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On the front cover of each binder, tape a label containing your name.
The rheological behavior of each binder before and after the emission of VOCs was compared.
Dynamic Shearing Rheometer (DSR) with different test modes were utilized to analyze the rutting resistance and fatigue property of each binder while Bending Beam Rheometer (BBR) test was used to analyze the low-temperature properties of each binder.
Through infrared spectrum (IR) analysis and differential scanning calorimeter (DSC) tests, the microstructure of each binder were analyzed and compared.
The thermal stability and susceptibility of each binder to thermal decomposition were evaluated by using TG and DTG curves, which indicated the structural characteristics of binder and demonstrated the conclusion drawn by DSC analysis further.
The activation energy of each binder type was analyzed based on the viscosity test results and Arrhenius equation to estimate the energy required to overcome the intermolecular forces between the molecules in the asphalt binder to initiate flow.
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Six factors: binder content, steam amount, mixing time, impeller speed, spray pause time, and filler content were investigated using a two-level quarter-fraction factorial design of experiment (DOE) for each binder type.
The selected αRep bind EGFP efficiently, although, due to the partial sampling of the sequence space, each binder is unlikely to display the ′optimal′ side chain combination for its binding surface.
The test results indicated that, to produce PG 76 binder by modifying 7% GTR and other polymers are feasible and the base binder and polymer type affect the creep and creep recovery behaviors, viscoelastic properties, and relaxation characteristics of each modified binder.
Excitation spectra were acquired from the films made of each pigment-binder mixture (Figure 6) and were compared to the absorption spectra conducted on the pigment powders without a binder (Figure 7).
Three plain concrete cylinders (100 mm × 200 mm) for each of binder type and curing age were cast, for evaluating the chloride penetrability.
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