composition optimization
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2021 ◽  
Vol 13 (1) ◽  
Author(s):  
Honghong Zhao ◽  
Fengyuan Wang ◽  
Liru Cui ◽  
Xianzhu Xu ◽  
Xijiang Han ◽  
...  

AbstractMagnetic carbon-based composites are the most attractive candidates for electromagnetic (EM) absorption because they can terminate the propagation of surplus EM waves in space by interacting with both electric and magnetic branches. Metal-organic frameworks (MOFs) have demonstrated their great potential as sacrificing precursors of magnetic metals/carbon composites, because they provide a good platform to achieve high dispersion of magnetic nanoparticles in carbon matrix. Nevertheless, the chemical composition and microstructure of these composites are always highly dependent on their precursors and cannot promise an optimal EM state favorable for EM absorption, which more or less discount the superiority of MOFs-derived strategy. It is hence of great importance to develop some accompanied methods that can regulate EM properties of MOFs-derived magnetic carbon-based composites effectively. This review comprehensively introduces recent advancements on EM absorption enhancement in MOFs-derived magnetic carbon-based composites and some available strategies therein. In addition, some challenges and prospects are also proposed to indicate the pending issues on performance breakthrough and mechanism exploration in the related field.


電腦學刊 ◽  
2021 ◽  
Vol 32 (5) ◽  
pp. 101-114
Author(s):  
Dan Liu Dan Liu ◽  
Shu-Wen Yao Dan Liu ◽  
Yan Zeng Shu-Wen Yao ◽  
Ke Zhao Yan Zeng ◽  
Yan-An Guo Ke Zhao ◽  
...  


2021 ◽  
Vol 852 (1) ◽  
pp. 012110
Author(s):  
A V Voronina ◽  
A V Vishnyakova ◽  
A A Mironov ◽  
A A Ushanov ◽  
O N Zubko ◽  
...  

2021 ◽  
Vol 7 (8) ◽  
pp. 1389-1405
Author(s):  
Liubov Lisienkova ◽  
Tatiana Shindina ◽  
Nina Orlova ◽  
Liudmila Komarova

The problem of the composition optimization of concrete mixes seems to be quite urgent as errors at the composition design stage can lead to problems of concrete at the stage of exploitation such as delamination, cracking etc. Reasonable selection of concrete mix components guarantees the required strength of concrete and reinforced concrete structures in the future. This paper investigates the influence of the concrete mix composition on the strength of concrete. Firstly, typical risks that can occur on the composition design stage have been identified through the experts' interviews. Secondly, this risks were associated with indicators and characteristics that can be tested experimentally. Running of several mathematical models has allowed to outline concrete mix parameters of highest importance and formulate an empirical equation for the dependence of the strength of the concrete mixture on the values of the coarse aggregate quality factor, the fine aggregate fraction and the consumption of the Portland cement has been proposed. As a result, a methodology for controlling the quality of concrete at the stage of the composition design has been formulated. Doi: 10.28991/cej-2021-03091732 Full Text: PDF


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