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首页> 外文期刊>Journal of biomaterials science >Strain-controlled fatigue behaviors of porous PLA-based scaffolds by 3D-printing technology
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Strain-controlled fatigue behaviors of porous PLA-based scaffolds by 3D-printing technology

机译:3D印刷技术的应变控制基于PLA的支架的疲劳行为

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摘要

In the study, the low-cycle fatigue behaviors of 3D-printed poly lactic acid (PLA) scaffolds with 60% porosity and two kinds of geometrical pores were investigated under strain-controlled loading. The obtained Delta epsilon(a)-N-f curves were fitted by Coffin-Manson relation. The mechanical stability of the porous structure under cyclic loading was studied. Both kinds of specimens undergo the strain softening after the initial cyclic hardening. The scaffold with circular pore exhibits stable resistance to the fatigue damage which is desirable for bone repairing. Regarding to the accumulation of inelastic deformation, the triangular-scaffold is more sensitive to the cyclic load. The superior fatigue behaviors of the scaffold with circular pore is attributed to homogeneous distribution of the applied mechanical stress and diminishing stress concentration by the introduction of circular pore.
机译:在该研究中,在应变控制的负载下研究了3D印刷聚乳酸(PLA)支架的低循环疲劳行为,具有60%孔隙率和两种几何孔隙。 所获得的Delta epsilon(a)-n-f曲线被棺材 - 曼森关系拟合。 研究了循环载荷下多孔结构的机械稳定性。 两种样品在初始环状硬化后经过菌株软化。 具有圆形孔的支架表现出对骨骼修复所需的疲劳损伤的稳定性。 关于非弹性变形的积累,三角形支架对循环负载更敏感。 具有圆形孔的支架的优异疲劳行为归因于通过引入圆孔的应用机械应力和减少应力集中的均匀分布。

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