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To address this issue, nano-materials and polymers as composite modifiers are studied to improve base asphalt performance at both high temperature and low temperature.
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Three types of high-viscosity modifiers were studied in this research: Japan high-viscosity modifier TPS.
Here, the interaction of polymer or organic modifier with clay and polymer and modifier is studied.
Effect of the surface modifier was studied and two different fatty acids (stearic and palmitic) were compared.
Several reaction parameters such as flow and concentration of the reactant solutions, design of the reactor and addition of a growth modifier were studied.
Furthermore, the use of a helium modifier is studied and proved to be an effective method to improve the detection capacity of the FAIMS for VOCs.
The effect of cyclic and branched alkanes on the activity of a commercial crystal modifier was studied and observed to be a complex one.
The surface characteristics of modifier were studied by utilizing scanning electron microscope (SEM) and X-ray diffractometer (XRD) followed by atomic force microscopy (AFM).
Three types of asphalt binder with different concentrations (at 0.3%, 0.5%, 0.8% by weight) of the warm compaction modifier were studied respectively.
The effects of chemical sample modifiers and elements supporting analyte condensation are studied.
The safety aspects of using these energetic salts as burning-rate modifiers have been studied in terms of the impact-sensitivity of the modified propellants.
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