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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Influence of the remelting process on the fatigue behavior of electron beam irradiated UHMWPE.
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Influence of the remelting process on the fatigue behavior of electron beam irradiated UHMWPE.

机译:重熔工艺对电子束辐照的UHMWPE疲劳性能的影响。

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摘要

Electron beam irradiation at doses below 150 kGy is a widely used technique to obtain highly crosslinked ultra-high-molecular-weight polyethylene (UHMWPE). Its current use in total joint replacement components may improve wear resistance and decrease UHMWPE particle debris. However, currently used post-irradiation thermal treatments, which aim to decrease the free radicals within the material, introduce microstructural changes that affect UHMWPE mechanical properties, particularly the fatigue strength. This influence may be crucial in total knee replacements, where fatigue-related damage limits the lifespan of the prosthesis. Therefore, more studies are required to understand UHMWPE fatigue after current crosslinking protocols. This study was planned to evaluate the influence of UHMWPE remelting after irradiation on the material fatigue resistance. The remelting was achieved at 150 degrees C for 2 h on UHMWPE previously irradiated at 50, 100, and 150 kGy. Fatigue evaluation included short-term tests under cyclic tensile stress with zero load ratio, R = 0, and 1 Hz. In addition, stress-life testing was performed using 12% yield as the criterion for failure. Near-threshold fatigue crack propagation experiments were also performed at a frequency of 5 Hz, and crack length was measured in nonthermally treated and remelted irradiated UHMWPE. Crystallinity percentage was calculated from DSC measurements. The results pointed out that irradiation positively contributed to total life analysis, but the further remelting process decreased the flaw initiation resistance. On the other hand, both processes negatively affected the fatigue resistance of notched components. From a clinical point of view, the results suggest that the material fatigue behavior should be carefully studied in new UHMWPE to avoid changes related to material processing.
机译:低于150 kGy剂量的电子束辐照是获得高度交联的超高分子量聚乙烯(UHMWPE)的广泛使用的技术。目前在全关节置换组件中使用它可以改善耐磨性并减少UHMWPE颗粒碎屑。但是,当前使用的旨在减少材料中自由基的辐照后热处理会引入影响UHMWPE机械性能(尤其是疲劳强度)的微观结构变化。这种影响在全膝关节置换中可能至关重要,在这种情况下,与疲劳有关的损伤会限制假体的使用寿命。因此,需要更多的研究来了解当前交联方案后的UHMWPE疲劳。计划进行这项研究以评估辐照后UHMWPE重熔对材料抗疲劳性的影响。在预先以50、100和150 kGy辐射的UHMWPE上,在150摄氏度下重熔2小时。疲劳评估包括在零拉伸比,R = 0和1 Hz的循环拉伸应力下的短期测试。另外,使用12%的屈服强度作为失效标准进行了应力寿命测试。还以5 Hz的频率进行了近阈值疲劳裂纹扩展实验,并在未经热处理和重熔的辐照UHMWPE中测量了裂纹长度。由DSC测量值计算结晶度百分比。结果表明,辐照对总寿命分析有积极贡献,但进一步的重熔过程降低了抗裂纹引发性。另一方面,这两个过程都不​​利地影响缺口构件的抗疲劳性。从临床角度来看,结果表明,应在新的UHMWPE中仔细研究材料的疲劳行为,以避免与材料加工相关的变化。

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