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The Fracture of Plasma-Treated Polyurethane Surface under Fatigue Loading

机译:疲劳载荷下等离子体处理的聚氨酯表面的断裂

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Plasma treatment of soft polymers is a promising technique to improve biomedical properties of the materials. The response to the deformation of such materials is not yet clear. Soft elastic polyurethane treated with plasma immersion ion implantation is subjected to fatigue uniaxial loading. The influence of the strain amplitude and the plasma treatment regime on damage character is discussed. Surface defects are studied in unloaded and stretched states of the material. As a result of fatigue loading, transverse cracks (with closed overlapping edges as well as with open edges deeply propagating into the polymer) and longitudinal folds which are break and bend inward, appear on the surface. Hard edges of cracks cut the soft polymer which is squeezed from the bulk to the surface. The observed damages are related to the high stiffness of the modified surface and its transition to the polymer substrate.
机译:对软质聚合物进行等离子体处理是一种改善材料生物医学性能的有前途的技术。对这种材料变形的反应尚不清楚。用等离子浸入离子注入处理的软弹性聚氨酯承受疲劳单轴载荷。讨论了应变幅度和等离子体处理方式对损伤特性的影响。在材料的未加载和拉伸状态下研究表面缺陷。由于疲劳负荷,表面上会出现横向裂纹(闭合的重叠边缘以及敞开的边缘深深地传播到聚合物中)和纵向折痕,这些折痕向内折弯。裂纹的硬边缘切割了从块体挤压到表面的柔软聚合物。观察到的损坏与改性表面的高刚度及其过渡到聚合物基材有关。

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