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4篇 您的检索式:作者名="Mermoz Emmanuel"
    题名 作者 年代 出处 被引量
1Wear Behavior of a Bio-inspired Bearing for off-center Loads显示文摘Misalignment is one of the most common causes of wear in bush bearings.Design improvements have been proposed by many researchers.Unfortunately,it did not efficiently reduce the misalignment.Classic geometrical designs sometimes reach their limits.For this reason,a bio-inspired design is proposed to solve the impediment.In this article,a bio-inspired bearing suited to misalignment was tested and compared to a classical bush bearing.The contact pressures of both bearings were compared with static Finite Element(FE)simulations for off-center load.Due to the complex shape of the involved contact,the performances of both bearings were also studied over time.Their wear behaviors were predicted with a numerical method.The methodologies emplaced to simulate the wear were described in this paper.Particularly,the wear coefficient determination obtained by experimental testing was detailed.The pressure value,the contact zone and the wear depth were compared and discussed.The wear results for the classical bearing are in accordance with the literature.The simulations show a deeper wear on the classical bush bearing than on the bio-inspired bearing.This leads to a longer period of service life for the bio-inspired bearing.Delphine Sysaykeo Jean-Marc Linares Emmanuel Mermoz 2020Journal of Bionic Engineering2020,17,6:0
2Erratum to:Joint Loading Estimation Method for Horse Forelimb High Jerk Locomotion:Jumping显示文摘The names of the authors were incorrect in the published paper and should be revised as'Joanne Becker,Emmanuel Mermoz,Jean-Marc Linares'.Joanne Becker Mermoz Emmanuel Linares Jean-Marc 2019Journal of Bionic Engineering2019,16,6:0
3Bio-inspired Topological Skeleton for the Analysis of Quadruped Kinematic Gait显示文摘Benjamin Boudon Jean-Marc Linares Anick Abourachid Arthur Vauquelin Emmanuel Mermoz 2018Journal of Bionic Engineering2018,15,5:0
4Joint Loading Estimation Method for Horse Forelimb High Jerk Locomotion:Jumping显示文摘Maximal local loads in animal joints are necessary to design bio-inspired mechanical joints.Many studies presented methods to determine joint reaction forces in humans and animals.However,many of these methods are invasive,and no work has been published yet about the joint reaction forces in the horse forelimb during jumping.Non-invasive methods to measure the kinematics and ground reaction force of a horse forelimb were used in this work.A musculoskeletal model of horse forelimb was built with mechanical methods for the estimation of joint reaction forces.The entire forelimb was reconstructed by scanning real bones geometry with a 3D optical scanner and modeling all the muscles on a Computer Assisted Design(CAD)software.The model dynamics were simulated with OpenSim in order to estimate the joint loading.This study allows knowing an order of magnitude of the loads at the joints at jumping in order to determine latter the maximal joint contact loading values that will be a key at designing bio-inspired joints for mechanical assemblies.Joanne Becker Mermoz Emmanuel Linares Jean-Marc 2019Journal of Bionic Engineering2019,16,4:0
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