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莫太騫

發(fā)布時間:2024-05-06瀏覽次數(shù):4756

莫太騫博士,副教授,碩士生導(dǎo)師

地址:貴州省貴陽市花溪區(qū)貴州大學(xué)機(jī)械工程學(xué)院

郵箱:tjmo@gzu.edu.cn


研究領(lǐng)域

研究方向一:面向極端服役環(huán)境的先進(jìn)激光制造技術(shù)研究。如光熱控制高性能金屬的增材制造/再制造、核電用關(guān)鍵結(jié)構(gòu)件涂層防護(hù),以及以激光加工和深度學(xué)習(xí)結(jié)合為特征的激光智能制造。

研究方向二:宏-微觀視角下航空航天復(fù)雜關(guān)鍵構(gòu)件的控形和控性研究。涉及大型裝備與結(jié)構(gòu)的疲勞/斷裂力學(xué)和結(jié)構(gòu)強(qiáng)度理論、以及構(gòu)件可靠性檢測和數(shù)值模擬分析。

以上研究方向招收機(jī)械制造及其自動化、機(jī)械電子工程等學(xué)術(shù)型碩士生,以及機(jī)械工程專業(yè)型碩士生。本課題組秉持開放態(tài)度,不設(shè)本科背景門檻,誠邀具有科研理想、創(chuàng)新能力和勤奮品質(zhì)的學(xué)子加入,共同探索學(xué)術(shù)前沿。


工作/教育簡歷

2025.01—至今,貴州大學(xué)機(jī)械工程學(xué)院 副教授/特聘教授,碩士生導(dǎo)師;

2021.10—2024.12,貴州大學(xué)機(jī)械工程學(xué)院 講師/特聘教授,碩士生導(dǎo)師;

2016.09—2021.06,重慶大學(xué)材料科學(xué)與工程學(xué)院,工學(xué)博士(碩博連讀);


學(xué)術(shù)兼職

貴州大學(xué)一流學(xué)科特崗人才;貴州省鑄造學(xué)會副秘書長;中國金屬學(xué)會會員;有色金屬智庫專家;擔(dān)任《Progress in Natural Science: Materials International》、《中南大學(xué)學(xué)報(自然科學(xué)版)》等期刊青年編委以及《Journal of Materials Science & Technology》、《Materials Science and Engineering: A》、《Materials Characterization》等學(xué)術(shù)期刊審稿人


科研項目(近5年)

[1] 國家自然科學(xué)基金項目:激光誘導(dǎo)原位自生MX/MAX核殼顆粒增強(qiáng)鈦基梯度涂層制備及其沖蝕磨損機(jī)理,52365020,主持,在研;

[2] 貴州大學(xué)自然科學(xué)專項(特崗)科研基金項目:鋁基層狀復(fù)合材料界面結(jié)構(gòu)調(diào)控及強(qiáng)韌化研究,貴大特崗合字(2022)06號,主持,在研;

[3] 貴州省科學(xué)技術(shù)基金項目:磁控?zé)?/span>/力耦合作用下的鈦-鋁協(xié)同增強(qiáng)復(fù)合結(jié)構(gòu)設(shè)計及微觀機(jī)制研究,黔科合基礎(chǔ)-ZK[2023]078,主持,在研;

[4] 現(xiàn)代制造技術(shù)教育部重點(diǎn)實(shí)驗室開放基金項目:航空用輕質(zhì)鈦/鋁層狀復(fù)合材料界面優(yōu)化調(diào)控及其疲勞失效機(jī)理,GZUAMT2022KF[04],主持,在研;


學(xué)術(shù)論文(近5年)

[1] Rongchao Yang, Taiqian Mo*Bo Lin, et al. Phase evolution and steam oxidation behavior of nickel-based composite coatings fabricated by laser cladding, Ceramics International, 2025, 51: 3899-3913. (中科院2區(qū))

[2] Siyuan Liu, Taiqian Mo*Huaqiang Xiao, et al. Microstructure evolution and tribological behavior of TiC/Ti2AlC core-shell particle-reinforced composite coatings, Journal of Central South University, 2025 (Accepted,中科院2區(qū)).

[3] Taiqian MoHuaqiang Xiao, Cunhong Yin, et al. Heterogeneous lamella structure dominated mechanical properties optimization in ARBed Al alloy laminated metal composites, Transactions of Nonferrous Metals Society of China, 2025 (知網(wǎng)首發(fā),中科院1區(qū))

[4] Taiqian MoSiyuan Liu, Rongchao Yang, et al. Layer structure-based grain refinement mechanism and its effect on the mechanical behavior of Ti/Al laminated metal composites, Materials Characterization, 2023, 202: 113003. (中科院1區(qū))

[5] Taiqian MoHuaqiang Xiao, Bo Lin, et al. Improvement of mechanical properties of tri-metallic 7075Al/1060Al/304SS composite via collaborative strengthening behavior, Materials Science and Engineering: A, 2022: 857:144072.(中科院2區(qū))

[6] Taiqian MoHuaqiang Xiao, Bo Lin, et al. The influence of interface effect on the microstructure and mechanical behavior of tri-metal Ti/Al/Cu laminated metal composites, Journal of Materials Research and Technology, 2022, 19:520-531.(中科院2區(qū))

[7] Taiqian MoHuaqiang Xiao, Bo Lin, et al. Improving ductility and anisotropy by dynamic recrystallization in Ti/Mg laminated metal composite, Acta Metallurgica Sinica (English Letters), 2022, 35:1946-1958.(中科院2區(qū))

[8] Taiqian Mo, Zejun Chen, Dayu Zhou, et al. Effect of lamellar structural parameters on the bending fracture behavior of AA1100/AA7075 laminated metal composites. Journal of Materials Science & Technology, 2021, 99:28-38. (中科院1區(qū))

[9] Taiqian Mo, Zejun Chen, Zhansong Zhou, et al. Enhancing of mechanical properties of 1100/7075 Al alloys laminated metal composite by thermo-mechanical treatments. Materials Science and Engineering: A, 2020, 9:140313. (中科院2區(qū))

[10] Taiqian Mo, Jie Chen, Zejun Chen, et al, Qing Liu. Effect of intermetallic compounds (IMCs) on the interfacial bonding strength and mechanical properties of pre-rolling diffusion ARBed Al/Ti laminated metal composites. Materials Characterization, 2020, 10:110731. (中科院2區(qū))

[11] Taiqian Mo, Zejun Chen, Boxin Li, et al. Tailoring of interface structure and mechanical properties in ARBed 1100/7075 laminated metal composites by cold rolling. Materials Science and Engineering: A, 2019, 755:97-105. (中科院2區(qū))

[12] Taiqian Mo, Zejun Chen, Hao Chen, et al. Multiscale interfacial structure strengthening effect in Al alloy laminated metal composites fabricated by accumulative roll bonding. Materials Science and Engineering: A, 2019, 766:138354. (中科院2區(qū))

[13] Taiqian Mo, Zejun Chen, Boxin Li, et al. Effect of cross rolling on the interface morphology and mechanical properties of ARBed AA1100/AA7075 laminated metal composites. Journal of Alloys and Compounds, 2019, 805:617-623. (中科院2區(qū))

[14] Taiqian Mo, Zejun Chen, Hongtao Huang, et al. Effect of two-step annealing on recrystallized structure and mechanical properties in AA7075/AA1100 laminated metal composites processed by accumulative roll bonding. Materials Characterization, 2019, 158:109951. (中科院2區(qū))

[15] Taiqian Mo, Jie Chen, Zejun Chen, et al. Microstructure evolution during roll bonding and growth of interfacial intermetallic compounds in Al/Ti/Al laminated metal composites. JOM, 2019, 71:4769-4777. (中科院3區(qū))


發(fā)明專利

一種預(yù)冷軋擴(kuò)散的鈦/鋁層狀復(fù)合板制備技術(shù). CN201910418252.9

一種層狀金屬復(fù)合材料性能的評價方法. CN202311434940.7

一種利用激光分解制備耐磨鈦基復(fù)合涂層的方法. CN202411200188.4


地址:貴州大學(xué)西校區(qū)機(jī)械工程學(xué)院  |  電話:0851-83627516  |  郵箱:me@gzu.edu.cn
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