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Hardness and fracture toughness of resin-composite materials with and without fibers

机译:具有和无纤维的树脂复合材料的硬度和断裂韧性

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Objective. To investigate the surface micro-hardness (VHN) and fracture toughness (K-IC) of resin-composites, with and without incorporated short fibers, after solvent storage.Methods. Three resin-composites incorporating fibers, additional to particle reinforcement, were examined: everX (TM), NovoPro Fill (TM) and NovoPro Flow (TM). Four composites were used as controls, with only particle reinforcement: Filtek bulk Fill (TM), Filtek bulk one (TM), Filtek XTE (TM), and Filtek Flow XTE (TM). For hardness measurement, materials were cured in 2 mm thick molds for 20 s by a LED source of average irradiance 1.2 W/cm(2). Specimens (n = 6/group) were stored dry for 1 h and then in either water or 75% ethanol/water for 1 h, 1 day and 30 days at 37 +/- 1 degrees C. Vickers hardness was measured under a load of 300 g for 15 s. For fracture toughness (K-IC) measurements, single-edge-notched specimens (n = 6/group) were prepared: (32 x 6 x 3 mm) for 3-point bending and stored for 1 and 7 days in water at 37 degrees C. Fractured surfaces of fiber-reinforced composite were examined by scanning electron microscopy (SEM). VHN data were analyzed using three-way ANOVA, one-way ANOVA and the Tukey post hoc test (p = 0.05). K-IC data were analyzed by two-way ANOVA and one-way ANOVA and the Tukey post hoc test (p = 0.05). An independent t-test was used to detect differences (alpha = 0.05) in K-IC between stored groups for each material.Results. VHN decreased for all composites with storage time in both solvents, but more appreciably in 75% ethanol/water (an average of 20%). K-IC ranged from 2.14 (everX Posterior) to 0.96 NovoPro Flow) MPa. m(0.5). The longer storage period (7 days) had no significant effect on this property relative to 1 day storage.Significance. Reinforcement with short fibers, and possibly matrix compositional differences, significantly enhanced the fracture toughness of EVX. However, for nano-fiber containing composites, there were no evident beneficial effects upon either their fracture toughness or hardness compared to a range of control composites. Water storage for 7 days of all these resin-composites produced no significant change in their K-IC values, relative to 1 day storage. (C) 2019 Published by Elsevier Inc. on behalf of The Academy of Dental Materials.
机译:客观的。为了探讨树脂复合材料的表面微硬度(VHN)和断裂韧性(K-IC),在溶剂储存后,无掺入短纤维。方法。研究了三种树脂复合材料,掺入纤维,另外的颗粒增强物,尤其是Evex(TM),Novopro填充(TM)和NovoPro流(TM)。使用四种复合材料作为对照,只有粒子加强件:Filtek批量填充(TM),Filtek批量一(TM),Filtek Xte(TM)和Filtek Flow Xte(TM)。对于硬度测量,通过LED平均辐照度为1.2W / cm(2)的LED源以2mm厚的模具固化物料20s。将试样(n = 6 /组)储存干燥1小时,然后在水或75%乙醇/水中储存1小时,1天和30天,在37 +/- 1℃下进行。在载荷下测量维氏硬度15秒为300克。对于断裂韧性(K-IC)测量,制备单边缘缺口样品(N = 6 /组):3点弯曲的3点弯曲并在37℃下储存1和7天通过扫描电子显微镜(SEM)检查纤维增强复合物的裂缝表面。使用三通ANOVA,单向ANOVA和TUEK HOC测试进行分析VHN数据(P <= 0.05)。通过双向ANOVA和单向ANOVA和Tukey HOC测试分析K-IC数据(P <= 0.05)。独立的T检测用于检测每个材料的存储组之间的K-IC中的差异(alpha = 0.05)。结果。 VHN在溶剂中的储存时间的所有复合材料减少,但在75%乙醇/水中(平均为20%)更明显。 K-IC从2.14(Evex后后部)到0.96诺诺沃流程)MPa。 m(0.5)。较长的储存期(7天)对于相对于1天的储存对该物业没有显着影响。重要性。用短纤维加固,以及可能的基质组成差异,显着提高了EVX的断裂韧性。然而,对于纳米纤维的复合材料,与一系列对照复合材料相比,对其断裂韧性或硬度没有明显的有益效果。所有这些树脂复合材料的储水器7天内,相对于1天储存,它们的K-IC值没有显着变化。 (c)2019年由elsevier公司发布代表牙科材料学院。

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