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聚醚醚酮(PEEK)作为义齿材料的力学性能测定。

Determination of Polyetheretherketone (PEEK) mechanical properties as a denture material.

作者信息

Muhsin Saja A, Hatton Paul V, Johnson Anthony, Sereno Nuno, Wood Duncan J

机构信息

Prosthetic Dental Technology, College of Health and Medical Technology, Middle Technical University, Baghdad, Iraq.

Academic Unit of Restorative Dentistry, School of Clinical Dentistry, Faculty of Medicine Dentistry and Health, University of Sheffield, Sheffield S10 2TA, UK.

出版信息

Saudi Dent J. 2019 Jul;31(3):382-391. doi: 10.1016/j.sdentj.2019.03.005. Epub 2019 Mar 13.

Abstract

PURPOSE

To optimize the gypsum mold temperatures for pressed PEEK, and to estimate the impact, tensile strength and flexural properties of pressed and milled PEEK. Where appropriate, these properties were compared with those of PMMA.

MATERIALS AND METHODS

Since the mold temperature could affect the properties of the injected parts, the temperature of 20 gypsum specimens was monitored using the multi-thermocouple system (n = 5). A total of 210 specimens were prepared for mechanical tests according to the ISO standard for denture base polymer (n = 10). The Izod impact, tensile strength, and flexural behavior were assessed. PEEK-OptimaNI1 (PEEK-pressed) was tested after processing via the pressing method at4 different mold temperatures. Machining PEEK-Juvora (PEEK-milled) specimens were prepared using the CAD-CAM production method. Data were analyzed via one-way ANOVA performed at a confidence level of 95% and a significant P-value of (P ≤ 0.05).

RESULTS

In comparison to the furnace temperature more heat was required to preheat the gypsum mold up to 100, 150, 175 and 200 °C for pressing purposes. The highest impact strength was 5.7 kJ/m for PEEK-pressed at 100 °C mold temperature and 4 kJ/m for PEEK-milled. The latter had a higher tensile strength of 118 MPa. The best result for PEEK-pressed was 97 MPa at 200 °C mold temperature. Under a 4-point bending test, Young's modulus of PEEK-milled was 5591 MPa, while the highest for PEEK-pressed was 4936 MPa at 200 °C mold temperature.

CONCLUSIONS

Compared to PMMA, given the superior mechanical properties of PEEK, it may become the material of choice for future use. Dentures constructed from PEEK polymer could well be routinely constructed in the near future.

摘要

目的

优化压制聚醚醚酮(PEEK)的石膏模具温度,并评估压制和铣削PEEK的冲击强度、拉伸强度和弯曲性能。在适当情况下,将这些性能与聚甲基丙烯酸甲酯(PMMA)的性能进行比较。

材料与方法

由于模具温度会影响注塑部件的性能,使用多热电偶系统监测20个石膏样本的温度(n = 5)。根据义齿基托聚合物的ISO标准,总共制备了210个样本用于机械测试(n = 10)。评估了艾氏冲击强度、拉伸强度和弯曲性能。PEEK-OptimaNI1(压制PEEK)在4种不同模具温度下通过压制方法加工后进行测试。使用计算机辅助设计与制造(CAD-CAM)生产方法制备铣削PEEK-Juvora(铣削PEEK)样本。数据通过置信水平为95%且显著P值为(P≤0.05)的单因素方差分析进行分析。

结果

与炉温相比,为了压制目的,将石膏模具预热到100、150、175和200°C需要更多热量。模具温度为100°C时压制的PEEK冲击强度最高,为5.7 kJ/m,铣削PEEK为4 kJ/m。后者的拉伸强度更高,为118 MPa。压制PEEK在模具温度为200°C时的最佳结果为97 MPa。在四点弯曲试验中,铣削PEEK的杨氏模量为5591 MPa,压制PEEK在模具温度为200°C时最高,为4936 MPa。

结论

与PMMA相比,鉴于PEEK具有优异的机械性能,它可能成为未来使用的首选材料。由PEEK聚合物制成的假牙很可能在不久的将来常规制作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7943/6626261/7905560b0d44/gr1.jpg

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