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Mechanical, Chemical, and Processing Properties of Specimens Manufactured from Poly-Ether-Ether-Ketone (PEEK) Using 3D Printing

机译:使用3D印刷制备的机械,化学品和加工性质由聚醚 - 醚 - 酮(PEEK)制造的标本

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摘要

As part of the experiments herein, the mechanical properties of specimens made of poly-ether-ether-ketone (PEEK) material using 3D printing technology were determined. Two populations of specimens were investigated, the first of which contained an amorphous structure, while the other held a crystal structure. The studies also investigated the influence of the print directionality on the mechanical properties obtained. Static tensile, three-point bending, and impact tests were carried out. The results for the effect of the structure type on the tensile properties showed that the modulus of elasticity was approximately 20% higher for the crystal than for the amorphous PEEK form. The Poisson’s ratios were similar, but the ratio was slightly higher for the amorphous samples than the crystalline ones. Furthermore, the studies included a chemical PEEK modification to increase the hydrophilicity. For this purpose, nitrite and hydroxyl groups were introduced into the chain by chemical reactions. The results demonstrate that the modified PEEK specimens had worse thermoplastic properties than the unmodified specimens.
机译:作为本文实验的一部分,测定了使用3D印刷技术制成的由聚醚 - 醚 - 酮(PEEK)材料制成的样本的机械性能。研究了两种样本的群体,其中第一个包含无定形结构,而另一个含有晶体结构。研究还研究了打印方向性对所获得的机械性能的影响。进行静态拉伸,三点弯曲和冲击试验。结构类型对拉伸性能的影响结果表明,晶体的弹性模量比无定形PEEK形式更高。泊松的比率相似,但无定形样品比结晶样品略高。此外,研究包括化学PEEK改性以增加亲水性。为此目的,通过化学反应将亚硝酸盐和羟基引入链中。结果表明,改良的PEEK样本比未修饰的标本更差。

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