Nano-CaCO3 enhances PVA fiber-matrix interfacial properties: an experimental and molecular dynamics study

被引:9
作者
Feng Yong [1 ]
Li Yuan [1 ]
Zhao Chen [2 ]
Qin Dajing [1 ]
Wang Chao [1 ]
Wang PeiYan [1 ]
机构
[1] Henan Univ Technol, Coll Civil Engn, Zhengzhou, Peoples R China
[2] Henan Vocat Coll Water Conservancy & Environm, Dept Hydraul Engn, Zhengzhou, Peoples R China
关键词
Nano-CaCO3; modified PVA fiber; molecular dynamics; mechanical properties; interfacial properties; fiber reinforced concrete; CALCIUM-SILICATE-HYDRATE; MECHANICAL-PROPERTIES; SURFACE-TREATMENT; CONCRETE; BEHAVIOR; COMPOSITES; SIMULATION; STRENGTH; PERFORMANCE; RESISTANCE;
D O I
10.1080/08927022.2022.2094373
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The mechanical properties of fiber-reinforced concrete largely depend on its interfacial properties. Fibers with a low aspect ratio are often pulled out at the fracture surface, and the potential of fiber-reinforced concrete is far from being fully realized. This is because the fiber-matrix interface bond strength is weak, resulting in low fiber reinforcement efficiency? which is the main challenge for organic fiber reinforced concrete. To further optimize the reinforcing and toughening effect of fibers on concrete, in this study, nano-CaCO<INF>3</INF> was used to treat PVA fibers by a sol-gel method, aiming to enhance the interfacial bonding properties of fiber-reinforced concrete. The mechanical properties test results show that the compressive strength and flexural strength of the modified PVA fiber reinforced concrete are increased by 8.1% and 35.95%, respectively. Finally, Molecular dynamics simulation results reveal the interaction mechanism between CaCO<INF>3</INF> and the cement matrix-fiber interface. The Ca<INF>C-S-H</INF>-O<INF>CaCO<INF>3</INF></INF> forms a high-strength interfacial connection and is stronger than the H bond formed at the C-S-H/PVA interface. Therefore, the C-S-H/CaCO<INF>3</INF> interface interaction energy far exceeds that between C-S-H/PVA. Comprehensive analysis shows that nano-CaCO<INF>3</INF> enhances the interfacial bonding performance of fiber-matrix, which has certain theoretical reference significance for developing high-performance fiber reinforced concrete.
引用
收藏
页码:1378 / 1392
页数:15
相关论文
共 63 条
[31]   A synergic effect of CNT/Al2O3 reinforcements on multiscale epoxy-based glass fiber composite: fabrication and molecular dynamics modeling [J].
Roustazadeh, Davood ;
Aghadavoudi, Farshid ;
Khandan, Amirsalar .
MOLECULAR SIMULATION, 2020, 46 (16) :1308-1319
[32]   Seeding Effect of Nano-CaCO3 on the Hydration of Tricalcium Silicate [J].
Sato, Taijiro ;
Diallo, Fatoumata .
TRANSPORTATION RESEARCH RECORD, 2010, (2141) :61-67
[33]   Effect of interphase percolation on mechanical behavior of nanoparticle-reinforced polymer nanocomposite with filler agglomeration: A multiscale approach [J].
Shin, Hyunseong ;
Yang, Seunghwa ;
Choi, Joonmyung ;
Chang, Seongmin ;
Cho, Maenghyo .
CHEMICAL PHYSICS LETTERS, 2015, 635 :80-85
[34]   Pullout behavior of polypropylene fibers from cementitious matrix [J].
Singh, S ;
Shukla, A ;
Brown, R .
CEMENT AND CONCRETE RESEARCH, 2004, 34 (10) :1919-1925
[35]  
Stang VCLH., 1995, DESIGN STRUCTURAL AP
[36]   Agglomeration mechanism and restraint measures of SiO2 nanoparticles in meta-aramid fibers doping modification via molecular dynamics simulations [J].
Tang, Chao ;
Li, Xu ;
Tang, Yujing ;
Zeng, Jie ;
Xie, Jingyu ;
Xiong, Bifeng .
NANOTECHNOLOGY, 2020, 31 (16)
[37]   The interactions between water molecules and C-S-H surfaces in loads-induced nanopores: A molecular dynamics study [J].
Tang, Shengwen ;
A, Hubao ;
Chen, Jingtao ;
Yu, Wenzhi ;
Yu, Peng ;
Chen, E. ;
Deng, Hongyang ;
He, Zhen .
APPLIED SURFACE SCIENCE, 2019, 496
[38]   Dynamic simulations of stimuli-responsive switching of azobenzene derivatives in self-assembled monolayers: reactive rotation potential and switching functions [J].
Tian, Ziqi ;
Wen, Jin ;
Ma, Jing .
MOLECULAR SIMULATION, 2015, 41 (1-3) :28-42
[39]  
Tian-hang ZPYY-hKL-yZ., 2020, SCI TECHNOLOGY ENG, V20, P4507
[40]   Hybrid glass fibre reinforced composites containing silica and cement microparticles based on a design of experiment [J].
Torres, Rubens Bagni ;
dos Santos, Julio Cesar ;
Panzera, Tulio Hallak ;
Christoforo, Andre Luis ;
Borges, Paulo H. Ribeiro ;
Scarpa, Fabrizio .
POLYMER TESTING, 2017, 57 :87-93