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1. Salt-Frost Damage and Life Prediction of Nano-SiO 2 Polypropylene Fiber Aeolian Sand Concrete NSTL国家科技图书文献中心

Dong, Wei |  Su, Enze... -  《JOM》 - 2025,77(2) - 911~923 - 共13页

摘要: frost resistance of nano-silica polypropylene fiber | In this paper, the effects of PPF (0%, 0.25 | %, 0.50%, 0.75% and 1.00%) and NS (0% and 2.4%) on the |  aeolian sand concrete (NS-PPF-ASC) were studied by rapid |  salt freeze-thaw cycle (SFTC) test. Based on the
关键词: MECHANICAL-PROPERTIES

2. Carbon fiber/nano SiO 2 reinforced polyelectrolyte-graft UHMWPE for water lubricated superlubricity NSTL国家科技图书文献中心

Lan, Jianyong |  Mo, Chunshao... -  《Tribology International》 - 2025,202 - 共10页

摘要: nano SiO2, the COF of UHMWPE composites can be | In this study, a new kind of UHMWPE composite |  with ultralow coefficient of friction (COF) and high |  mechanical properties was developed. An efficient method |  was established to graft hydrophilic monomer 3
关键词: Water lubricated bearing |  UHMWPE composite |  Hydration lubrication |  Friction reduction |  Anti-wear

3. Multifunctional bionic hydrophobic cotton fabrics modified with cationic nano-SiO 2 /polyurethane acrylate NSTL国家科技图书文献中心

Gu, Biao |  Song, Hanzhe... -  《Progress in Organic Coatings》 - 2025,198 - 共13页

摘要: agents. In this work, a cationic nano-silica (DI-SiO2 | In recent years, SiO2 has gained widespread |  application in the hydrophobic finishing of cotton textiles |  due to its exceptional versatility and robust |  controllability. However, the inherent negative charge on the
关键词: Cationic nano-silica |  Polyurethane acrylate |  Cotton fabric |  Hydrophobic |  Multifunctional |  Durability

4. Energy storaging multifunctional carbon fiber composites based on Nano-SiO 2 reinforced epoxy matrix structural electrolytes NSTL国家科技图书文献中心

Yu, Benyuan |  Wang, Zhongbao... -  《Journal of Applied Polymer Science》 - 2025,142(5/6) - n/a~n/a - 共12页

摘要: conductivity, Nano-SiO2 was introduced into the solid polymer |  electrolytes. Nano-SiO2 reinforced E-SPEs (Nano-SiO2/E-SPEs |  S cm-1), compared to E-SPEs without Nano-SiO2 |  supercapacitor prepared with Nano-SiO2/E-SPEs exhibits the |  prepared with E-SPEs without Nano-SiO2 (51 W kg-1 and
关键词: electrochemistry |  polyelectrolytes |  resins |  structure-property relationships |  thermosets |  structure–property relationships

5. Investigation of Nano-SiO 2 Modified Power Capacitor Insulating Oil Behavior in Micro-Water Environments at Different Temperatures NSTL国家科技图书文献中心

Li, Yi |  Pang, Zhiyi... -  《Silicon》 - 2025,17(5) - 1025~1033 - 共9页

摘要: properties in nano-SiO2 modified insulating oil. Results |  diffusion, but nano-SiO2 particles limit this increase |  and dielectric properties, yet nano-SiO2 particles |  electrical characteristics. This indicates that nano-SiO2 | Due to its exceptional properties and cost
关键词: Nano-SiO2 |  Insulating oil |  Molecular dynamics |  Power capacitor

6. Nano-SiO 2 Composite Solid Polyelectrolyte Membranes Based on Bis-Imidazole Cationic-Functionalized Benzonorbornadiene Block Copolymers for Solid-State Lithium-Ion Batteries NSTL国家科技图书文献中心

He, Xiaohui |  Qin, Zengwei... -  《Journal of Applied Polymer Science》 - 2025,142(17/18) - n/a~n/a - 共15页

摘要: lithium trifluoromethanesulfonate (LiTFSI) and nano SiO2 |  investigates the effect of different nano-SiO2 content on the | Solid polyelectrolytes (SPEs) have garnered |  considerable attention and extensive research due to their |  exceptional flexibility, low cost, and ease of industrial
关键词: benzonorbornadiene block copolymer |  imidazole cations |  nano SiO2 |  polyionic liquids |  solid composite polyelectrolyte

7. Electromagnetic wave absorbing behavior of nano-Fe 1 Co 0.8 Ni 1 @C single-layer core-shell and nano-F e 1 Co 0.8 Ni 1 @SiO 2 @C double-layer core-shell composite particles NSTL国家科技图书文献中心

Li, Hongyang |  Wang, Ran... -  《Journal of Alloys and Compounds》 - 2025,1010 - 177008~ - 共10页

摘要:To effectively explore the influence of nano |  prepared nano core-shell Fe1Co0.8Ni1@X composite |  coating layer thicknesses ranging from 2 to 3 nm, 10-20 |  and C coating layer thicknesses of 2-3 nm. As the C |  core-shell structure on the absorption properties of
关键词: C coating layer |  SiO 2 coating layer |  Core-shell structure nano-composite particles |  Static magnetic properties |  Absorption properties

8. Improving the carbonation resistance of supersulfated cement by nano SiO2 and silica fume NSTL国家科技图书文献中心

Chen, Heng |  Song, Zhongxu... -  《Cement & concrete composites》 - 2025,158 - 105984~ - 共11页

摘要: utilize reactive siliceous materials (nano-silica (NS | Supersulfated cement (SSC) is a low-carbon |  material with limited carbonation resistance due to its |  high content of easily carbonated components (AFt | ) and low content of carbonation-resistant components
关键词: Supersulfated cement |  Carbonization resistance |  Nano SiO 2 |  SF

9. Thermal performance assessment of dish collector-integrated cooking application using TiO 2 /SiO 2 hybrid nano-enhanced coated receiver NSTL国家科技图书文献中心

Venkatesh, R. |  Singh, Ravindra Prat...... -  《Journal of the Brazilian Society of Mechanical Sciences and Engineering》 - 2025,47(3) - 共15页

摘要: matte paint in 2% weight ratios. The hybrid nano | , nano-enhanced coatings have emerged as a promising |  demonstrate that the hybrid nano-enhanced coating displays |  conditions. With the hybrid TiO2/SiO2 nano-coating, key |  potential of hybrid TiO2/SiO2 nano-coatings for dish
关键词: Dish collector |  Hybrid nano-coatings |  Receiver |  Solar cooking |  Thermal performance

10. Effect of nano MgO/SiO 2 additive on hydration and strength of self-compacting concrete fabricated by different processing methods NSTL国家科技图书文献中心

Mahmoudsaleh, Eisa |  Heidari, Ali... -  《Journal of the Australasian ceramic society》 - 2025,61(2) - 443~461 - 共19页

摘要: MgO and 0-2 wt% nano SiO2 (with respect to cement | The effects of the addition of 0-4 wt% nano |  nano MgO was higher than the samples with nano SiO2 |  under CO2 gas contained CaCO3, SiO2, and Ca(OH)(2 | ). With the addition of nano MgO, the density of
关键词: Nanopowders |  MgO |  SiO2 |  Self-compacting concrete |  Mechanical properties
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