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Characterization of PEEK biomaterials using the small punch test.

机译:使用小冲孔试验表征PEEK生物材料。

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摘要

The small punch test is widely used to characterize the ductility and fracture resistance in metals and ceramics, when only a small volume of material is available. This study was conducted to investigate the suitability of the small punch test for characterizing polyetheretherketone (PEEK) polymeric biomaterials for changes in material grade, crystallinity, and molding process. The small punch test reproducibly characterized the mechanical behavior of PEEK and was able to distinguish differences induced by molding process alterations and annealing. Peak load was most sensitive to changes in crystallinity, grade, molding process, and increased with increasing crystallinity, but decreased with the addition of image contrast materials. The ultimate displacement was negatively correlated with crystallinity. Molding process conditions had the greatest influence on metrics of the small punch test, when compared with the effects of annealing and the addition of a radiopacifier. The results of this study validate the small punch test as a repeatable method for measuring the mechanical behavior of PEEK biomaterials.
机译:当只有少量材料可用时,小型冲孔试验广泛用于表征金属和陶瓷的延展性和抗断裂性。进行这项研究的目的是为了研究小冲孔试验对表征聚醚醚酮(PEEK)聚合生物材料在材料等级,结晶度和成型工艺方面的变化的适用性。小冲头测试可再现地表征PEEK的机械性能,并能够区分由成型工艺变更和退火引起的差异。峰值载荷对结晶度,等级,成型工艺的变化最敏感,并且随着结晶度的增加而增加,但随着添加图像对比材料而降低。最终位移与结晶度呈负相关。与退火和添加不透射线的效果相比,成型工艺条件对小冲头测试的指标影响最大。这项研究的结果验证了小冲头试验是一种可重复的方法来测量PEEK生物材料的机械性能。

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