Int J Oral Maxillofac Implants. 2020 Nov/Dec;35(6):1209-1217. doi: 10.11607/jomi.8262.
The aim of this study was to inspect the mechanical fatigue behavior of an implant-supported restorative system using polyether ether ketone (PEEK) and yttria partially stabilized zirconia polycrystals (YZ) as materials for customized definitive implant-supported hybrid abutments, supporting two types of all-ceramic restorations: translucent zirconia (TZ) and lithium disilicate (LD) monolithic crowns.
Forty Morse taper implants were included in epoxy resin. Titanium intermediary abutments were placed, and the specimens were randomly allocated into four groups (n = 10) according to the customized hybrid abutment material (PEEK or YZ) and the monolithic crowns (TZ or LD) representing a maxillary central incisor crown. The specimens were subjected to a mechanical fatigue test (step-stress analysis) by means of an initial 200-N load for 5,000 cycles and subsequent increase of 50 N (step-size) at each 10,000 cycles, until failure occurred. The load at failure and number of cycles until failure were recorded; survival probabilities and specimen displacement were calculated for each step. The failure pattern was evaluated, and the Weibull modulus was obtained for each condition.
Fatigue of both types of crowns was not influenced by the abutment material (LD-PEEK = LD-YZ; TZ-PEEK = TZ-YZ). In the PEEK abutment, the values obtained in the LD and TZ crowns showed no statistical difference; however, in the YZ abutment, the TZ crown presented a load at failure value that was statistically higher than that for LD. Failure pattern analysis revealed a higher prevalence of crown fracture for LD groups, while screw/implant platform fractures were shown for TZ groups.
YZ and PEEK hybrid abutments promoted similar fatigue levels regardless of the crown materials, TZ crowns promoted a higher fatigue level than LD ones when associated with YZ abutments, and LD crowns promoted a similar fatigue level to TZ ones when associated with PEEK custom abutments. Higher prevalence of crown fractures was shown for LD and screw/implant platform fractures for TZ groups.
本研究旨在检查使用聚醚醚酮(PEEK)和部分稳定氧化锆多晶(YZ)作为定制式种植体支持混合基台材料的种植体支持修复系统的机械疲劳性能,以支持两种类型的全瓷修复体:半透明氧化锆(TZ)和锂二硅酸锂(LD)整体冠。
将 40 个莫氏锥度种植体纳入环氧树脂中。放置钛中介基台,根据定制混合基台材料(PEEK 或 YZ)和代表上颌中切牙冠的整体冠(TZ 或 LD)将试件随机分为四组(n = 10)。通过初始 200-N 负载 5000 次循环,随后每次 10000 次循环增加 50-N(步长)的方式对试件进行机械疲劳试验(阶跃应力分析),直至发生故障。记录失效时的载荷和失效前的循环次数、每个步长的存活率和试件位移。评估失效模式,并获得每种条件下的威布尔模数。
两种类型的冠的疲劳均不受基台材料的影响(LD-PEEK=LD-YZ;TZ-PEEK=TZ-YZ)。在 PEEK 基台上,LD 和 TZ 冠的测量值之间无统计学差异;然而,在 YZ 基台上,TZ 冠的失效载荷值明显高于 LD。失效模式分析显示,LD 组的冠断裂更为常见,而 TZ 组则表现为螺钉/种植体平台断裂。
YZ 和 PEEK 混合基台无论冠材料如何,均可产生相似的疲劳水平,与 YZ 基台结合时,TZ 冠的疲劳水平高于 LD 冠,与 PEEK 定制基台结合时,LD 冠的疲劳水平与 TZ 冠相似。LD 组的冠断裂更为常见,而 TZ 组的螺钉/种植体平台断裂更为常见。