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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microscopic full-field three-dimensional strain measurement during the mechanical testing of additively manufactured porous biomaterials
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Microscopic full-field three-dimensional strain measurement during the mechanical testing of additively manufactured porous biomaterials

机译:显微镜全场三维应变测量在含有含有多孔多孔生物材料的机械测试过程中

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摘要

A custom-designed micro-digital image correlation system was used to track the evolution of the full-surface three-dimensional strain field of Ti6Al4V additively manufactured lattice samples under mechanical loading. The high-magnification capabilities of the method allowed to resolve the strain distribution down to the strut level and disclosed a highly heterogeneous mechanical response of the lattice structure with local strain concentrations well above the nominal global strain level. In particular, we quantified that strain heterogeneity appears at a very early stage of the deformation process and increases with load, showing a strain accumulation pattern with a clear correlation to the later onset of the fracture.
机译:定制设计的微量数字图像相关系统用于跟踪Ti6Al4V的全表面三维应变场的演变在机械负载下加上含有的晶格样品的全表面三维应变场。 允许该方法的高倍率能力使压力分布降至支柱水平,并公开了晶格结构的高度异质机械响应,局部应变浓度远高于标称全球应变水平。 特别地,我们量化了应变异质性出现在变形过程的非常早期的阶段,并且用载荷增加,显示出与骨折的后后发作的呈现累积模式。

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