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首页> 外文期刊>International journal of non-linear mechanics >Inversion point and internal volume of pressurized nonlinearly elastic tube
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Inversion point and internal volume of pressurized nonlinearly elastic tube

机译:加压非线性弹性管的反转点和内部体积

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摘要

The mechanical response of a hollow circular cylinder to internal pressure represents an important theoretical model which can be helpful in the design of tubular structures, and in the biomechanical research of tissues like arteries. It has been shown that arteries in vivo, in addition to pressure loading, sustain significant axial extension. It is manifested as a retraction that is observed when they are excised from a body. Previous research has shown that the axial prestretch ensures that the longitudinal motion of arteries is negligible under physiological conditions. The magnitude of the axial prestretch at which a tube does not change its length during pressurization, is referred to as the inversion point, because at this point mechanical response changes from pressure-induced elongation to pressure-induced shortening. In the present paper, another property observed when a nonlinear elastic tube is inflated at a constant axial load is studied. It is shown that at axial prestretching corresponding to the inversion point, when a tube exhibits no axial movement, the maximum internal volume of the pressurized tube is attained. This property is shown for thin-walled tubes made from material that is characterized with Mooney-Rivlin and Gent strain energy density function. Differences in the inflation-extension response obtained for Gent's material, and for the human abdominal aorta that is considered to be anisotropic and is described with exponential strain energy density, are studied in the paper. To the best of our knowledge, our study is the first showing that the maximum internal volume of the inflated tube is intimately linked with its axial prestretch.
机译:中空圆柱体到内部压力的机械响应代表了一个重要的理论模型,这可能有助于设计管状结构的设计,以及在动脉等组织的生物力学研究中。已经表明,体内动脉,除压力负荷外,维持显着的轴向延伸。它表现为从身体切除时观察到的缩回。以前的研究表明,轴向普拉斯确保动脉的纵向运动在生理条件下可以忽略不计。管道在加压期间不会改变其长度的轴向紫荆的大小被称为反演点,因为在此点机械反应从压力引起的伸长率变化到压力诱导的缩短。在本文中,研究了当非线性弹性管在恒定轴向载荷处膨胀时观察到的另一个性质。结果表明,在对应于反转点的轴向预留时,当管不具有轴向运动时,获得加压管的最大内部体积。该物业显示为由具有Mooney-Rivlin的材料制成的薄壁管,并突出能量密度功能。在纸上研究了用于Gent的材料的通胀扩展响应以及被认为是各向异性的人的腹部主动脉的差异,并以指数应变能量密度描述。据我们所知,我们的研究是第一个显示膨胀管的最大内部体积与其轴向普拉斯密切相关。

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