Kaga Naoyuki, Morita Sho, Yamaguchi Yuichiro, Matsuura Takashi
Section of Fixed Prosthodontics, Department of Oral Rehabilitation, Fukuoka Dental College, Fukuoka 814-0193, Japan.
Oral Medicine Research Center, Fukuoka Dental College, Fukuoka 814-0193, Japan.
Dent J (Basel). 2023 Mar 3;11(3):72. doi: 10.3390/dj11030072.
Herein, the mechanical properties of an auto-polymerizing resin incorporated with a surface pre-reacted glass ionomer (S-PRG) filler were evaluated. For this, S-PRG fillers with particle sizes of 1 μm (S-PRG-1) and 3 μm (S-PRG-3) were mixed at 10, 20, 30, and 40 wt% to prepare experimental resin powders. The powders and a liquid (powder/liquid ratio = 1.0 g/0.5 mL) were kneaded and filled into a silicone mold to obtain rectangular specimens. The flexural strength and modulus ( = 12) were recorded via a three-point bending test. The flexural strengths of S-PRG-1 at 10 wt% (62.14 MPa) and S-PRG-3 at 10 and 20 wt% (68.68 and 62.70 MPa, respectively) were adequate (>60 MPa). The flexural modulus of the S-PRG-3-containing specimen was significantly higher than that of the S-PRG-1-containing specimen. Scanning electron microscopy observations of the specimen fracture surfaces after bending revealed that the S-PRG fillers were tightly embedded and scattered in the resin matrix. The Vickers hardness increased with an increasing filler content and size. The Vickers hardness of S-PRG-3 (14.86-15.48 HV) was higher than that of S-PRG-1 (13.48-14.97 HV). Thus, the particle size and content of the S-PRG filler affect the mechanical properties of the experimental auto-polymerizing resin.
在此,对掺入表面预反应玻璃离子体(S-PRG)填料的自聚合树脂的力学性能进行了评估。为此,将粒径为1μm(S-PRG-1)和3μm(S-PRG-3)的S-PRG填料按10%、20%、30%和40%的重量比混合,以制备实验性树脂粉末。将这些粉末与一种液体(粉末/液体比 = 1.0 g/0.5 mL)混合并填入硅胶模具中,以获得矩形试样。通过三点弯曲试验记录弯曲强度和模量(n = 12)。S-PRG-1在10%重量比时的弯曲强度(62.14 MPa)以及S-PRG-3在10%和20%重量比时的弯曲强度(分别为68.68和62.70 MPa)均足够(>60 MPa)。含S-PRG-3的试样的弯曲模量显著高于含S-PRG-1的试样。对弯曲后试样断裂表面的扫描电子显微镜观察表明,S-PRG填料紧密嵌入并分散在树脂基体中。维氏硬度随填料含量和尺寸的增加而增加。S-PRG-3的维氏硬度(14.86 - 15.48 HV)高于S-PRG-1(13.48 - 14.97 HV)。因此,S-PRG填料的粒径和含量会影响实验性自聚合树脂的力学性能。