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聚醚酮酮与甲基丙烯酸甲酯和二甲基丙烯酸酯基聚合物的键合行为。

Bonding Behaviour of Polyetherketoneketone to Methylmethacrylate- and Dimethacrylate-based Polymers.

出版信息

J Adhes Dent. 2017;19(4):331-338. doi: 10.3290/j.jad.a38894.

Abstract

PURPOSE

To investigate the impact of pretreatment and conditioning on bonding behavior of polyetherketoneketone (PEKK) to methylmethacrylate(MMA)- and dimethacrylate(DMA)-based polymers.

MATERIALS AND METHODS

1200 PEKK substrates (Pekkton ivory) were fabricated, air abraded (110 µm, Al2O3) and divided into 8 pretreatment groups as follows: 1. Visio.link (VL); 2. VL+ opaquer; 3. Pekk Bond (PB); 4. PB + opaquer; 5. plasma; 6. plasma + opaquer; 7. plasma + VL+ opaquer; 8. plasma + PB + opaquer. A low-density cold oxygen plasma was used to treat specimens in groups 5-8. All pretreated PEKK substrates were bonded with either MMA-based polymers (denture acrylic: "Anaxdent acryline") or DMA-based polymers (veneering composites: flowable "Anaxdent dentin flow" or packable "Anaxdent dentin paste"). On denture acrylic, the anaxgum opaquer paste was applied, and on veneering composites, the anaxblend opaquer paste. All specimens were stored in water for 24 h at 37°C, and 20 specimens of each subgroup were additionally thermocycled (5°C/55°C, 10,000x). Tensile bond strength (TBS) was measured and analyzed with the general linear model analysis, Kaplan-Meier survival estimates, and Breslow-Gehan tests.

RESULTS

The combination of plasma and VL showed the highest TBS results, followed by VL and the combination of plasma and PB. The lowest TBS was observed among PEKK specimens treated with plasma and without pretreatment, followed by specimens conditioned with PB. The application of an opaquer layer increased the TBS. Bonding to PEKK with MMA-based polymers showed higher TBS results than with DMA-based polymers. Among DMA-based polymers, the flowable polymer bonded significantly better to PEKK compared to paste polymer. After thermocycling, the TBS decreased.

CONCLUSION

Sufficient bonding to PEKK is possible when plasma treatment is used in combination with the tested adhesives and an opaquer layer.

摘要

目的

研究预处理和调节对聚醚酮酮(PEKK)与甲基丙烯酸甲酯(MMA)和二甲基丙烯酸酯(DMA)基聚合物结合行为的影响。

材料和方法

制作了 1200 个 PEKK 基底(Pekkton ivory),经空气喷砂(110 µm,Al2O3)处理后分为 8 个预处理组:1. Visio.link(VL);2. VL+opaquer;3. Pekk Bond(PB);4. PB+opaquer;5. plasma;6. plasma+opaquer;7. plasma+VL+opaquer;8. plasma+PB+opaquer。使用低密度冷氧等离子体处理组 5-8 中的标本。所有预处理的 PEKK 基底均与 MMA 基聚合物(义齿丙烯酸:“Anaxdent acryline”)或 DMA 基聚合物(贴面复合材料:可流动的“Anaxdent dentin flow”或可填充的“Anaxdent dentin paste”)结合。在义齿丙烯酸上,应用 anaxgum 遮色膏;在贴面复合材料上,应用 anaxblend 遮色膏。所有标本均在 37°C 的水中储存 24 小时,每个亚组的 20 个标本均进行热循环(5°C/55°C,10,000x)。测量并分析拉伸结合强度(TBS),采用一般线性模型分析、Kaplan-Meier 生存估计和 Breslow-Gehan 检验。

结果

等离子体与 VL 联合处理的 TBS 结果最高,VL 和等离子体与 PB 联合处理次之。未经等离子体预处理的 PEKK 标本的 TBS 最低,其次是经 PB 处理的标本。遮色层的应用提高了 TBS。与 MMA 基聚合物结合时,PEKK 的 TBS 结果更高,而与 DMA 基聚合物结合时,TBS 结果较低。在热循环后,TBS 降低。

结论

当使用等离子体处理联合测试的胶粘剂和遮色层时,PEKK 可以实现充分的结合。

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