Showing 3,501 - 3,520 results of 21,342 for search '(( significant decrease decrease ) OR ( significant ((a decrease) OR (small decrease)) ))', query time: 0.65s Refine Results
  1. 3501

    The flow of cutting performance calculation. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  2. 3502

    Results of different optimization schemes. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  3. 3503

    Modal shape of the gyration platform. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  4. 3504

    Deformation variation of Node 33. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  5. 3505

    Optimization parameters of gyration platform. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  6. 3506

    Property parameters of rock samples. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  7. 3507

    Modal frequency of the gyration platform. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  8. 3508

    Optimized design nodes of different parameters. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  9. 3509

    Fatigue life distribution of gyration platform. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  10. 3510

    Force analysis of cutting pick. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  11. 3511

    Swing geometric model of roadheader. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  12. 3512

    Cutting test. by Shan Gao (46743)

    Published 2024
    “…The correlation established indicates that elevated swing speeds lead to heightened dynamic stress on the gyration platform, consequently causing a noteworthy decrease in its fatigue life. To ensure the reliability of the gyration platform, it is crucial to judiciously select the swing speed based on the hardness of the rock, especially when cutting in different swing directions. …”
  13. 3513
  14. 3514
  15. 3515
  16. 3516
  17. 3517
  18. 3518

    Data. by Rim Kooli (15426816)

    Published 2025
    Subjects:
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  20. 3520