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The squeezing test is used in this paper as a rheological behaviour identification tool of cement-based materials in order to evaluate the extrusion ability.
Cellulose ether (CE) admixtures are used to improve the water retaining properties of cement-based materials in order to ensure their homogeneity during casting operations.
Over the last years, many research groups have developed supported TiO2-based materials in order to improve the engineering applications of photocatalytic technologies.
Incorporation of a small content of undecenoic acid is proposed as an approach to introduce polar groups within the macromolecular architecture of high density polyethylene-based materials in order to promote an easier degradation after their useful service life.
In contrast, we have surveyed and summarized the literature regarding the use of fluorescence-based materials to detect changes in pH, oxygen level and highlight the low-cost green synthetic method of organometallic complexes, properties, and applications of the main group luminescence-based materials in order to get high yield.
In order to avoid convolution of the results due to the effects of eugenol-based provisional cement, only non-eugenol based materials were employed in this study.
Later came resin based materials.
These results can serve as a guideline for the preparation of these catalysts based on raw lignocellulosic materials in order to maximize their catalytic performance.
In comparison with conventional materials, the protein based material considered here features intriguing fracture properties.
It offers a simple way to design various monolayer MoS2 based catalysts in order to catalyze different materials by chose the reasonable dopants for stronger oxidation or reduction potential.
The high level of uncertainties inherent in the fatigue strength of the material and in the outcome of non-destructive inspection entails the use of reliability based optimization in order to identify an adequate maintenance scheduling [9,15,7,13,5,16].
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