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Coupling finite element analysis and multibody system dynamics for biological research

机译:耦合有限元分析和多体系统动力学的生物学研究

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摘要

Flexible Multibody System Dynamics (FMSD) is a simulation technique that can be used to study the behavior of the mechanical systems that consists of one or more deformable bodies. A deformable body can be modeled using a number of approaches while the floating frame of reference formulation is a widely used approach. In that approach, flexibility within Multibody System Dynamics (MSD) is described by employing the Finite Element Analysis (FEA) with a modal reduction approach. The applicability of an FMSD in the feeding mechanism of vertebrate structures is tested in order to utilize the potential of the method in biological research. Flexible Multibody System Dynamics is explored studying the feeding mechanism in a skull of Edingerella madagascariensis. Firstly, a static structural analysis is done using FEA and secondly, dynamic solutions based on FMSD are obtained by varying the number of deformation modes used in the modal reduction analysis. The conclusion is that use of this approach is feasible and efficient for the study of feeding mechanisms in vertebrate structures when a dynamic response should be evaluated.
机译:柔性多体系统动力学(FMSD)是一种仿真技术,可用于研究由一个或多个可变形体组成的机械系统的行为。可以使用多种方法对可变形体进行建模,而参考配方的浮动框架是一种广泛使用的方法。在该方法中,通过采用模态简化方法来使用有限元分析(FEA)来描述多体系统动力学(MSD)的灵活性。为了在生物学研究中利用该方法的潜力,测试了FMSD在脊椎动物结构的进食机制中的适用性。探索了柔性多体系统动力学,研究了马达加斯加爱丁格氏菌头骨中的进食机制。首先,使用有限元分析进行静态结构分析,其次,通过改变模态简化分析中使用的变形模式的数量,获得基于FMSD的动态解。结论是,当应该评估动态响应时,使用这种方法对于研究脊椎动物结构的进食机制是可行且有效的。

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