Sonmez Nesrin, Gultekin Pinar, Turp Volkan, Akgungor Gokhan, Sen Deniz, Mijiritsky Eitan
Beykent University Vocational School, Dental Services, Dental Prosthesis Technology, Istanbul, Turkey.
Faculty of Dentistry, Department of Prosthodontics, Istanbul University, 34093, Fatih, Istanbul, Turkey.
BMC Oral Health. 2018 Jan 8;18(1):5. doi: 10.1186/s12903-017-0458-2.
Polymer infiltrated ceramics and nano-ceramic resins are the new restorative materials which have been developed in order to enhance the adverse properties of glass-matrix ceramics and resin composites. The aim of the present in vitro study was to evaluate the characteristics of various CAD/CAM materials through mechanical, microstructural, and SEM analysis.
Five test groups (n = 22) were formed by using the indicated CAD/CAM blocks: VITA Enamic (VITA Zahnfabrik), Lava Ultimate (3 M ESPE), IPS e.max CAD (Ivoclar Vivadent), IPS Empress CAD (Ivoclar Vivadent), and VITA Mark II (VITA Zahnfabrik). Two specimens from each test group were used for XRD and EDS analysis. Remaining samples were divided into two subgroups (n = 10). One subgroup specimens were thermocycled (5 °C to 55 °C, 30s, 10,000 cycles) whereas the other were not. All of the specimens were evaluated in terms of flexural strength, Vickers hardness, and fracture toughness. Results were statistically analyzed using two-way ANOVA, one-way ANOVA, Tukey's HSD, and Student's t tests (α = .05). Fractured specimens were evaluated using SEM.
The highest Vickers microhardness value was found for VITA Mark II (p < .001), however flexural strength and fracture toughness results were lowest conversely (p < .05). IPS e.max CAD was found to have the highest flexural strength (p < .001). Fracture toughness of IPS e.max CAD was also higher than other tested block materials (p < .001). Lava Ultimate and VITA Enamic's mechanical properties were affected negatively from thermocycling (p < .05). Microhardness, flexural strength, and fracture toughness values of Lava Ultimate and VITA Enamic were found to be similar to VITA Mark II and IPS Empress CAD groups.
It should be realised that simulated aging process seem to affect ceramic-polymer composite materials more significantly than glass ceramics.
聚合物渗透陶瓷和纳米陶瓷树脂是为改善玻璃基陶瓷和树脂复合材料的不良性能而开发的新型修复材料。本体外研究的目的是通过力学、微观结构和扫描电子显微镜分析来评估各种计算机辅助设计/计算机辅助制造(CAD/CAM)材料的特性。
使用指定的CAD/CAM块材形成五个测试组(n = 22):VITA Enamic(维他齿科)、Lava Ultimate(3M ESPE)、IPS e.max CAD(义获嘉伟瓦登特)、IPS Empress CAD(义获嘉伟瓦登特)和VITA Mark II(维他齿科)。每个测试组的两个标本用于X射线衍射(XRD)和能谱分析(EDS)。其余样本分为两个亚组(n = 10)。一个亚组的标本进行热循环(5°C至55°C,30秒,10000次循环),而另一个亚组则不进行。所有标本均根据弯曲强度、维氏硬度和断裂韧性进行评估。结果使用双向方差分析、单向方差分析、Tukey's HSD和学生t检验进行统计分析(α = 0.05)。使用扫描电子显微镜评估断裂的标本。
VITA Mark II的维氏显微硬度值最高(p < 0.001),然而,弯曲强度和断裂韧性结果则相反最低(p < 0.05)。发现IPS e.max CAD具有最高的弯曲强度(p < 0.001)。IPS e.max CAD的断裂韧性也高于其他测试的块材(p < 0.001)。热循环对Lava Ultimate和VITA Enamic的力学性能有负面影响(p < 0.05)。发现Lava Ultimate和VITA Enamic的显微硬度、弯曲强度和断裂韧性值与VITA Mark II和IPS Empress CAD组相似。
应该认识到,模拟老化过程对陶瓷-聚合物复合材料的影响似乎比对玻璃陶瓷的影响更大。