Showing 1,801 - 1,820 results of 19,603 for search '(( significant increase decrease ) OR ( significant ((co decrease) OR (a decrease)) ))', query time: 0.65s Refine Results
  1. 1801

    MSD simulation results in asphalt fractions. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  2. 1802

    Simulation of asphalt density. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  3. 1803

    Performance index of 70# MA. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  4. 1804

    Original data. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  5. 1805

    SARA test results for different types of asphalt. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  6. 1806

    Basic properties of asphalt at different aging times. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  7. 1807

    Basic performance results of aged asphalt regenerated from WEO. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  8. 1808

    Microscopic morphology of different asphalts (200 × , 1000 × , and 1500×). by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  9. 1809

    FTIR test results of asphalt. by Yi Wang (32470)

    Published 2025
    Subjects: “…diffusion coefficients increased…”
  10. 1810

    Stir casting setup with furnace. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  11. 1811

    ANOVA for GRG. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  12. 1812

    Effect of Sliding Speed on GRG. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  13. 1813

    Impact of dispersoids on the Porosity of AMCs. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  14. 1814

    Image of Pin on disc setup. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  15. 1815

    Effect of Sliding Distance on GRG. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  16. 1816

    Micrograph of worn pin of LM6  by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  17. 1817

    Input Parameters and their levels. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  18. 1818

    Impact of B<sub>4</sub>C & Fly ash on the Density of AMCs. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  19. 1819

    Effect of Load on GRG. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”
  20. 1820

    Surface structure of B<sub>4</sub>C. by Charles Sarala Rubi (21608723)

    Published 2025
    “…</p><p>Results</p><p>Based on this study, the optimal values of S – 1.5 m/s, D – 500 m, L – 30 N, and R% – 9 wt% Hybrid (4.5% Fly ash and 4.5% B<sub>4</sub>C) are found to yield the lowest SWR and CoF. Wear rate of composite decreased with an increase in reinforcement particles. …”