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唐昀青
發(fā)布時(shí)間:2023-03-23 17:17:21    作者:    點(diǎn)擊:[]
姓名 唐昀青 性別

               

                          

出生年月 1989.4
行政職務(wù)
學(xué)歷 博士研究生 學(xué)位 博士
專業(yè)技術(shù)職務(wù)及任導(dǎo)師情況  教授,博士研究生導(dǎo)師
所在一級(jí)學(xué)科名稱  機(jī)械工程
所在二級(jí)學(xué)科名稱  機(jī)械設(shè)計(jì)及理論

 

學(xué)術(shù)身份

山東大學(xué)齊魯青年學(xué)者

 

學(xué)術(shù)兼職

Tungsten青年編委,F(xiàn)ront. Chem.、Metals期刊客座編輯,Curr. Chin. Sci.、J. Environ. Mater. Sustain. Energy期刊編委,Wear、STAR Protoc.、Langmuir、Cryst. Growth Des.、Phys. Lett. A、Phys. Status Solidi A、物理學(xué)報(bào)等期刊審稿人。

 

國(guó)內(nèi)外學(xué)習(xí)和工作經(jīng)歷

2008年09月至2012年06月,中國(guó)礦業(yè)大學(xué),工程力學(xué),工學(xué)學(xué)士

2012年09月至2017年12月,江蘇大學(xué),機(jī)械工程,工學(xué)博士

2018年08月至2023年01月,加拿大阿爾伯塔大學(xué),化學(xué)與材料工程系,博士后研究員

2023年03月至今,山東大學(xué)機(jī)械工程學(xué)院,教授、博士研究生導(dǎo)師

 

主要研究領(lǐng)域

(1) 磨損機(jī)理與控制技術(shù)

(2) 材料力學(xué)性能與失效機(jī)制

(3) 半導(dǎo)體器件可靠性物理

(4) 電子封裝熱管理

 

招生

歡迎有機(jī)械、力學(xué)、材料、傳熱、半導(dǎo)體等相關(guān)背景學(xué)生報(bào)考!歡迎本科同學(xué)加入課題組學(xué)習(xí)!優(yōu)秀學(xué)生可推薦至加拿大阿爾伯塔大學(xué)等國(guó)際知名高校交流、深造。

常年招聘相關(guān)方向博士后,待遇參照山東大學(xué)博士后政策。課題組會(huì)努力協(xié)助申請(qǐng)學(xué)校高等級(jí)資助和相關(guān)基金支持。


承擔(dān)科研項(xiàng)目情況

[1] 2023-2026 山東省優(yōu)秀青年科學(xué)基金項(xiàng)目(海外),項(xiàng)目負(fù)責(zé)人

[2] 2023-2028 山東大學(xué)齊魯青年學(xué)者啟動(dòng)基金,項(xiàng)目負(fù)責(zé)人

[3] 2021-2023 加拿大自然科學(xué)與工程研究基金,Computational design - development of advanced low cost multi element lightweight alloys,項(xiàng)目骨干

[4] 2020-2023 國(guó)家自然科學(xué)基金面上項(xiàng)目,微納制造中石墨烯異質(zhì)界面?zhèn)鳠嵝袨檫M(jìn)化構(gòu)筑與調(diào)控研究,項(xiàng)目骨干

[5] 2018-2022 加拿大自然科學(xué)與工程研究基金,Develop new carbides for effective high-Cr cast irons (HCCIs) with optimized combination of fracture toughness and hardness used under harsh operation conditions,項(xiàng)目骨干

[6] 2018-2021 加拿大自然科學(xué)與工程研究基金,Development of high-performance nano-additive incorporated lubricating fluids and database for drilling systems in the oil and gas industries,項(xiàng)目骨干

[7] 2015-2019 加拿大自然科學(xué)與工程研究基金,Development of an electron work function - based microstructure diagnosis technique for developing advanced structural materials,項(xiàng)目骨干

[8] 2016-2019 國(guó)家自然科學(xué)基金面上項(xiàng)目,復(fù)合環(huán)境LED車燈集成構(gòu)造與可靠性評(píng)估機(jī)制研究,項(xiàng)目骨干

[9] 2015-2017 江蘇省普通高校研究生科研創(chuàng)新計(jì)劃,石墨烯NEMS傳熱界面的構(gòu)筑與關(guān)鍵熱力學(xué)行為研究,項(xiàng)目負(fù)責(zé)人

[10] 2011-2013 國(guó)家自然科學(xué)基金面上項(xiàng)目,微納電子制造高密度集成結(jié)構(gòu)跨尺度構(gòu)筑與物理可靠性研究,項(xiàng)目骨干

 

近期主要的代表性論文、著作、專利


發(fā)表學(xué)術(shù)論文50余篇,其中以第一作者/通訊作者發(fā)表論文20余篇(包括Science子刊1篇,Cell子刊2篇),研究成果獲得多家國(guó)內(nèi)外科技媒體報(bào)道;獲授權(quán)國(guó)家發(fā)明專利8項(xiàng),申請(qǐng)PCT專利1項(xiàng)。詳細(xì)論文列表參見ResearchGate(https://www.researchgate.net/profile/Yunqing-Tang-3)。

期刊論文 (#為共同作者,*為通訊作者):

[19] Tang, Y. Q., & Li, D. Y.* (2023). Influences of C, Si and Mn on the wear resistance of coiled tubing steel. Wear, In Press. (中科院一區(qū),Top期刊)

[18] Tang, Y. Q., Kumar, A., Chen, D. L., Li, D. Y.*, Li, Q. Y., & Li, W. (2023). Bauschinger effect on wear of cold-worked Cu and Mg–A study combining molecular dynamics modeling and experimental investigation. Wear, 204726. (中科院一區(qū),Top期刊)

[17] Yang, H., Tang, Y.#*, & Yang, P.* (2023). Building efficient interfacial property with graphene heterogeneous interface. International Journal of Mechanical Sciences, 237, 107782. (中科院一區(qū),Top期刊)

[16] Tang, Y., & Li, D. Y.* (2022). Dynamic response of high-entropy alloys to ballistic impact. Science Advances, 8(31), eabp9096. (Science子刊)[15] Tang, Y.*, Zhang, D., Liu, R., & Li, D.* (2022). Protocol to predict mechanical properties of multi-element ceramics using machine learning. STAR protocols, 3(3), 101552. (Cell子刊,邀稿)

[14] Xu, K., Tang, Y.#*, Wu, C., Zhao, Z., Sun, L., & Li, Y. (2022). Achieving optical phosphine sensitive h-BN nanosheets through transition metal doping. Applied Surface Science, 585, 152700. (中科院一區(qū),Top期刊)

[13] Tang, Y., Zhang, Z., Li, L., Guo, J., & Yang, P.* (2022). Thermal transport enhancement resolution for graphene/Si and graphene/SiC interfaces. International Journal of Thermal Sciences, 171, 107231.

[12] Xu, K., Chen, C., Tang, Y.*, Zhang, X., Wu, C., Geng, M., & Sun, L. (2022). Improving the Performance of All-Solid-Stated Planar pH Sensor With Heat Treated Process. IEEE Sensors Journal, 22(9), 8410-8417.

[11] Tang, Y., Zhang, D., Liu, R., & Li, D.* (2021). Designing high-entropy ceramics via incorporation of the bond-mechanical behavior correlation with the machine-learning methodology. Cell Reports Physical Science, 2(11), 100640. (Cell子刊,封面論文)

[10] Tang, Y., Pan, H., & Li, D. Y.* (2021). Contribution of cold-work to the wear resistance of materials and its limitation–a study combining molecular dynamics modeling and experimental investigation. Wear, 476, 203642. (中科院一區(qū),Top期刊)

[9] Tang, Y., & Li, D. Y.* (2021). Nano-tribological behavior of high-entropy alloys CrMnFeCoNi and CrFeCoNi under different conditions: A molecular dynamics study. Wear, 476, 203583. (中科院一區(qū),Top期刊)

[8] Guo, L., Tang, Y.#, Cui, J., Li, J., Yang, J. R., & Li, D. Y. (2021). Tailoring M7C3 carbide via electron work function-guided modification. Scripta Materialia, 190, 168-173. (中科院一區(qū),Top期刊)

[7] Li, J., Tang, Y.#, Tang, X., & Li, D. Y.* (2021). Promoting in situ formation of core‐shell structured carbides in high‐Cr cast irons by boron addition. Journal of the American Ceramic Society, 104(9), 4891-4901. (中科院一區(qū),Top期刊)

[6] Liu, Z., & Tang, Y.* (2021). An approach for hydrophobic fixed abrasive pad based on layer-by-layer method. Microelectronic Engineering, 238, 111505.

[5] Yang, H., Tang, Y.#*, & Yang, P.* (2019). Factors influencing thermal transport across graphene/metal interfaces with van der Waals interactions. Nanoscale, 11(30), 14155-14163. (中科院一區(qū),Top期刊)

[4] Tang, Y., Yang, H., & Yang, P.* (2017). Investigation on the contact between graphdiyne and Cu (111) surface. Carbon, 117, 246-251. (中科院一區(qū),Top期刊)

[3] Tang, Y., Yang, B., Yang, H., Yang, P.*, Yang, J., & Hu, Y. (2017). Numerical investigation on mechanical properties of graphene covering silicon nanofilms. Computational Materials Science, 126, 321-325.

[2] Tang, Y., Li, J., Wu, X., Liu, Q., Liu, Y., & Yang, P.* (2016). Tunable thermal property in edge hydrogenated AA-stacked bilayer graphene nanoribbons. Applied Surface Science, 362, 86-92. (中科院一區(qū),Top期刊)

[1] Tang, Y., Liu, D., Yang, H., & Yang, P.* (2016). Thermal effects on LED lamp with different thermal interface materials. IEEE Transactions on Electron Devices, 63(12), 4819-4824. (中科院二區(qū),Top期刊)


發(fā)明專利

[2] Li, D., Tang, Y., Liu, R., Zhang, D., & Tang, X. COMPLEX MATERIALS, 2021-11-30, WIPO, PCT/AU2021/051429 (PCT專利)

[1] 楊平, 唐昀青, 楊兵, 劉志響. 一種非對(duì)稱內(nèi)嵌結(jié)構(gòu)納米薄膜熱整流器的設(shè)計(jì)方法, 2019-12-31, 中國(guó), ZL201710273047.9 (授權(quán)發(fā)明專利)


會(huì)議報(bào)告

Tang, Y. Bauschinger effect on wear of cold-worked Cu and Mg – A study combining molecular dynamics modeling and experimental investigation, The 24rd International Conference on Wear of Materials, Banff, Alberta, Canada (O25.4), 2023. (材料磨損領(lǐng)域頂級(jí)國(guó)際會(huì)議,Oral Presentation)

Tang, Y. Influences of C, Si and Mn on the wear resistance of coiled tubing steel, The 24rd International Conference on Wear of Materials, Banff, Alberta, Canada (P1.24), 2023. (材料磨損領(lǐng)域頂級(jí)國(guó)際會(huì)議,Poster Presentation)

Tang, Y. Contribution of cold-work to the wear resistance of materials and its limitation – A study combining molecular dynamics modeling and experimental investigation, The 23rd International Conference on Wear of Materials, Banff, Alberta, Canada (WO35.1), 2021. (材料磨損領(lǐng)域頂級(jí)國(guó)際會(huì)議,Oral Presentation)

Tang, Y. Sliding wear of high-entropy alloys CrMnFeCoNi and CrFeCoNi: A molecular dynamics study, The 23rd International Conference on Wear of Materials, Banff, Alberta, Canada (WO35.2), 2021. (材料磨損領(lǐng)域頂級(jí)國(guó)際會(huì)議,Oral Presentation)

 

獲獎(jiǎng)項(xiàng)目

2018年江蘇大學(xué)優(yōu)秀博士學(xué)位論文

2018年江蘇大學(xué)優(yōu)秀畢業(yè)研究生

2017年博士研究生國(guó)家獎(jiǎng)學(xué)金

 

聯(lián)系方式

地址:山東省濟(jì)南市經(jīng)十路17923號(hào)山東大學(xué)千佛山校區(qū)機(jī)械工程學(xué)院

郵編:250061

郵箱:tangyunqing@sdu.edu.cn

 

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