Showing 241 - 260 results of 406 for search '(( significant decrease decrease ) OR ( significant ((force decrease) OR (forces increased)) ))~', query time: 0.41s Refine Results
  1. 241

    Bending moment in the tension zone. by Maogang Tian (21485116)

    Published 2025
    “…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
  2. 242

    Displacement cloud maps. by Maogang Tian (21485116)

    Published 2025
    “…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
  3. 243

    Morphing mesh. by Maogang Tian (21485116)

    Published 2025
    “…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
  4. 244

    Bending moment in the pressure zone. by Maogang Tian (21485116)

    Published 2025
    “…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
  5. 245

    VPF and VIPF. by Maogang Tian (21485116)

    Published 2025
    “…The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
  6. 246
  7. 247

    Data Sheet 1_2D speckle-tracking echocardiography assessment of left atrial and left ventricular mechanics: outcomes in patients with atrial fibrillation treated with hybrid ablati... by Andrea Maria Paparella (20865617)

    Published 2025
    “…There was an increase in all LV hemodynamic forces (HDFs) and in particular: LVLF and LVsysLF increased post-ablation [15.5% vs 10.4%, P < 0.001] and [21.5% vs 14.11%, P < 0.001], respectively. …”
  8. 248

    Data Sheet 1_Reconstructing Holocene centennial cooling events: synthesized temperature changes, chronology, and forcing in the Northern Hemisphere.docx by Sergey A. Gorbarenko (13696381)

    Published 2024
    “…However, the sequence of HCCEs 3b, 3a, and 2b (over 4.53–3.42 BP), accompanied by small changes in the TSI, was likely forced by an increase in ENSO variability, leading to remarkable changes in the tropical processes and a southward shift of the ITCZ, coeval with the collapse of the Chinese Neolithic cultures and onset of the Holocene Neoglacial. …”
  9. 249

    Data Sheet 1_The walking surface influences vertical ground reaction force and centre of pressure data obtained with pressure-sensing insoles.pdf by Elke Warmerdam (13895493)

    Published 2024
    “…Walking on a slope affects VGRF and COP parameters, and in addition, the compliance of the surface increases their variability. When analysing gait data measured via insoles during daily living, we recommend to correct for the surface type to decrease variability.…”
  10. 250
  11. 251

    The error between test and simulation results. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  12. 252

    Relevant parameters of cutting head and pick. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  13. 253

    The stress variation of Node 33. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  14. 254

    Deformation trend of the gyration platform. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  15. 255

    3D model of cutting head. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  16. 256

    Rigid-flexible coupling mode. by Shan Gao (46743)

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  17. 257

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

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  18. 258

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

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  19. 259

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

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”
  20. 260

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

    Published 2024
    “…<div><p>In order to investigate the dynamic characteristics and fatigue life of the roadheader’s gyration platform during the cutting process, the calculation of the cutting head load was achieved based on the force and its transformation of cutting pick, and the transient loads in the two lateral swing directions of the roadheader were calculated. …”