for degradable downhole tool applications. The microstructure and chemical composition of the coatings were characterized by SEM, EDS, XPS and XRD. The growth characteristics of the MAO coatings on different matrix regions were analyzed. The corrosion and wear resistance of the coatings were ...
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#1Lin Liu (China University of Petroleum)H-Index: 3
#2Sirong Yu (China University of Petroleum)H-Index: 7
Last. Quan Li (China University of Petroleum)H-Index: 1
view all 9 authors...
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