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We also purified, identified, and characterized novel proteins from human renal stone matrix.
Stone matrix asphalt (SMA) is known to have high resistance to permanent deformation and reflective cracking due to their stone structure but similar to other hot mixes it has a high energy intake during its production.
As a result, the improved cohesion of the stone matrix is less prone to water absorption.
Stone matrix asphalt has higher proportion of coarse aggregates and binder mortar compared to conventional mixtures.
Differential erosion in presence of quartz-siliceous veins (Fig. 1a) within the stone matrix is observed.
The present study investigates the benefits of modifying the asphalt and stone matrix asphalt (SMA) mixture in flexible pavement.
Two types of dense graded surface mixture and one type of stone matrix asphalt (SMA) were selected as underlying layer.
The high temperature stability, low-temperature crack resistance, and moisture susceptibility of stone matrix asphalt SMA with PSCF were evaluated.
However, there are still limitations assigned to the heterogeneous distribution of the nanoparticles within the stone matrix.
An optimal use of lime is significantly important with regard to expensive cost of the lime and its improving properties in stone matrix asphalt (SMA).
Besides few small cracks crossing the stone matrix, no sign of granular disaggregation or grains corrosion typically associated to the marble weathering are present.
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