Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5020562 | Journal of the Mechanical Behavior of Biomedical Materials | 2017 | 53 Pages |
Abstract
In this work, a micromechanical study using the lattice spring model (LSM) was performed to predict the mechanical properties of BPMs by simulation of the Brazilian test. Stress-strain curve and Weibull plot were analyzed for the determination of fracture strength and Weibull modulus. The presented model composed of linear elastic elements is capable of reproducing the non-linear behavior of BPMs resulting from the damage accumulation and provides consistent results which are in agreement with experimental measurements. Besides, it is also found that porosity shows significant impact on fracture strength while pore size dominates the Weibull modulus, which enables us to establish how choices made in the microstructure to meet the demand of brittle porous materials functioning in various operating conditions.
Related Topics
Physical Sciences and Engineering
Engineering
Biomedical Engineering
Authors
Zhiwei Cui, Yongmin Huang, Honglai Liu,