supported by the Institute of Civil Military Technology Cooperation funded by the Defense Acquisition Program Administration and Ministry of Trade,Industry and Energy of Korean government under grant No 23-CM-AI-08.
Amidst the ever-growing interest in high-mass-loading Li battery electrodes,a persistent challenge has been the insufficient continuity of their ion/electron conduction pathways.Here,we propose cellulose elementary fi...
Background:Trunk lean angle is an underrepre sented biomechanical variable for modulating and redistributing lower extremity joint loading and potentially reducing the risk of running-related overuse injuries.The purp...
supported by the National Natural Science Foundation of China(Grant 42204006);the Education Commission of Hubei Province of China(Grant D20232802);the Open Fund of Wuhan,Gravitationand Solid EarthTides,National Observationand Research Station(Grant WHYWZ202407);the Open Fund of Hubei Luojia Laboratory(Grant 230100020,230100019).
Surface deformation calculations due to environmental loading typically rely on the Preliminary Reference Earth Model(PREM),which assumes a homogeneous and isotropic Earth structure,leading to noticeable errors.To enh...
supported by the BK21 FOUR funded by the Ministry of Education of Korea and National Research Foundation of Korea,a Korea Agency for Infrastructure Technology Advancement(KAIA)grant funded by the Ministry of Land,Infrastructure,and Transport(Grant 1615013176);IITP(Institute of Information&Coummunications Technology Planning&Evaluation)-ICAN(ICT Challenge and Advanced Network of HRD)grant funded by the Korea government(Ministry of Science and ICT)(RS-2024-00438411).
This paper proposes a novel cargo loading algorithm applicable to automated conveyor-type loading systems.The algorithm offers improvements in computational efficiency and robustness by utilizing the concept of discre...
financially supported by the National Natural Science Foundation of China (No.42172292);Taishan Scholars Project Special Funding,and Shandong Energy Group (No.SNKJ2022A01-R26);funded by the China Scholarship Council (CSC No.202006220274)。
Understanding the anchorage performance of en-echelon joints under cyclic shear loading is crucial for optimizing support strategies in jointed rock masses.This study examines the anchorage effects on enechelon joints...
supported by National Natural Science Foundation of China(Nos.82271019,82472149,82471024);Sichuan Science and Technology Program(No.24ZDYF0099);Research and Develop Program,West China Hospital of Stomatology Sichuan University(RD-03-202101)to J.W.
The ambiguity of etiology makes temporomandibular joint osteoarthritis(TMJOA)“difficult-to-treat”.Emerging evidence underscores the therapeutic promise of exosomes in osteoarthritis management.Nonetheless,challenges...
the support by the Strategic Priority Research Program of Chinese Academy of Sciences(Grant No.XDB0620303);the Natural Science Basic Research Program of Shanxi(Program No.2023-JC-QN-0044).
In this study,the efects of defect,mean stress and lower loading are investigated for high cycle(HCF)and very high cycle fatigue(VHCF)behavior of Ti-6Al-4V alloy.It indicates that the S-N curve of Ti-6Al-4V alloy exhi...
supported by the National Key Research and Development Program of China(2023YFB2603500).
To reveal the effects of environmental and loading conditions,as well as asphalt properties on the nonlinear rheological behavior of asphalt,the large amplitude oscillation shear(LAOS)test was introduced,and the Fouri...
financially supported by the National Natural Science Foundation of China(Grant Nos.52225402,U1910206);the National Key Research and Development Project of China(Grant No.2022YFC3004602).
The fracture network of hydraulic crack is significantly influenced by the bedding plane in coalbed methane extraction.Under mode Ⅱ loading,crack deflection holds a key position in hydraulic cracking,especially in hy...
support of the National Natural Science Foundation of China under Grant Nos.12372367 and 12202081;the Special Foundation from the Institute of Fluid Physics of CAEP under Grant No.2022-YCHT-0641.
This study uses nonequilibrium molecular dynamics simulations to explore the dynamic failures and deformation mechanisms of a cylindrical shell composed of nanocrystalline nickel-titanium alloy under implosion loading...