Showing 981 - 1,000 results of 23,096 for search '(( significant ((force decrease) OR (fold increases)) ) OR ( significant decrease decrease ))', query time: 0.46s Refine Results
  1. 981

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  2. 982

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  3. 983

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  4. 984

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  5. 985

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  6. 986

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  7. 987

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  8. 988

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  9. 989

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  10. 990

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

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  11. 991

    Cutting test. by Shan Gao (46743)

    Published 2024
    “…The study reveals that during the left-to-right cutting of the rock, the gyration platform experiences significant stress, with the high dynamic stress focus primarily concentrated at the bolt holes connected to the rotary bearings. …”
  12. 992
  13. 993
  14. 994
  15. 995
  16. 996
  17. 997
  18. 998

    电针预处理通过心肌缺血损伤 棕色脂肪组织和 BMP3b/Smad1/5 通路小鼠 by Danying Qian (21730250)

    Published 2025
    Subjects: “…electroacupuncture significantly decreased…”
  19. 999
  20. 1000