Book Chapter: [1] Yonggang Tong, Xiubing Liang,Shuxin Bai,Qing H Qin. Book: Laser ablation (Editors: Dongfang Yang), Chapter: Laser Ablation Applications in Ablation-Resistance Characterization of Materials, InTech, 2016. [2] Shuxin Bai, Yonggang Tong, Yicong Ye, Hong Zhang. Book:MAX Phases and Ultra-High Temperature Ceramics for Extreme Environments (Editors: It-Meng (Jim) Low, Yoshio Sakka, Chunfeng Hu), Chapter:Reactive melt infiltration of carbon fiber reinforced ultra high temperature ceramic matrix composites, IGI global, 2013.
學(xué)術(shù)論文——發(fā)表論文60余篇,代表性論文如下: [1] Wang L, Tong Y G*, Zhou C, et al. Self-lubricating Ti3SiC2 strengthening Cu composites with electrical conductivity and wear resistance trade off[J]. Tribology International, 2023: 108724. (SCI、一區(qū)) [2] Zhang H, Ren Z Y, Tong Y G*, et al. Introduction of nanotwins into nanoprecipitations strengthened CoCrNiMo0. 2 alloy to achieve strength and ductility trade-off: A comparative research[J]. Journal of Materials Science & Technology, 2023, 156: 172-182. (SCI、一區(qū)) [3] Tong Y G*, Wang L, Wang B, et al. Microstructure and mechanical behavior of carbon fiber reinforced carbon, silicon carbide, and copper alloy hybrid composite fabricated by Cu-Si alloy melt infiltration[J]. Advanced Composites and Hybrid Materials, 2023, 6(1): 25. (SCI、一區(qū)) [4] Tong Y G*, Nan T, Hao C, et al. Real-time atomic deformation behavior of nano CoCrCuFeNi high-entropy alloy[J]. Transactions of Nonferrous Metals Society of China, 2023, 33(4): 1156-1163. (SCI、一區(qū)) [5] Ren Z Y, Hu Y L, Tong Y G*, et al. Wear-resistant NbMoTaWTi high entropy alloy coating prepared by laser cladding on TC4 titanium alloy[J]. Tribology International, 2023, 182: 108366. (SCI、一區(qū)) [6] Zhang H, Tong Y G*, Ji X X, et al. Effect of Tantalum content on microstructure and mechanical properties of CoCrNiTax medium entropy alloys[J]. Materials Science and Engineering: A, 2022, 847: 143322. (SCI、一區(qū)) [7] Tong Y G*, Wang B, Hua M Y, et al. Tough and wear-resistant carbon fiber reinforced TiC-based composite prepared by alloyed melt infiltration at low temperatures[J]. Ceramics International, 2022, 48(4): 4665-4674. (SCI、一區(qū)) [8] Tong Y G*, Wang B, Hu Y L, et al. Effect of Ti–Cu alloy's composition on microstructure and performance of carbon fiber reinforced TiC-based composites prepared by alloyed reactive melt infiltration[J]. Ceramics International, 2022, 48(20): 30555-30563. (SCI、一區(qū)) [9] Tong Y G*, Ren Z Y, Hu Y L, et al. Damage behavior and mechanism of C/C-SiC composite ablated under different environments[J]. Advanced Composites and Hybrid Materials, 2022, 5(2): 1433-1438. (SCI、一區(qū)) [10] Tong Y G*, Cai Y L, Hu Y L, et.al. TiC strengthened CoCrNi medium entropy alloy: Dissolution and precipitation of TiC and its effect on microstructure and performance [J]. Transactions of Nonferrous Metals Society of China. 2022, 32(7): 2266?2275. (SCI、一區(qū)) 專利——授權(quán)專利10余項(xiàng),代表性專利如下: [1] 仝永剛等,一種碳陶耐磨復(fù)合材料的制備方法,發(fā)明專利,2022-12-02,中國(guó),202110065574.7; [2] 仝永剛等,一種超硬耐磨高熵合金及其制備方法,發(fā)明專利,2022-03-11,中國(guó),201911156687.7; [3] 仝永剛等,一種碳陶復(fù)合材料的壓力反應(yīng)熔滲裝置,發(fā)明專利,2019-11-26,中國(guó), 201922068829.6; [4] 仝永剛等,一種Ta調(diào)控CoCrNiTax共晶高合金及其制備方法,發(fā)明專利,2022-08-09,中國(guó),202110066077.9; [5] 仝永剛等,一種大尺寸規(guī)則坯錠難熔高熵合金及其制備方法,發(fā)明專利,2021-07-23,中國(guó),201910629442.5
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