Winter W
Lehrstuhl für Technische Mechanik, Universität Erlangen-Nürnberg.
Biomed Tech (Berl). 1996 Jul-Aug;41(7-8):209-12. doi: 10.1515/bmte.1996.41.7-8.209.
A model making use of an elastic-plastic material law and continuous damage mechanics has been developed to define the strength of trabecular bone. With the aid of this model, the differences in the behaviour of bone under tensile and compressive stresses can be simulated numerically. It is also possible to calculate the loss of strength of bone via a damage variable. The calculated results are in good agreement with stress-strain curves determined experimentally.
已经开发了一种利用弹塑性材料定律和连续损伤力学的模型来定义小梁骨的强度。借助该模型,可以数值模拟骨在拉伸和压缩应力下行为的差异。通过损伤变量计算骨强度的损失也是可能的。计算结果与实验测定的应力-应变曲线吻合良好。