论文标题
至少需要三个不变性,以建模不可压缩的横向各向同性材料的机械响应
At least three invariants are necessary to model the mechanical response of incompressible, transversely isotropic materials
论文作者
论文摘要
考虑了对横向各向同性非线性弹性材料的简单张力实验的建模。提出了一种测试协议,将正常力施加到矩形样品的一个边缘,其相反边的侧向移动但受到约束,因此不允许垂直位移。数值模拟表明,这种变形在整个样品中可能保持基本均匀,以进行中等变形。因此,进一步提出,可以对此类测试进行充分的建模,作为由三轴拉伸组成的同质变形,并伴有简单的剪切。因此,所提出的测试应是当前用作横向横向各向同性材料的材料表征测试的标准双轴测试的可行替代方法,尤其是软性生物组织。该分析的结果是轴上测试的运动通用关系,当假定应变 - 能量函数被认为是仅一种各向同性和一种各向异性不变的函数时,通常情况下会产生。普遍关系提供了对此假设的简单测试,这通常是为了数学便利性而进行的。数值模拟还表明,这种通用关系不太可能与实验数据一致,因此至少需要三个不变性来充分捕获横向各向同性材料的机械响应。
The modelling of off-axis simple tension experiments on transversely isotropic nonlinearly elastic materials is considered. A testing protocol is proposed where normal force is applied to one edge of a rectangular specimen with the opposite edge allowed to move laterally but constrained so that no vertical displacement is allowed. Numerical simulations suggest that this deformation is likely to remain substantially homogeneous throughout the specimen for moderate deformations. It is therefore further proposed that such tests can be modelled adequately as a homogenous deformation consisting of a triaxial stretch accompanied by a simple shear. Thus the proposed test should be a viable alternative to the standard biaxial tests currently used as material characterisation tests for transversely isotropic materials in general and, in particular, for soft, biological tissue. A consequence of the analysis is a kinematical universal relation for off-axis testing that results when the strain-energy function is assumed to be a function of only one isotropic and one anisotropic invariant, as is typically the case. The universal relation provides a simple test of this assumption, which is usually made for mathematical convenience. Numerical simulations also suggest that this universal relation is unlikely to agree with experimental data and therefore that at least three invariants are necessary to fully capture the mechanical response of transversely isotropic materials.