aramid fiber
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2022 ◽  
Vol 2022 ◽  
pp. 1-7
Author(s):  
Jiulong Sha ◽  
Jiawen Gao ◽  
Peiyao Wang ◽  
Qiannan Zhang ◽  
Xinyi Zhang ◽  
...  

Because of poor surface hydrophilicity, meta-aramid fibers readily form flocs by intertwining or interlacing, and this severely affects the uniformity of meta-aramid paper. To investigate the flocculation mechanism of meta-aramid fiber suspensions, the critical flocculant concentration, shear, and compressive network strength of meta-aramid fiber suspensions were examined. A hand sheet former was used to study the influence of the yielding properties of suspensions on the uniformity of meta-aramid paper, and the relationship between the formation index and rheological properties was determined. The results showed that the critical gel concentration ranged from 0.37 to 0.68 g/L, which was much lower than that of plant fiber suspensions. In addition, the compressive yield stress ( P y ) and shear yield stress ( τ y ) of the meta-aramid fiber suspensions were found to increase linearly and exponentially, respectively, with an increasing concentration, and the uniformity index of the paper sheets was found to depend on a power of τ y ⋅ P y . This provides an effective method for predicting paper sheet uniformity.


Materials ◽  
2022 ◽  
Vol 15 (2) ◽  
pp. 482
Author(s):  
Kinga Korniejenko ◽  
Beata Figiela ◽  
Celina Ziejewska ◽  
Joanna Marczyk ◽  
Patrycja Bazan ◽  
...  

The aim of this article was to analyze the fracture behavior of geopolymer composites based on fly ash or metakaolin with fine aggregate and river sand, with three types of reinforcement: glass, carbon, and aramid fiber, at three different temperatures, approximately: 3 °C, 20 °C, and 50 °C. The temperatures were selected as a future work temperature for composites designed for additive manufacturing technology. The main research method used was bending strength tests in accordance with European standard EN 12390-5. The results showed that the addition of fibers significantly improved the bending strength of all composites. The best results at room temperature were achieved for the metakaolin-based composites and sand reinforced with 2% wt. aramid fiber—17 MPa. The results at 50 °C showed a significant decrease in the bending strength for almost all compositions, which are unexpected results, taking into account the fact that geopolymers are described as materials dedicated to working at high temperatures. The test at low temperature (ca. 3 °C) showed an increase in the bending strength for almost all compositions. The grounds of this type of behavior have not been clearly stated; however, the likely causes of this are discussed.


Author(s):  
Khalid Abdel Naser Abdel Rahim

A presentation of a new innovative smart designs of protrusions in Aramid Fiber Reinforced Polymer (AFRP) which could lead the manufacturing industry of AFRP to a new era. The classic straight AFRP strips has a major disadvantage when externally bonded with other engineering materials using bonding adhesive. When exposed to high temperatures, the bonding adhesive slides causing a weak bondage or a complete debonding in some cases between the AFRP and engineering material surfaces. Thus, the purpose of protrusions in AFRP laminates is to eliminate the slippage of the bonding adhesive between the AFRP strips and other engineering material surfaces. This takes place by eliminating the frictional factor between the surfaces of AFRP laminate and bonded engineering material.


The Analyst ◽  
2022 ◽  
Author(s):  
Shan Zhou ◽  
Lei Xie ◽  
Miao Yan ◽  
Hui Zeng ◽  
Xin Zhang ◽  
...  

Biomimetic nacre-like membranes composed of two-dimensional lamellar sheets and one-dimensional nanofibers exhibit high mechanical strength and excellent stability. Thus, they show substantial application in the field of membrane science and...


2021 ◽  
Author(s):  
V. V. Khammatova ◽  
R. F. Gainutdinov ◽  
E. A. Khammatova ◽  
L. V. Titova

2021 ◽  
Author(s):  
Mehmet Emin Çetin ◽  
Yusuf Baştosun ◽  
Ahmet Caner Tatar ◽  
M. Huseyin CETIN ◽  
Okan Demir ◽  
...  

Author(s):  
Riccardo Scazzosi ◽  
Samia Danuta Brejão de Souza ◽  
Sandro Campos Amico ◽  
Marco Giglio ◽  
Andrea Manes

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