Laser Technology, Volume. 47, Issue 6, 766(2023)

Fabrication of novel graphene/silver-based contacts using laser processing and the physical properties

YANG Qianqian1, LIU Yuan1, YE Xiaohui2, QIANG Hao2, SHAO Xinghai3, and CAO Lei3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    References(26)

    [1] [1] HAN Ch Y, WANG Zh B, WANG Zh, et al. Development of contact material and its performance testing technology[J]. Electrical Engineering Materials, 2019,47(1): 27-30(in Chinese).

    [2] [2] JIANG D Zh, ZHANG J, BAI Y L, et al. Application performance and preparation technology of AgNi contact materials[J]. Electrical Engineering Materials, 2014,42(3): 19-23(in Chinese).

    [3] [3] LI Q N, BAO K, ZHOU X, et al. Experimental study on feature of molten bridge of silver based contacts under slow separation[J]. Electrical & Energy Management Technology, 2016,58(15): 54-58(in Chinese).

    [4] [4] GUO T F, FU Ch, WANG J B, et al. Research and progress of silver-nickel contact materials containing additives[J]. Electrical Engineering Materials, 2015, 58(2): 34-38(in Chinese).

    [5] [5] CHEN H Y, XIE M, WANG J, et al. The advances and developmental trend of Ag/SnO2 electrical contact material[J]. Precious Metals, 2011, 32(2): 77-81(in Chinese).

    [6] [6] ZEER G M, ZELENKOVA E G, SIDORAK A V, et al. A silver-based electrocontact material dispersion-strengthened with zinc, tin, and titanium oxides[J]. Technical Physics, 2020, 65(8): 1253-1260.

    [7] [7] BIYIK S, ARSLAN F, AYDIN M. Arc-erosion behavior of boric oxide-reinforced silver-based electrical contact materials produced by mechanical alloying[J]. Journal of Electronic Materials, 2015, 44(1): 457-466.

    [8] [8] HE Q, YANG H, CHEN L, et al. Study on the mechanical alloying process for preparing Ag/LSCO electrical contact material[J]. Procedia Engineering, 2014, 94: 37-43.

    [9] [9] LIU Y, GAO M, XU S, et al. Study on electroconductive tribological properties of Ag-based composite coating[J]. International Journal of Precision Engineering and Manufacturing, 2019, 20(8): 1405-1413.

    [10] [10] HAO X, WANG X, ZHOU S, et al. Microstructure and properties of silver matrix composites reinforced with Ag-doped graphene[J]. Materials Chemistry and Physics, 2018, 215: 327-331.

    [11] [11] WANG P, WEI Z, SHEN M, et al. In-situ synthesized silver-graphene nanocomposite with enhanced electrical and mechanical pro-perties[C]//IEEE Holm Conference on Electrical Contact. Denver, USA: Institute of Electrical and Electronics Engineers, 2017: 225-228.

    [12] [12] NAGHDI S, RHEE K Y, PARK S J. A catalytic, catalyst-free, and roll-to-roll production of graphene via chemical vapor deposition: Low temperature growth[J]. Carbon, 2018, 127: 1-12.

    [13] [13] LIN L, DENG B, SUN J Y, et al. Bridging the gap between reality and ideal in chemical vapor deposition growth of graphene[J]. Chemical Reviews, 2018, 118(18): 9281-9343.

    [14] [14] GUAN Zh H, YU Zh Y, QIAO Zh J, et al. Preparation of irrsitu growth three-dimensional Cu@graphene composite by chemical vapor deposition[J]. Journal of Materials Science & Engineering, 2021, 39(4): 575-579(in Chinese).

    [15] [15] SUN Zh Y, JI L F, LIN Zh Y, et al. Effect of crystal orientation on synthesis of graphene layers by laser decomposition of 4H-SiC[J]. Chinese Journal of Lasers, 2020, 47(8): 0802002(in Chinese).

    [16] [16] YE X H. Rapid laser in-situ growth of graphene and its anti-corrosion performance[D]. Beijing: Tsinghua University, 2015: 35-59(in Chinese).

    [17] [17] YE X H, LONG J Y, LIN Zh, et al. Direct laser fabrication of large-area and patterned graphene at room temperature[J]. Carbon, 2014, 68: 784-790.

    [18] [18] YE X H, LIN Zh, ZHANG H J, et al. Protecting carbon steel from corrosion by laser in situ grown graphene films[J]. Carbon, 2015, 94: 326-334.

    [19] [19] LIU Zh, FANG J, LI Y Ch, et al. Pore characteristics of SiC/SiC composite thick plate machined by femtosecond laser[J]. Laser Technology,2022, 46(6): 736-741(in Chinese).

    [24] [24] LIN Zh J, FAN S Y, LIU M M, et al. Excellent anti-arc erosion performance and corresponding mechanisms of a nickel-belt-reinforced silver-based electrical contact material[J]. Journal of Alloys and Compounds, 2019, 788: 163-171.

    [25] [25] FERRARI A C, MEYER J C, SCARDACI V, et al. Raman spectrum of graphene and graphene layers[J]. Physical Review Letters, 2006, 97(18): 187401.

    [26] [26] BLEU Y, BOURQUARD F, LOIR A S, et al. Raman study of the substrate influence on graphene synthesis using a solid carbon source via rapid thermal annealing[J]. Journal of Raman Spectroscopy, 2019, 50(11): 1630-1641.

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    YANG Qianqian, LIU Yuan, YE Xiaohui, QIANG Hao, SHAO Xinghai, CAO Lei. Fabrication of novel graphene/silver-based contacts using laser processing and the physical properties[J]. Laser Technology, 2023, 47(6): 766

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    Paper Information

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    Received: Nov. 9, 2022

    Accepted: --

    Published Online: Dec. 5, 2023

    The Author Email:

    DOI:10.7510/jgjs.issn.1001-3806.2023.06.006

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