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首页> 外文期刊>International Journal of Engineering Science >Competition between radial expansion and axial propagation in bulging of inflated cylinders with application to aneurysms propagation in arterial wall tissue
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Competition between radial expansion and axial propagation in bulging of inflated cylinders with application to aneurysms propagation in arterial wall tissue

机译:充气缸鼓胀中径向扩张与轴向传播之间的竞争及其在动脉壁组织中动脉瘤传播中的应用

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摘要

In this paper, the (quasi-static) axial propagation of the bulging instability mode in thin-walled cylinders under inflation is analyzed. We present the analytical solution for this particular motion as well as for radial expansion during bulging evolution. For illustration, cylinders that are made of either isotropic incompressible non-linearly elastic materials or doubly fiber reinforced incompressible non-linearly elastic materials are considered. The former model is studied to asses the analytical methodology described in this paper. The latter one is related to soft tissue mechanical response and the study of bulging propagation in these models establishes the connection with the propagation of aneurysms in arterial wall tissue. In particular, we show that bulging instability for these material models under the conditions at hand propagates axially in agreement with the propagation of aneurysms in arterial wall tissue. Furthermore, useful insight has been obtained by examining the admissibility and stability of bulging motion. In particular, it is shown that axial propagation of bulging involves two periods: firstly, pressure remains essentially fixed during the ensuing propagation of the bulging instability mode beyond the onset of bifurcation until a suitable configuration is obtained; secondly, in subsequent motion, for further axial propagation of bulging pressure of inflation must be increased. Hence, the structure in subsequent motion can support higher pressures than the pressure associated with the onset of bulging bifurcation. Configurations can be described by two uniform cylinders joined by a transition zone. On the other hand, radial expansion of bulging is related to a decrease of pressure beyond the onset of bulging. Finite element simulations of some thick-walled cylinders made of both models are also performed. Comparison between numerical and analytical results shows a good agreement qualitatively.
机译:本文分析了充气条件下薄壁圆筒中胀形失稳模式的(准静态)轴向传播。我们提出了这种特殊运动以及膨胀过程中径向扩展的解析解决方案。为了说明,考虑了由各向同性不可压缩的非线性弹性材料或双纤维增强的不可压缩的非线性弹性材料制成的圆柱体。对前一种模型进行了研究,以评估本文所述的分析方法。后者与软组织的机械反应有关,在这些模型中膨胀膨胀的研究建立了与动脉瘤在动脉壁组织中的扩散的联系。特别地,我们显示出这些材料模型在手头条件下的膨胀不稳定性与动脉瘤在动脉壁组织中的传播一致地沿轴向传播。此外,通过检查凸起运动的可容许性和稳定性已经获得了有用的见识。特别地,显示出膨胀的轴向传播涉及两个周期:首先,在随后的膨胀不稳定性模式的传播超过分叉的开始期间,压力基本上保持固定,直到获得合适的构造为止。其次,在随后的运动中,为了进一步使膨胀的鼓胀压力轴向传播,必须增加。因此,处于后续运动中的结构所能支撑的压力要大于与凸出的分叉的开始所产生的压力。可以通过由过渡区连接的两个均匀圆柱体来描述配置。另一方面,鼓胀的径向膨胀与超出鼓胀开始的压力降低有关。还对由这两种模型制成的某些厚壁圆筒进行了有限元模拟。数值结果与分析结果之间的比较在质量上显示出良好的一致性。

著录项

  • 来源
    《International Journal of Engineering Science》 |2014年第12期|74-89|共16页
  • 作者单位

    Department of Continuum Mechanics and Structures, Escuela de Caminos, Canales y Puertos, Universidad Politecnica de Madrid, 28040 Madrid, Spain;

    Department of Continuum Mechanics and Structures, Escuela de Caminos, Canales y Puertos, Universidad Politecnica de Madrid, 28040 Madrid, Spain,Principia Ingenieros, Calle Velazquez, 94, 28006 Madrid, Spain;

    Department of Continuum Mechanics and Structures, Escuela de Caminos, Canales y Puertos, Universidad Politecnica de Madrid, 28040 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bulging bifurcation; Axial propagation of bulging; Aneurysms;

    机译:鼓胀分叉;凸出的轴向传播;动脉瘤;

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