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人工老化后,由聚醚醚酮和二硅酸锂基台以及不同冠材料组成的单牙种植体冠的抗失败能力。

Failure resistance of single-implant crowns assembled from polyetheretherketone and lithium disilicate abutments and different crown materials after artificial aging.

出版信息

Int J Comput Dent. 2024 Oct 15;27(3):273-280. doi: 10.3290/j.ijcd.b4200857.

Abstract

AIM

The objective of the present study was to investigate the effect of using different materials for the fabrication of implant abutments and crowns on the mechanical behavior of implant-supported single crowns after artificial aging. The materials were tested in different combinations to reveal whether using stiff or resilient materials as an abutment or a crown material might influence the fracture strength of the whole structure.

MATERIALS AND METHODS

A total of 40 implants (blueSKY) were restored with identical custom-made CAD/CAM abutments milled out of lithium disilicate or ceramic-reinforced polyetheretherketone (PEEK) and divided into five test groups (n = 8). Forty crowns made of three different materials (zirconia, lithium disilicate, and ceramic-reinforced PEEK) were used to restore the abutments. Specimens were subjected to mechanical loading up to 1,200,000 cycles in a chewing simulator (Kausimulator) with additional thermal cycling. The surviving specimens were subjected to quasi-static loading using a universal testing machine (Z010).

RESULTS

The PEEK abutments with zirconia crowns showed the highest median failure load (3890.5 N) while the PEEK abutments with lithium disilicate crowns exhibited the lowest (1920 N). Fracture and deformation occurred in both the crowns and abutments.

CONCLUSION

The failure load of the restorations was influenced by the material of the abutment and crown. Restoring PEEK abutments with zirconia crowns showed a high failure load and no screw loosening.

摘要

目的

本研究旨在探讨不同材料制作种植体基台和牙冠对人工老化后种植体支持的单冠机械性能的影响。通过不同组合测试材料,以确定使用刚性或弹性材料作为基台或牙冠材料是否会影响整个结构的断裂强度。

材料和方法

总共 40 个植入物(blueSKY)采用相同的定制 CAD/CAM 基台修复,这些基台由锂硅玻璃陶瓷增强聚醚醚酮(PEEK)或陶瓷增强聚醚醚酮铣削而成,并分为五个测试组(n=8)。40 个牙冠由三种不同材料(氧化锆、锂硅玻璃陶瓷、陶瓷增强 PEEK)制成,用于修复基台。将样本在咀嚼模拟器(Kausimulator)中进行高达 120 万次的机械加载,同时进行额外的热循环。幸存的样本在万能试验机(Z010)上进行准静态加载。

结果

氧化锆牙冠的 PEEK 基台具有最高的中位失效载荷(3890.5 N),而锂硅玻璃陶瓷牙冠的 PEEK 基台具有最低的失效载荷(1920 N)。牙冠和基台都发生了断裂和变形。

结论

修复体的失效载荷受基台和牙冠材料的影响。用氧化锆牙冠修复 PEEK 基台显示出高失效载荷和无螺丝松动。

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