...
首页> 外文期刊>Multibody system dynamics >Structural analysis of the intervertebral discs adjacent to an interbody fusion using multibody dynamics and finite element cosimulation
【24h】

Structural analysis of the intervertebral discs adjacent to an interbody fusion using multibody dynamics and finite element cosimulation

机译:椎间盘邻近椎间融合器的结构分析,采用多体动力学和有限元模拟

获取原文
获取原文并翻译 | 示例

摘要

This work describes a methodology for the dynamic and structural analysis of complex (bio)mechanical systems that joins both multibody dynamics and finite element domains, in a synergetic way, through a cosimulation procedure that takes benefit of the advantages of each numerical formulation. To accomplish this goal, a cosimulation module is developed based on the gluing algorithm X-X, which is the key element responsible for the management of the information flux between the two software packages (each using its own mathematical formulation and code). The X-X algorithm uses for each cosimulated structure multiple pairs of reference points whose kinematics are solved by the multibody module and prescribed, as initial data, to the finite element counterpart. The finite element module, by its turn, solves the structural problem imposed by the prescribed kinematics, calculates the resulting generalized loads applied over the reference points and return these loads back to the multibody module that uses them to solve the dynamic problem and to calculate new reference kinematics to prescribe to the finite element module in the next time step. The proposed method is applied to study the cervical spine dynamics in a pathologic situation in which an intersomatic fusion is simulated to confirm its potential advantages. Taking into account the proposed simulation scenario, a cervical spine multibody model that includes the rigid vertebrae, the facet joints' and spinous processes' contacts, ligaments and the finite element models of the intervertebral discs, and their surrogates is developed. The proposed model is simulated for extension in a forward dynamics perspective.
机译:这项工作描述了一种复杂的(生物)机械系统的动力学和结构分析方法,该方法通过协同仿真程序以协同方式利用多数值动力学和有限元域,从而利用了每个数值公式的优点,从而将多体动力学和有限元域结合在一起。为了实现此目标,基于粘合算法X-X开发了一个协同仿真模块,该模块是负责管理两个软件包之间的信息流的关键元素(每个软件包都使用自己的数学公式和代码)。 X-X算法为每个共同仿真的结构使用多对参考点,这些参考点的运动学由多体模块求解,并作为初始数据指定给有限元对应项。有限元模块依次解决了由规定的运动学引起的结构问题,计算了施加在参考点上的最终广义载荷,并将这些载荷返回给多体模块,多体模块使用它们来解决动力学问题并计算新的参考运动学,以在下一个时间步中指定有限元模块。所提出的方法被用于研究病理情况下的颈椎动力学,在这种情况下模拟了体间融合以确认其潜在的优势。考虑到拟议的模拟方案,开发了包括刚性椎骨,小关节和棘突的接触,韧带和椎间盘的有限元模型及其替代物的颈椎多体模型。所提出的模型在前向动力学方面进行了仿真扩展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号