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福建农林大学导师教师师资介绍简介-付腾飞

本站小编 Free考研考试/2021-05-14









付腾飞



交通与土木工程学院






电话:


电子邮箱:
futengfei@fafu.edu.cn

办公地点:
旗山1号实验楼305-1

邮编:
350108






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2003-2008年在大连理工大学土木水利学院学习,后赴美国俄勒冈州立大学攻读博士。2013年6月取得俄勒冈州立大学土木工程与材料科学双博士学位。作为博士后留校,从事研究教学工作至今。在俄勒冈州立大学期间,学习研究水泥基材料,开展关于混凝土早龄期性能、化学收缩及自收缩、干燥收缩断裂、微观结构、以及铝酸盐水泥的各种研究。同时在项目基金写作、学生培养、实验室建设与管理方面获得宝贵经验。2015年4月至7月在俄勒冈州交通部工作期间,负责管理协调州政府斥资的桥梁道路相关研究。于2018年初回国任教,继续在纳米增强混凝土材料、混凝土耐久性、新型绿色建筑材料、特种水泥应用等方面开展研究工作。




教育经历
2011-2013俄勒冈州立大学,土木工程/材料科学,双博士学位,导师:Dr. Jason Ideker
2008-2011俄勒冈州立大学,结构工程,硕士学位,导师:Dr. Jason Ideker
2003-2008大连理工大学,土木工程(英语强化),学士学位, 导师:吴智敏教授





工作经历
2018.1-今福建农林大学,交通与土木工程学院,院聘教授
2015.8-2017.12俄勒冈州立大学,土木建筑学院,博士后研究员,导师:Dr.Jason Weiss
2015.4-7俄勒冈州交通部研究所,结构研究所,科研协调员
2013.7-2015.3俄勒冈州立大学,绿色建材实验室,博士后研究员,导师:Dr.Fred Kamke/Dr.Jason Ideker





荣誉及奖励

2020 第十一届全国混凝土设计大赛优秀指导老师
2018第五届全国大学生混凝土材料设计大赛优秀指导教师
2012俄勒冈州立大学 国际会议差旅补助($1000)
2011波特兰水泥协会(PCA)教育基金会奖学金($20,000)
2009预应力混凝土协会(PCI)预应力混凝土梁设计大赛 冠军队指导老师:Dr. Keith Kaufman
2007大连理工大学 土木水利学院 三等奖学金
2006大连理工大学 土木水利学院 优秀学生干部
2005大连理工大学 优秀学生标兵 特等奖学金得豪润达奖学金 大连市三好学生
2004大连理工大学 土木水利学院 一等奖学金中国石化奖学金




教学活动
教改项目1.福建农林大学研究生全英文课程建设. 高等混凝土材料(Advanced Concrete Materials), 2020/9~2022/8, 3万元, 在研,主持

在读研究生(福建农林大学)
2020年9月– 今彭健,生物质纤维增强混凝土材料(暂定)
2020年9月– 今许毅明,水泥基材料三球中心加载抗弯实验研究(暂定)
2020年9月– 今胡超(武夷学院联合培养),纳米纤维素超高性能混凝土实验研究(暂定)
2020年9月– 今徐光峰,碱激发地聚物灌浆材料(暂定)
2019年9月– 今薛嘉曦,纳米纤维素晶体对水泥基复合材料性能影响机理的研究
2019年9月– 今连锦康(武夷学院联合培养),碳纳米管超高性能混凝土的力学性能及自感知性能研究
2018年9月– 今张尚京,纳米纤维素晶体增强水泥基复合材料的制备与性能

本科生毕业论文(福建农林大学)
2021届
施宇,土木工程,基于ACI209混凝土干燥收缩预测模型的大数据验证
王怡,土木工程,铝酸盐水泥砂浆高温强度性能试验研究
郑潮飞,工程管理,热成像技术在建筑节能评估中的应用研究
罗锦涛,工程管理,大学城绿色校园改造研究-以福建农林大学旗山校区为例
2020届
肖英杰,土木工程,基于ACI209混凝土干燥收缩预测模型的大数据验证
陈舒琪,森林工程,福建土楼绿色建筑设计研究
薛榕涛,工程管理,现代夯土建筑概念设计研究
李建豪,工程管理,绿色校园认证-《LEED School》
胡荣耀,工程管理,绿色校园认证-《绿色校园评价标准》
刘智福,工程管理,福建省LEED认证现状与案例分析
欧竟铭,工程管理,中国建筑项目LEED认证现状分析
2019届
杨锦湖,森林工程,竹原纤维表面改性及其增强水泥复合材料的制备及性能(校优秀本科毕业生论文)
吴鸿森,森林工程,可持续性森林认证体系比较研究
陈金海,森林工程,中国森林认证(CFCC)与国际主要认证标准的对比研究

学生竞赛(福建农林大学)
2020年12月第十一届全国混凝土材料设计大赛院校组一等奖(总分第一)
成员:彭健、徐光峰、江凤娇、潘洁
2020年11月第一届美丽乡村土木工程技术与创意设计大赛二等奖
成员:黄伟财、杨可姿、王炜、许晨、林盛涛
2020年9月第六届全国大学生复合材料设计与制作大赛优秀奖
成员:柳丕锦、窦博、吴彦哲
2020年6月第二届全国大学生结构设计信息技术大赛三等奖
成员:孙嘉慧、蒋雷雷、余少波
2019年9月第五届全国大学生复合材料设计与制作大赛第9名
成员:张楚佩、郑臻泓、王韬、施宇、张尚京
2018年7月第五届全国大学生混凝土材料设计大赛三等奖
成员:郑嘉勇、陈宗霖、毛生荣








研究领域
研究方向:
1.新型水泥混凝土材料:纳米水泥混凝土材料,生物质水泥混凝土材料等。
2.混凝土耐久性研究:干燥收缩及裂缝,碱集料反应,冻融循环以及盐腐蚀。
3.特种混凝土性能研究及应用:铝酸盐水泥,硫铝酸盐水泥,气硬性水泥等。
4.绿色建筑材料及绿色建筑设计。

期刊审稿:
Cement and Concrete Research
Cement and Concrete Composites
Constuction and Building Materials
Materials and Structures
ASCE Journal of Materials in Civil Engineering
International Journal of Concrete Structures and Materials
ICE Green Materials
MDPI Polymers
MDPI Applied Sciences
MDPI Materials
MDPI Sustainability
ASTM Journal of Advances in Civil Engineering Materials



开授课程
福建农林大学
2020 - 2021学年
工程结构(本科)
土木工程专业英语(本科)
Advanced Concrete Materials (全英文)(研究生)
现代竹木结构(研究生)
2019 - 2020学年
工程结构(本科)
工程管理专业英语(本科)
土木工程专业英语(本科)
Advanced Concrete Materials (双语)(研究生)
现代竹木结构(研究生)
2018 – 2019学年
工程结构(本科)
Advanced Concrete Materials (双语)(研究生)
俄勒冈州立大学
2016年夏季学期独立授课(本科)CCE321: Civil and Construction Engineering Materials
2016年冬季学期联合授课(研究生)CE520: Experimental Method for Cement-Based Materials
2015年夏季学期独立授课(本科)CCE321: Civil and Construction Engineering Materials
2014年秋季学期联合授课(研究生)CCE523 Concrete Durability
2014年春季学期独立授课(本科)CCE321: Civil and Construction Engineering Materials




科研项目
1.闽北山地地质灾害防治福建省高校工程研究中心开放基金资助项目. 改性纳米纤维素晶体增强水泥基复合材料的制备及其性能研究, 2021/1~2022/12, 2万元, 在研,主持
2.福建农林大学****科研人才计划. 纳米纤维素晶体高性能混凝土的工作性能及其形成机理研究, 2020/1~2022/12, 30万元, 在研,主持
3.国家自然科学基金青年项目. 纳米纤维素晶体对水泥基材料水化反应及微观结构影响机理的研究(**), 2019/1~2021/12, 24万元, 在研,主持
4.福建省科技厅面上项目.铝酸三钙对纳米纤维素晶体水泥基复合材料水化反应及微观结构影响机理的研究(2019J01407), 2019/11~2022/11,10万元,在研,主持
5.福建省中青年教师教育科研项目. 水泥基材料三球中心加载抗弯试验尺寸效应研究(JT180157), 2019/1~2021/12, 2万元,在研, 主持
6.福建农林大学科技发展基金. 竹原纤维增强沥青混凝土制备及性能(KFa17259A), 2017/1~2019/12, 27万元, 已结题, 参加
7.福建农林大学青年教师科研启动基金项目. 纳米纤维素晶体高性能混凝土制备及其性能表征, 2018/12~2021/12, 在研, 主持
8.US Endowment for Forestry and Communities Grant. Developing Approaches to Use Cellulose Nanocrystals (CNC) on a Commercial Scale as a Sustainable Value Material for Portland Cement and Concrete, 2015/01/01~2017/12/31, $215250.00 已结题, 参加
9.Oregon Best Commercialization Grant. Preliminary Investigation of Bio-Polymer Adhesive Systems in Particleboard, $54248.00, 2015/09~2015/12, 已结题,参加
10.Oregon Built Environment & Sustainable Technologies (BEST) Center. Oregon BEST Post-Doctoral Scholarship, 2013/07~2015/03, $75000.00, 已结题, 主持
11.Oregon Transportation Research and Education Consortium Small Starts Grant. OTREC-2013-635, Cracking Susceptibility of Concrete Made with Recycled Concrete Aggregates, 2013/03~2013/12, $9981.00, 已结题, 参加
12.Oregon Department of Transportation. SPR728, Development of Shrinkage Limits and Testing Protocols for High Performance Concrete, 2011/10~2013/12, $229089.00, 已结题, 参加
13.Oregon Department of Transportation. SPR711, Internal Curing of High Performance Concrete for Bridge Decks, 2010/07~2012/09, $214825.00, 已结题, 参加




论文著作
期刊论文(*通讯作者)

J15.Yang Ban, Wei Zhi, Mingen Fei, Wendi Liu, Demei Yu, Tengfei Fu*, Renhui Qiu*, “Preparation and Performance of Cement Mortar Reinforced by Modified Bamboo Fibers”, Polymers, 12(11), 2650, 2020
J14. Tengfei Fu*, Jason Weiss, “The Ball-on-Three Ball Test – Application to Cement Paste and Mortar”, Advances in Civil Engineering Materials, Vol. 9, No. 1, 2020
J13.Fransisco Montes*, Tengfei Fu*, Jeffrey Youngblood, Jason Weiss, “Rheological Impact of Using Cellulose Nanocrystals (CNC) in Cement Pastes”, Construction and Building Materials, Construction and Building Materials, 235, 117497, 2020
J12.Mingen Fei, Tuan Liu, Tengfei Fu, Jinwen Zhang, Yuchao Wu, Renhui Qiu*, Wendi Liu*, “Styrene-Free Soybean Oil Thermoset Composites Reinforced by Hybrid Fibers from Recycled and Natural Resources”, ACE Sustainable Chemistry & Engineering, 2019, 7, pp.17808-17816, Oct. 2019
J11.Wendi Liu, Tingting Chen, Mingen Fei, Renhui Qiu*, Demei Yu, Tengfei Fu, Jianhui Qiu*, “Properties of Natural Fiber-Reinforced Biobased Thermoset Biocomposites: Effects of Fiber Type and Resin Composition”, Composites Part B, Vol 171, pp. 87-95, Apr. 2019
J10.Tengfei Fu*, Francisco Montes, Prannoy Suraneni, Jeffrey Youngblood, Pablo Zavattieri, Robert Moon, Jason Weiss, “The influence of Cellulose Nanocrystals (CNCs) on the Hydration and strength of Portland Cement pastes”, Polymers, 9, 424, 2017
J9.Kimberly Kurtis, Yunping Xi, Michal Glinicki, John Provis, Eric Giannini, Tengfei Fu, “Can we design concrete to survive nuclear environments?” Concrete International, 39(11), Nov. 2017
J8. Prannoy Suraneni, Tengfei Fu*, Vahid Jafari Azad, O. Burkan Isgor, Jason Weiss, “Pozzolanicity of Finely Ground Lightweight Aggregates”, Cement and Concrete Composite, Vol 88, Jan., 2018, pp. 115-120
J7. Tom Yu, Casimir Bognacki, Karthik Obla, Matthew D’Ambrosia, James Hicks, Jason Weiss, Tengfei Fu, Eric Giannini, “Canwe implement performance-based specifications for durability and longevity of concrete? Will they work?” Concrete International, 39(1), Jan. 2017
J6. Tengfei Fu*, Tyler Deboodt, Jason H. Ideker, “Development of Shrinkage Limit Specification for High Performance Concrete Used in Bridge Decks”, Cement and Concrete Composites, Vol 72, Sept. 2016, pp.17-26
J5. Tyler Deboodt, Tengfei Fu*, Jason H. Ideker, “Evaluation of FLWA and SRAs on Autogenous Deformation and Long-term Drying Shrinkage of High Performance Concrete,” Construction and Building Materials, Vol 119, Aug. 2016, pp. 53-60
J4.Matthew P. Adams*, Tengfei Fu, Adal G. Cabrera, Monica Morales, Jason H. Ideker, O. Burkan Isgor, “Cracking Susceptibility of Concrete Made with Coarse Recycled Concrete Aggregates,” Construction and Building Materials, Vol 102, Part 1, Jan. 2016, pp. 802-810
J3. TylerDeboodt*, Tengfei Fu, Jason H. Ideker, “Durability Assessment of High-Performance Concrete with SRAs and FLWAs,” Cement and Concrete Composites, Vol. 57, Mar. 2015, pp 94-101
J2. Tengfei Fu*, Tyler Deboodt, Jason H. Ideker, “A Simple Procedure on Determining Long-Term Chemical Shrinkage for Cementitious Systems Using Improved Standard Chemical Shrinkage Test”, Journal of Materials in Civil Engineering, Aug. 2012, Vol. 24, No. 8, pp. 989-995
J1.Xi Wu, Tengfei Fu, Zhimin Wu*, “Experimental Study on Double-K Fracture Parameters and Fracture Energy of Self-Consolidating Lightweight Concrete.” Engineering Mechanics, Vol.27 Sup.II, Dec. 2010, pp. 249-254 (in Chinese)
其他会议/期刊论文
C3. Tom Yu, Casimir Bognacki, Karthik Obla, Matthew D’Ambrosia, James Hicks, Jason Weiss, Tengfei Fu, Eric Giannini, “Canwe implement performance-based specifications for durability and longevity of concrete? Will they work?” Concrete International, 39(1), Jan. 2017
C2.Tengfei Fu, Matthew P. Adams, Jason H. Ideker, “Preliminary Study on A Calcium Aluminate Cement Concrete Maturity Theory in Predicting Conversion”, 14th International Congress on the Chemistry of Cement (ICCC 2015, Beijing, China), Oct. 2015
C1.Tengfei Fu, Tyler Deboodt, Jason H. Ideker, “Development of Shrinkage Limits and Testing Protocols for High Performance Concrete: A Review”, The 12th International Conference on Recent Advances in Concrete Technology and Sustainability Issues, Prague Czech Republic,Non-refereed conference supplementary document, Nov. 2012
专业书籍
B2.Tengfei Fu, Robert Moon, Jeff Youngblood, Pablo Zavattieri, Jason Weiss, “Cellulose-Reinforced Nanofiber Composites: Production, Properties and Applications – Chapter 20. Nanocellulose as Additive for Cement Composites”, pp 455-482, Woodhead Publishing, July, 2017, ISBN: 59
B1.[全书翻译与校正]“Comparative Design of Structures – Concepts and Methods”, Shaopei Lin, and Zhen Huang, SJTU-Springer, 404 pages, Nov. 2015, ISBN: 34
项目报告
R3.O. Burkan Isgor, Jason H. Ideker, Tengfei Fu, Matthew P. Adams, “Cracking Susceptibility of Concrete Made with Recycled Concrete Aggregates,” Report for the Oregon Transportation Research and Education Consortium (OTREC), OTREC-SS-725, Dec. 2013, pp 34
R2.Jason H. Ideker, Tyler Deboodt, Tengfei Fu, “Internal Curing of High Performance Concrete for Bridge Decks,” SPR711 Final Report for Oregon DOT, FHWA-OR-RD-13-06, Mar. 2013, pp 156
R1.Jason H. Ideker, Tengfei Fu, Tyler Deboodt, “Development of Shrinkage Limits and Testing Protocols for ODOT High Performance Concrete,” SPR728 Final Report for Oregon DOT, FHWA-OR-RD-14-09, Dec. 2013, pp 87



科技成果
专利
T1.吴智敏; 程功; 付腾飞; 吴熙; 郑建军; 董伟; 何化南; 赵艳华, 自重不做功的混凝土三点弯曲梁断裂能测试装置 , 2010, 中国, CN3.9


媒体报道
M4.“New green machine accelerates Oregon’s sustainable building industry”, by Dacotah-Victoria Splichalova, Daily Barometer, Jan. 12, 2013
http://www.dailybarometer.com/news/article_b629ecf2-7c0c-11e3-b63c-0019bb30f31a.html
M3.“Iraqi-OSU partnership would put $100M toward building, education in Iraq”, by Lindsey O’Brien, Daily Journal of Commerce, Dec. 7, 2011.
http://djcoregon.com/news/2011/12/07/iraqi-osu-partnership-would-put-100m-toward-building-education-in-iraq/M2.“On a Solid Foundation: Student's Research on Concrete Earns Recognition from Industry”, Headline Story, College of Engineering News, Oregon State University, July 15, 2011.
http://engineering.oregonstate.edu/news/story/3126M1.“PCA Education Foundation Selects 2011 Research Fellows”, PCA Newsroom, May 31, 2011.
http://www.cement.org/newsroom/2014/09/04/pca-education-foundation-selects-2011-research-fellows

会议报告

P19.“Application of Cellulose Nanocrystal (CNC) in Cementitious Materials– A Review”, Advances in Low Carbon Building Materials and Structures Forum, Fuzhou, Jan. 3, 2020
P18.“Preparation and Performance of Cellulose Nanocrystal (CNC) – Cement Composites”, CCCM4, Zhuhai, China, Nov 28th - 30th., 2019
P17.“Preparation and Performance of Pervious Concrete with Woodtar-Formaldehyde Modified Epoxy Resin”, the Second International Forum on Green Development and Engineering Innovation, Nanjing, China, Nov. 23th - 24th, 2019
P16.“Pozzolanic Reactivity of Processed Sugar Cane Bagasse Ashes as Supplementary Cementitious Materials”, ACEM2019 & SBMS2, Oct 25th– 27th, Fuzhou, China
P15.“Mechanical and Durability Properties of Cement Mortar Reinforced by Silane Treated Bamboo Fibers”, ACI Spring Convention 2019, Research in Progress Session, Quebec City, Canada, Mar. 25-28, 2019
P14.“Application of Cellulose Nanocrystal in Cementitious Materials”, 6th International Symposium on Nanotechnology in Construction (NICOM6), Hong Kong, China, Dec. 2nd– 5th, 2018
P13.“A State-of-the-art-review of Cellulose Nanomaterials: Manufacture, and Their Applications in Civil and Infrastructure Engineering”, 11thAsian-Australasian Conference on Composite Materials, Cairns, Australia, Jul. 29th– Aug. 1st, 2018.
P12.“The Influence of Aluminate Phases on Hydration of Portland Cements Containing Cellulose Nanocrystals (CNC)”, 8th ACBM/ACER, Georgia Institute of Technology, Atlanta, GA, June 26-28, 2017.
P11.“Using Cellulose Nanocrystals (CNC) with Portland Cements – Role of Aluminate Phases”, ACI Spring Convention 2017, Research in Progress Session, Detroit, Michigan, Mar. 26-29, 2017
P10.“Prediction of Long-Term Drying Shrinkage of Portland Cement Concrete Based on Short-Term Experimental Measurements”, ACI Spring Convention 2017, Open Topic Session, Detroit, Michigan, Mar. 26-29, 2017
P9.“Development of High-Performance cement Composite Using Cellulose Nanocrystals”, ACI Spring Convention 2016, Technical Session: Nano Fiber in Cement and Concrete, Milwaukee, Wisconsin, April 10-13, 2016
P8.“Using Temperature History to Predict Conversion in Calcium Aluminate Cement System – Maturity Theory A Preliminary Study on A Calcium Aluminate Cement Concrete Maturity Theory in Predicting Conversion”, 14th International Congress on the Chemistry of Cement (ICCC), Beijing, China, Oct. 13-16, 2015
P7.“Effect of Wet Curing Duration on Mechanical Properties and Pore Structures of High Performance Concrete”, Open Paper Session, Reno, Nevada, Mar. 22-26, 2014
P6.“Synergistic Effect of Internal Curing Combined with SRA on Cracking Potential of HPC”, Research in Progress Session, Reno, Nevada, Mar. 22-26, 2014
P5.“Development of Shrinkage Limits and Testing Protocols for High Performance Concrete”, 4th ACBM/ACER, University of Illinois at Urbana-Champaign, Urbana, IL, July 8-10, 2013.
P4.“Shrinkage and Cracking Study on High Performance Concrete for Bridge Decks: A Review”, 12th International Conference on Recent Advances in Concrete Technology and Sustainability Issues, Prague Czech Republic, Oct. 30-Nov. 1, 2012.
P3.“Prediction of Drying Shrinkage for Internally Cured HPC”, ACI Fall 2012 Convention, Session of The Economics, Performance and Sustainability of Internally Cured Concrete, Toronto, Canada,Oct. 20-24, 2012.
P2.“Conversion Characterization of Calcium Aluminate Cements Using Improvement Chemical Shrinkage Testing Procedure”, EPFL-LMC-Ski Seminar, Leysin, Switzerland, Jan. 18-20, 2012
P1.“Improvements for Determining Chemical Shrinkage of Cementitious Systems Using ASTM C1608”, ACI Fall Convention 2011, Open Paper Session, Cincinnati, Ohio, Oct. 15-19, 2011.
其他受邀报告

I5.“Application of Cation Surface-Modified Cellulose Nanocrystal (CNC) in Cement Paste”, Invited Talk, Wuyi University, Wuyishan, Fujian, Oct. 9, 2020
I4.“Calibrating ACI 209 Drying Shrinkage Model Using Short Term Experimental Data”, ACI 209 C committee meeting, Washington, D.C., Oct. 26, 2014
I3.“Concrete Sustainability”, Materials Research Society Student Chapter, Materials Science Program, Oregon State University, Corvallis, OR, Mar. 13, 2014
I2.“Introduction of OSU Green Building Materials Laboratory (GBML)”, Wood Science and Engineering Seminar, Oregon State University, Corvallis, OR, Oct. 9, 2013
I1.“Long-Term Chemical Shrinkage for Blended Portland Cement”, Material Science Seminar, Oregon State University, Corvallis, OR, Feb. 2, 2012

海报展示
O9.“Cellulose Nanocrystal (CNC) and Its Application in Cementitious Materials”, The 73rd RILEMWEEK 2019 International Conference on Innovative Materials for Sustainable Civil Engineering, Nanjing, China, Aug. 26-30, 2019
O8.“Manufacture of Cellulose Nanocrystal (CNC) and Its Application in Cementitious Materials – A Review”, 2018 Advanced Materials for Sustainable Infrastructure Development Gordon Research Conference, Hong Kong. China, Aug.5-10, 2018
O7.“Using Temperature History to Predict Conversion in Calcium Aluminate Cement System – Maturity Theory”, 4thAnnual Postdoc Research Symposium and Vendor Show, Corvallis, OR, Oct. 20, 2015
O6.“Green Building Materials Laboratory at Oregon State University”, Oregon BEST FEST 2014, Portland, OR, Sept. 16, 2014
O5.“Cracking Potential of Concrete Made with Recycled Concrete Aggregates (RCA)”, Oregon BEST FEST 2013, Portland, OR, Sept. 12, 2013
O4.“Proposed Shrinkage Limits Criteria for Oregon Department of Transportation High Performance Concrete to Ensure High Crack-Resistant Bridge Deck”, Oregon BEST FEST 2012, Portland, OR, Sept. 12, 2012
O3.“Long-term Shrinkage Prediction Using Improved ACI 209 Model for Local Materials”, 3rd ACBM/ACER, University of Texas, Austin, TX, June 9-12, 2012
O2.“Early-age Volume Change and Conversion of Calcium Aluminate Cements”, Expansive Reactions in Cement-Based Materials Seminar, Oregon State University, Corvallis, OR, July 27-29, 2011
O1.“Chemical Shrinkage and Autogenous Deformation of High Performance Cementitious Systems”, 2nd ACBM/ACER, Vanderbilt University, Nashville, TN, July 24-26, 2011











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