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楊元意

職      稱(chēng):

副教授

博導(dǎo)/碩導(dǎo):

碩導(dǎo)

學(xué)科專(zhuān)業(yè):

土木工程

研究方向:

土木工程材料

聯(lián)系方式:

[email protected];[email protected]

個(gè)人簡(jiǎn)介

楊元意,四川自貢人,博士(后),副教授,碩導(dǎo),中國(guó)硅酸鹽學(xué)會(huì)會(huì)員,四川省力學(xué)學(xué)會(huì)會(huì)員,九三學(xué)社西南石油大學(xué)委員。碩士招生專(zhuān)業(yè):土木工程、土木水利。主要從事先進(jìn)建筑和土木工程材料、固廢資源化利用、文物保護(hù)、復(fù)合材料等領(lǐng)域的研究工作;在高性能纖維增強(qiáng)水泥基復(fù)合材料、石窟寺和古建筑保護(hù)、材料斷裂與損傷行為、輕質(zhì)泡沫混凝土、多功能和機(jī)敏建筑材料及智能結(jié)構(gòu)系統(tǒng)、油氣田材料等方面積累了多年的研究經(jīng)驗(yàn);授權(quán)專(zhuān)利26項(xiàng),發(fā)表論文40余篇,論文引用1132次,h指數(shù)=22(截止25年3月),并擔(dān)任多個(gè)SCI期刊審稿人;主持了國(guó)家自然基金、中國(guó)博士后面上基金、四川省科技教育聯(lián)合基金面上項(xiàng)目、四川省科技計(jì)劃應(yīng)用基礎(chǔ)研究、釩鈦資源綜合利用國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)發(fā)課題、綠色建筑材料國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題、德陽(yáng)市社會(huì)發(fā)展領(lǐng)域院校合作重點(diǎn)計(jì)劃等課題30余項(xiàng);課題組已有多名碩士畢業(yè)生進(jìn)入到央國(guó)企科研院所工作或繼續(xù)攻讀博士學(xué)位,歡迎具有土木工程、材料、環(huán)境、力學(xué)、化工、機(jī)械、計(jì)算科學(xué)等交叉專(zhuān)業(yè)知識(shí)背景的同學(xué)加入“先進(jìn)土木工程材料”課題組。

教學(xué)及教學(xué)研究

講授課程:

本科生:《土木工程材料(雙語(yǔ))》;研究生:《路面結(jié)構(gòu)理論與材料》

教改項(xiàng)目:

《研究生全英文課程建設(shè)項(xiàng)目》,參與


代表性論文、著作和技術(shù)規(guī)程

代表性論文:

1. Hongjuan Wang, Yuanyi Yang*, et al. Effect of Li2CO3 on the preparation and performance of lightweight building ceramsite from oil-based drilling cutting pyrolysis residues. Ceramics International, 2025, 01, 168. (SCI: top, 2區(qū))

2. Liangjun Yin, Yuanyi Yang*, et al. Preparation and performance of ultra-wideband high-temperature resistant calcium aluminate cement-based electromagnetic wave absorption cone structural composites. Ceramics International, 2024, 50, 21.(SCI: top, 2區(qū))

3. Yuanyi Yang*, et al. Structural design and electromagnetic wave absorbing performance optimization of lightweight foam cement-based metamaterials. Construction and Building Materials, 2024, 438, 137191.(SCI: top, 1區(qū))

4. Yuanyi Yang*, et al. Preparation and characterization of high?performance ceramic proppant from recycling utilization of oil?based drilling cuttings pyrolysis residues. Scientific Reports. 2024, 14, 2345. (SCI: 2區(qū))

5. Yuanyi Yang*, et al. Impact of acid, salt, and wetting-drying cycles on weathering deterioration of the red sandstone used for Leshan Giant Buddha China. International Journal of Architectural Heritage. 2023, 2301353. (SCI: 3區(qū))

6. Hongjuan Wang, Yuanyi Yang*, et al. Preparation and properties of lightweight and high-strength building ceramsites with oil-based drilling cuttings pyrolysis residues. Frontiers in Materials. 2023.1245121. (SCI: 3區(qū))

7. Yuanyi Yang*, et al. Microwave-thermal-assisted curing method on geopolymer preparation from Panzhihua high-titanium slag by alkali activation. Construction and Building Materials, 2023, 400, 132614.(SCI: top, 1區(qū))

8. Hongling Sun, Yuanyi Yang*, et al. Preparation and electromagnetic wave absorption characteristics of multifunctional light-weight high titanium slag-based foam geopolymer. Construction and Building Materials, 2023, 376, 130959.(SCI: top, 1區(qū))

9. Caoyuan Bai, Yuanyi Yang*, et al. Effect of different curing methods on the preparation of carbonized high-titanium slag based geopolymers. Construction and Building Materials, 2022, 342, 128023. (SCI: top, 1區(qū))

10. Lei Yue, Yuanyi Yang*, et al. Broadband electromagnetic wave absorbing performance by designing the foam structure and double-layer for cement-based composites containing MWCNTs. Cement and Concrete Composites, 2022, 131, 104595. (SCI: top, 1區(qū))

11. Gan Deng, Yuanyi Yang*, et al. Lightweight and broadband electromagnetic wave absorbing foamed cement-based composites incorporated with hybrid dielectric fibers. Construction and Building Materials, 2022, 327, 126931.(SCI: top, 1區(qū))

12. Yuanyi Yang, et al. Rheology and porosity of ultralow density foamed cement pastes derived from ordinary Portland cement and hydrogen peroxide. Journal of Materials in Civil Engineering. 2022, 34(4):04022034. (SCI: 3區(qū))

13. Yuanyi Yang, et al. Reinforcement effects of multi-scale hybrid fiber on flexural and fracture behaviors of ultra-low-weight foamed cement-based composites. Cement and Concrete Composites, 2020, 108, 103509. (SCI: top, 1區(qū))

14. Yuanyi Yang, et al. The reinforcement attributes of multi-scale hybrid fiber throughout the uniaxial compression of ultra-low-weight foamed cement-based composites. Construction and Building Materials, 2020, 242, 118184. (SCI: top, 1區(qū))

15. Yuanyi Yang, et al. Compressive behaviors of ultra-low-weight foamed cement-Based composite reinforced by polypropylene short fibers. International Journal of Damage Mechanical, 2020, 3, 1-20. (SCI: 2區(qū))

16. Yuanyi Yang, et al. Uniaxial compression mechanical property and fracture behavior of hybrid inorganic short mineral fibers reinforced cement-based material. Cement and Concrete Composites, 2019, 104, 103338. (SCI: top, 1區(qū))

17. Yuanyi Yang, et al. Uniaxial compression mechanical properties and fracture characteristics of brucite fiber reinforced cement-based composites. Composite Structures, 2019, 212, 148-158. (SCI: top, 1區(qū))

18. Yuanyi Yang, et al. Mechanical properties of hybrid short fibers reinforced oil well cement by polyester fiber and calcium carbonate whisker. Construction and Building Materials, 2018, 182, 258-272. (SCI: top, 1區(qū))

19. Yuanyi Yang, et al. Mechanical attributes of uniaxial compression for calcium carbonate whisker reinforced oil well cement pastes. Advances in Materials Science and Engineering, 2017, 1-13. (SCI: 4區(qū))

20. Yi Deng, Yuanyi Yang, et al. Preparation of magnetic Ni-P amorphous alloy microspheres and their catalytic performance towards thermal decomposition of ammonium perchlorate. Applied Surface Science, 2017, 425, 261-271. (SCI: top, 2區(qū))

21. Wei Liu, Yuanyi Yang, et al. Constructing a double-percolated conductive network in a carbon nanotube/polymer-based flexible semiconducting. Composites Science and Technology, 2018, 154, 45-52. (SCI: top, 1區(qū))

22. Zhen Xie, Yi Deng, Yuanyi Yang, et al. Preparation of nano-sized titanium carbide particles via a vacuum carbothermal reduction approach coupled with purification under hydrogen/argon mixed gas. RSC Advance. 2017, 7(15):9037-9044. (SCI: 3區(qū))

23. Zhiqiang Xu, Wei Liu, Yuanyi Yang, et al. Environmental-friendly and facile synthesis of Co3O4 nanowires and their promising application with graphene in lithium-ion batteries. Nanoscale Research Letters, 2017, 12(1):615. (SCI: 3區(qū))

24. Bin Gong, Deng Yi, Yuanyi Yang, et al. Effects of microwave-assisted thermal treatment on the fate of heavy metals in MSWI fly ash. Energy & Fuels, 2017, 31, 11, 12446-12454. (SCI: 3區(qū))

25. Yi Deng, Kewei Zhang, Yuanyi Yang, et al. Ce/Mn dual-doped LaAlO3 ceramics with enhanced far-infrared emission capability synthesized via a facile microwave sintering method. Journal of Alloys and Compounds, 2019, 774:434-442. (SCI: top, 2區(qū))

26. Kewei Zhang, Yi Deng, Yuanyi Yang, et al. Effect of lanthanum doping on the far-infrared emission property of vanadium–titanium slag ceramic. RSC Advances, 2017, 7(22):13509-13516. (SCI: 3區(qū))

27. Ming Li, Meng Liu, Yuanyi Yang, et al. Mechanical properties of oil well cement stone reinforced with hybrid fiber of calcium carbonate whisker and carbon fiber. Petroleum Exploration and Development, 2015, 42, 104-111. (SCI: top, 1區(qū))

28. 楊元意,石顯蕓,丁仕豪,陳博雨,鄒蕊麒,李才英,楊婷婷. EPS-石墨烯-水泥基復(fù)合吸波材料的制備與性能,復(fù)合材料學(xué)報(bào),2024,830,003.

29. 吳冠仲,喬榛,宋力,張君,李文彬,楊婷婷,楊元意. 新型復(fù)合水泥基弱膠結(jié)土體注漿材料的制備及性能研究,新型建筑材料,2025,52,01.

30. 楊婷婷,李輝,雷證寰,劉洪武,陳坷銘,劉漢軍,孫玉,楊元意. 油基巖屑?xì)堅(jiān)詰腋≈蝿┑闹苽浼靶阅茉u(píng)價(jià). 石油與天然氣化工,2024,1,53.

31. 張珂瑋,鄧怡,楊元意,龔兵,廖詠康,楊為中,摻雜稀土鈰對(duì)高爐渣陶瓷遠(yuǎn)紅外性能及物理性能的影響,硅酸鹽學(xué)報(bào),2017,45,9.

32. 李明,劉萌,楊元意,李早元,郭小陽(yáng). 碳酸鈣晶須與碳纖維混雜增強(qiáng)油井水泥石力學(xué)性能. 石油勘探與開(kāi)發(fā),2015,94-100.

33. 李早元,楊元意,程小偉,張松,郭小陽(yáng),丁苯膠乳水泥漿體系消泡劑的研究. 油田化學(xué), 2013,3,1000-4092.

34. 楊元意,程小偉,付強(qiáng),李明,郭小陽(yáng). 可再分散乳膠粉改性水泥石孔隙結(jié)構(gòu)與氯離子滲透性研究. 鉆井液與完井液,2013,5,30.

獲得專(zhuān)利:

1)一種混雜纖維水泥基泡沫復(fù)合吸波材料及其制備方法,專(zhuān)利號(hào):202110290315.4.

2)一種寬頻高效多層型泡沫水泥基吸波板,專(zhuān)利號(hào):202111375618.2.

3)一種高鈦礦渣基泡沫地聚物電磁吸收材料及其制備方法,專(zhuān)利號(hào)ZL202211463109.X;

4)一種基于油基巖屑的中空超輕陶粒及其制備方法,專(zhuān)利號(hào):ZL202311825688.2;

5)一種全介質(zhì)周期陣列結(jié)構(gòu)水泥基泡沫吸波板及其制備方法,專(zhuān)利號(hào):ZL202310349097.6;

6)一種油基巖屑-高鈦礦渣-赤泥基輕質(zhì)高強(qiáng)免燒陶粒及其制備方法,專(zhuān)利號(hào)ZL202311825594.5;

7)一種微波燒結(jié)油基巖屑?xì)堅(jiān)樟V蝿┑闹苽浞椒ǎ瑢?zhuān)利號(hào):ZL20231 1207453.7.

8)一種水泥漿增韌劑及在制備固井用柔性水泥漿中的應(yīng)用,專(zhuān)利號(hào):201310228597.0;

9)基磷灰石包覆銀納米顆粒的核殼結(jié)構(gòu)納米復(fù)合材料及其制備方法,專(zhuān)利號(hào):201710128429.2;

10)一種混凝土發(fā)泡穩(wěn)定性測(cè)定儀器,專(zhuān)利號(hào):2017203307665;

11)一種負(fù)壓篩分儀及試驗(yàn)篩,專(zhuān)利號(hào):2017203495109;

12)一種針片狀集料自動(dòng)檢測(cè)裝置,專(zhuān)利號(hào):201720349212X;

13)一種混凝土塑料模具清洗機(jī),專(zhuān)利號(hào):2017203495113;

14)一種多功能粗集料清洗機(jī),專(zhuān)利號(hào):2017203495128;

15)一種多功能攪拌鍋,專(zhuān)利號(hào):2017203492079;

16)一種混凝土脫模裝置,專(zhuān)利號(hào):201720330527X;

17)一種用于干燥建筑材料的恒溫鼓風(fēng)干燥箱,專(zhuān)利號(hào):2017201549104;

18)一種涂油盒,專(zhuān)利號(hào):2017201850708;

19)一種用于干燥建筑材料的恒溫鼓風(fēng)干燥箱,專(zhuān)利號(hào):2017201549104;

20)一種防外濺的水泥膠砂振實(shí)臺(tái),專(zhuān)利號(hào):2017201549369;

21)一種天然砂含泥量清洗機(jī),專(zhuān)利號(hào):2017201850820;

22)一種用于建筑工程檢測(cè)的低應(yīng)變式自動(dòng)樁基檢測(cè)裝置,專(zhuān)利號(hào):ZL201720855953.5;

23)一種泡沫混凝土養(yǎng)護(hù)模具,專(zhuān)利號(hào):ZL201720349208.3;

24)一種抽屜式砂石搖篩機(jī),專(zhuān)利號(hào):ZL201720349509.6;

25)一種超聲波無(wú)損檢測(cè)模擬教具,專(zhuān)利號(hào):ZL201720713081.9;

26)一種建筑墻體低壓空氣噴涂泡沫機(jī),專(zhuān)利號(hào):ZL201721884342.X;


科研項(xiàng)目

[1] 國(guó)家自然科學(xué)基金(青年):水泥基泡沫諧振群吸波體的可控構(gòu)筑及力敏特性研究,負(fù)責(zé)人;

[2] 中國(guó)博士后面上基金:功能導(dǎo)向水泥基泡沫電磁吸波材料的構(gòu)建與結(jié)構(gòu)設(shè)計(jì)研究,負(fù)責(zé)人;

[3] 綠色建筑材料國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金:水泥基泡沫介質(zhì)電磁吸波超材料的構(gòu)建與性能研究,負(fù)責(zé)人;

[4] 四川省科技教育聯(lián)合基金面上項(xiàng)目:泡沫地聚物雷達(dá)/紅外兼容隱身材料設(shè)計(jì)及其電磁-熱調(diào)控機(jī)理研究,負(fù)責(zé)人;

[5] 西部綠色建筑國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金:水泥基泡沫電磁吸波超材料的制備、組成、結(jié)構(gòu)及作用機(jī)理研究,負(fù)責(zé)人;

[6] 四川省科技計(jì)劃應(yīng)用基礎(chǔ)項(xiàng)目:吸波泡沫水泥基功能材料的研發(fā)及其力學(xué)“隱身”特性研究,負(fù)責(zé)人;

[7] 釩鈦資源綜合利用國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金:高鈦礦渣基發(fā)泡聚合物吸波材料的構(gòu)筑與應(yīng)用基礎(chǔ)研究,負(fù)責(zé)人;

[8] 德陽(yáng)市社會(huì)發(fā)展領(lǐng)域院校重點(diǎn)研發(fā)項(xiàng)目:2D負(fù)載型納米材料增強(qiáng)水泥基泡沫的構(gòu)筑及吸波特性研究,負(fù)責(zé)人;

[9] 德陽(yáng)市應(yīng)用技術(shù)研究與開(kāi)發(fā)資金項(xiàng)目計(jì)劃:新型改性通用水泥發(fā)泡復(fù)合保溫板研發(fā)及關(guān)鍵技術(shù)研究,負(fù)責(zé)人;

[10] 四川建筑職業(yè)技術(shù)學(xué)院科研計(jì)劃:通用水泥發(fā)泡控制和增強(qiáng)研究,負(fù)責(zé)人;

[11] 四川省自然科學(xué)基金面上項(xiàng)目:鋼管套箍與凍融耦合下高海拔大溫差地區(qū)鋼管混凝土微結(jié)構(gòu)形成與演變及性能退化抑制機(jī)理,主研;

[12] 四川省自然科學(xué)青年基金:頁(yè)巖氣油基鉆屑高性能壓裂支撐劑的構(gòu)筑及其自懸浮功能化改性研究,主研;

[13] 國(guó)家文物局文物科學(xué)技術(shù)研究項(xiàng)目:四川境內(nèi)砂巖石窟淺層開(kāi)裂剝落病害微創(chuàng)注漿修復(fù)加固技術(shù)研究,主研;

[14] 企業(yè)委托課題:頁(yè)巖氣鉆井廢棄物無(wú)害化處置與資源化利用制備支撐劑技術(shù),負(fù)責(zé)人。

[15] 企業(yè)委托課題:利用油基巖屑?xì)堅(jiān)苽浣ㄖ樟<夹g(shù)及其性能研究,負(fù)責(zé)人;

[16] 企業(yè)委托課題:含油巖屑?xì)堅(jiān)糜阡伮吩鲜覂?nèi)改良及現(xiàn)場(chǎng)試驗(yàn)方案,主研;

[17] 企業(yè)委托課題:含油廢物界面特性與油相剝離機(jī)理試驗(yàn)及分析,負(fù)責(zé)人;

[18] 企業(yè)委托課題:工業(yè)遺產(chǎn)建筑穩(wěn)定性評(píng)估與防火耐腐蝕復(fù)合涂層材料研究,負(fù)責(zé)人;

[19] 企業(yè)委托課題:深水環(huán)境下弱膠結(jié)土體新型注漿加固材料研發(fā),負(fù)責(zé)人;

[18] 企業(yè)委托課題:樂(lè)山大佛巖體劣化評(píng)估與修復(fù)關(guān)鍵技術(shù),主研;

[19] 企業(yè)委托課題:白帝城大遺址保護(hù)工程,主研;

[20] 企業(yè)委托課題:高性能減水劑復(fù)配技術(shù)研究與應(yīng)用,負(fù)責(zé)人;

[21] 企業(yè)委托課題:基樁混凝土質(zhì)量事故評(píng)價(jià)與分析,負(fù)責(zé)人;

[22] 企業(yè)委托課題:高海拔嚴(yán)寒地區(qū)隧道混凝土抗凍融性能提升關(guān)鍵技術(shù),主研;

[23] 九三學(xué)社調(diào)研課題,發(fā)展綠色-智能建筑工程體系,構(gòu)建低碳-智慧城市新模式,負(fù)責(zé)人


研究領(lǐng)域及團(tuán)隊(duì)

科研團(tuán)隊(duì):先進(jìn)土木工程材料團(tuán)隊(duì)

研究領(lǐng)域:

(1)先進(jìn)建筑和土木工程材料方向:智能綠色建材與結(jié)構(gòu)健康監(jiān)測(cè)、纖維增強(qiáng)水泥基復(fù)合材料力學(xué)行為、3D打印混凝土、特殊功能性材料等;

(2)文物保護(hù)方向:石質(zhì)文物風(fēng)化劣化行為、文物加固與修復(fù)等;

(3)固廢資源化利用方向:工業(yè)固體廢棄物回收與利用、“碳中和”綠色工程材料的研發(fā)與應(yīng)用等。


榮譽(yù)獎(jiǎng)勵(lì)

2023,第三屆全國(guó)生態(tài)混凝土創(chuàng)新設(shè)計(jì)應(yīng)用大賽二等獎(jiǎng),中國(guó)混凝土與水泥制品協(xié)會(huì),排名1;

2023,第一屆全國(guó)高校土建類(lèi)學(xué)科優(yōu)秀學(xué)位論文和優(yōu)秀畢業(yè)設(shè)計(jì)三等獎(jiǎng),中國(guó)建筑金屬結(jié)構(gòu)協(xié)會(huì),指導(dǎo)老師;

2023,西南石油大學(xué)優(yōu)秀碩士畢業(yè)論文,指導(dǎo)教師;

2022,西南石油大學(xué)優(yōu)秀碩士畢業(yè)論文,指導(dǎo)教師;

2021,九三學(xué)社成都市優(yōu)秀社員;

2021,西南石油大學(xué)優(yōu)秀本科畢業(yè)論文,指導(dǎo)教師。