• Journal of Inorganic Materials
  • Vol. 37, Issue 6, 643 (2022)
Du HONG1、2, Yaran NIU1, Hong LI2, Xin ZHONG1, and Xuebin ZHENG1、*
Author Affiliations
  • 11. Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • 22. School of Materials Science and Engineering, Shanghai University, Shanghai 200072, China
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    DOI: 10.15541/jim20210521 Cite this Article
    Du HONG, Yaran NIU, Hong LI, Xin ZHONG, Xuebin ZHENG. Tribological Properties of Plasma Sprayed TiC-Graphite Composite Coatings[J]. Journal of Inorganic Materials, 2022, 37(6): 643 Copy Citation Text show less
    References

    [1] H Y ZHU, Y R NIU, C C LIN et al. Microstructures and tribological properties of vacuum plasma sprayed B4C-Ni composite coatings. Ceramics International, 101-110(2013).

    [2] Y W WANG, Y R NIU, X ZHONG et al. Water vapor corrosion behaviors of plasma sprayed RE2SiO5 (RE = Gd, Y, Er) coatings. Corrosion Science, 108529(2020).

    [3] Y W WANG, Y R NIU, X ZHONG et al. Water vapor corrosion behaviors of plasma sprayed ytterbium silicate coatings. Ceramics International, 28237-28243(2020).

    [4] X H PAN, C LI, Y R NIU et al. Effect of tungsten-containing additives (WB/WSi2/W) on ablation behavior of ZrB2-SiC coating. Corrosion Science, 108560(2020).

    [5] X T XU, X H PAN, Y R NIU et al. Difference evaluation on ablation behaviors of ZrC-based and ZrB2-based UHTCs coatings. Corrosion Science, 109181(2021).

    [6] X Q GUO, Y R NIU, L P HUANG et al. Microstructure and tribological property of TiC-Mo composite coating prepared by vacuum plasma spraying. Journal of Thermal Spray Technology, 1083-1090(2012).

    [7] K A. KUPTSOV, A N SHEVEYKO, O S MANAKOVA et al. Comparative investigation of single-layer and multilayer Nb-doped TiC coatings deposited by pulsed vacuum deposition techniques. Surface and Coatings Technology, 125422(2020).

    [8] J LUO, Y X OU, Z Q ZHANG et al. Low friction coefficient of superhard nc-TiC/a-C:H nanocomposite coatings deposited by filtered cathodic vacuum arc. Materials Research Express, 096418(2019).

    [9] L CHITSAZ-KHOYI, J KHALIL-ALLAFI, A MOTALLEBZADEH et al. The effect of hydroxyapatite nanoparticles on electrochemical and mechanical performance of TiC/N coating fabricated by plasma electrolytic saturation method. Surface and Coatings Technology, 125817(2020).

    [10] P SOUČEK, J DANIEL, J HNILICA et al. Superhard nanocomposite nc-TiC/a-C:H coatings: the effect of HiPIMS on coating microstructure and mechanical properties. Surface and Coatings Technology, 257-267(2017).

    [11] J A FOUTS, P J SHILLER, K K MISTRY et al. Additive effects on the tribological performance of WC/a-C:H and TiC/a-C:H coatings in boundary lubrication. Wear, 104-115(2017).

    [12] N OLAH, Z FOGARASSY, A SULYOK et al. Ceramic TiC/a:C protective nanocomposite coatings: structure and composition versus mechanical properties and tribology. Ceramics International, 12215-12220(2016).

    [13] D HONG, Y R NIU, H LI et al. Comparative study on wear behavior of plasma-sprayed TiC coating sliding against different counterparts. Journal of Thermal Spray Technology, 1082-1092(2020).

    [14] P B MI, J N HE, H J ZHAO et al. Effect of graphite addition on structure and properties of Ti(CN) coatings deposited by reactive plasma spraying. Journal of Thermal Spray Technology, 1588-1595(2016).

    [15] D HONG, Y R NIU, H LI et al. Comparison of microstructure and tribological properties of plasma-sprayed TiN, TiC and TiB2 coatings. Surface and Coatings Technology, 181-188(2019).

    [16] H Q LI, Y T XIE, K LI et al. Microstructure and wear behavior of graphene nanosheets-reinforced zirconia coating. Ceramics International, 12821-12829(2014).

    [19] S NATARAJAN, E E ANAND, K S AKHILESH et al. Effect of graphite addition on the microstructure, hardness and abrasive wear behavior of plasma sprayed NiCrBSi coatings. Materials Chemistry and Physics, 100-106(2016).

    [20] J N HE, F Y ZHANG, P B MI et al. Microstructure and wear behavior of nano C-rich TiCN coatings fabricated by reactive plasma spraying with Ti-graphite powders. Surface and Coatings Technology, 215-222(2016).

    [21] B CAI, Y F TAN, Y Q TU et al. Tribological properties of Ni-base alloy composite coating modified by both graphite and TiC particles. Transactions of Nonferrous Metals Society of China, 2426-2432(2011).

    [22] X Q ZHAO, S J LI, G L HOU et al. Influence of doping graphite on microstructure and tribological properties of plasma sprayed 3Al2O3-2SiO2 coating. Tribology International, 168-177(2016).

    [23] A MUSSA, P KRAKHMALEV, J BERGSTROM et al. Sliding wear and fatigue cracking damage mechanisms in reciprocal and unidirectional sliding of high-strength steels in dry contact. Wear, 203119(2020).

    [24] R J ZHANG, C L ZHENG, C CHEN et al. Study on fatigue wear competition mechanism and microstructure evolution on the surface of a bainitic steel rail. Wear, 203978(2021).

    [25] T WOLLMANN, S NITSCHKE, T KLAUKE et al. Investigating the friction, wear and damage behaviour of plain bearing bushes of the variable stator vane system. Tribology International, 107280(2022).

    [26] C C JI, Q Q GUO, J P LI et al. Microstructure and properties of CrN coating via multi-arc ion plating on the valve seat material surface. Journal of Alloys and Compounds, 161966(2021).

    [27] A F TAVARES, A P O LOPES, E A MESQUITA et al. Effect of transfer layers on friction and wear mechanisms in strip drawing tests of commercially coated forming tools. Wear, 203733(2021).

    [28] S FABBRO, L M ARAUJO, J ENGEL et al. Abrasive and adhesive wear behaviour of metallic bonds in a synthetic slurry test for wear prediction in reinforced concrete. Wear, 203690(2021).

    [29] J CAO, H B HUANG, S X LI et al. Tribological and mechanical behaviors of engine bearing with CuSn10 layer and h-BN/ graphite coating prepared by spraying under different temperatures. Tribology International, 106445(2020).

    [30] F WAHLISCH, J HOTH, C HELD et al. Friction and atomic-layer-scale wear of graphitic lubricants on SiC(0001) in dry sliding. Wear, 78-81(2013).

    Du HONG, Yaran NIU, Hong LI, Xin ZHONG, Xuebin ZHENG. Tribological Properties of Plasma Sprayed TiC-Graphite Composite Coatings[J]. Journal of Inorganic Materials, 2022, 37(6): 643
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