超弹性材料
软件
应变能密度函数
各向同性
计算机科学
固体力学
规范化(社会学)
MATLAB语言
应用数学
物理
数学
有限元法
热力学
程序设计语言
社会学
量子力学
人类学
作者
Recep Durna,Alp Kağan Açan,Oğuz Ziya Tikenoğulları,Hüsnü Dal
出处
期刊:SoftwareX
[Elsevier]
日期:2024-02-13
卷期号:26: 101642-101642
被引量:2
标识
DOI:10.1016/j.softx.2024.101642
摘要
In this work, a parameter identification software for the data -driven hyperelasticity frameworks proposed by Dal et al. (Journal of the Mechanics and Physics of Solids 179, 105381, 2023), and Tikenogullariet al. (Journal of the Mechanics and Physics of Solids 181, 105453, 2023) is introduced. These data -driven hyperelasticity frameworks allow direct incorporation of experimental data into the constitutive model with the usage of B -splines, removing the requirement of a predetermined mathematical formula for the strain-energy density function. Three isotropic and two dispersion -type anisotropic data -driven formulations are embedded in the software. Additionally, three established models from the literature are included for comparison purposes. An optimization procedure is employed to identify the control points, also referred to as material parameters. This process involves tailoring the model to best fit data obtained from uniaxial tension, triaxial shear, pure shear, and (equi)biaxial tension experiments. The model calibration phase incorporates the normalization condition and the polyconvexity condition is enforced through the control points of the B -splines in order to ensure a stable constitutive response.
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