[Physical properties of light-cured opaque resin. (1) Influence of monomer composition].

K Yoshida, H Matsumura, T Tanaka, M Atsuta
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Abstract

Light-cured opaque resins with excellent physical properties were prepared using five types of monomer liquid and titanium dioxide as the powder. The five opaque resin monomer liquid had the following monomer compositions. Methyl methacrylate (MMA)/di(methacryloxyethyl) trimethylhexamethylene diurethane (UDMA) = 70/30 (M-U), MMA/neopenthylglycol dimethacrylate (NPG)/UDMA = 45/45/10 (M-N-U), UDMA/MMA = 70/30 (U-M), 2,2-bis (4-methacryloxypolyethoxy phenyl) propane (2.6 E)/2,2-bis [4-(3-methacryloxy-2-hydroxy propoxy) phenyl] propane (Bis-GMA)/triethyleneglycol dimethacrylate (3 G) = 60/35/5(2.6-B-3) and 3 G/UDMA = 70/30 (3-U) by weight. The bond strength, photo-curability and handling properties of the opaque resin were improved. Three MMA-based opaque resins showed nearly the same values in Knoop hardness number, diametral tensile strength and shear bond strength. The depth of cure increased with the decrease in MMA content of monomer composition, while the amount of residual monomer decreased. The 2.6-B-3 opaque resin had nearly the same properties in depth of cure and Knoop hardness number as the 3-U opaque resin. However, the 2.6-B-3 and 3-U opaque resins had a diametral tensile strength more than twice as high as that of the U-M opaque resin. The bond strength of three MMA-based opaque resins showed 0MPa after 5,000 thermocycles, while the 2.6-B-3 opaque resin, about 16 MPa, and the 3-U opaque resin, about 25 MPa. Therefore, the bond strength of the opaque resin was influenced by monomer composition. 3G-UDMA opaque resin showed excellent physical properties and may be clinically acceptable to bond fixed prosthodontic composite.

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光固化不透明树脂的物理特性。(1)单体组成的影响]。
以五种单体液体为原料,以二氧化钛为粉末,制备了物理性能优良的光固化不透明树脂。五种不透明树脂单体液体的单体组成如下:甲基丙烯酸甲酯(MMA)/二(甲基丙烯氧氧乙基)三甲基己二乙烷(UDMA) = 70/30 (M-U), MMA/新戊二醇二甲基丙烯酸酯(NPG)/UDMA = 45/45/10 (M-N-U), UDMA/MMA = 70/30 (U-M), 2,2-二(4-(3-甲基丙烯氧基-2-羟基丙氧基)苯基)丙烷(2.6 E)/2,2-二[4-(3-甲基丙烯氧基-2-羟基丙氧基)苯基]丙烷(Bis-GMA)/三乙二醇二甲基丙烯酸酯(3g) = 60/35/5(2.6- b -3)和3g /UDMA = 70/30 (3- u)。提高了不透明树脂的结合强度、光固化性能和处理性能。三种mma基不透明树脂的努氏硬度值、直径抗拉强度和剪切粘接强度几乎相同。随着单体组成中MMA含量的降低,固化深度增加,单体残留量减少。2.6-B-3不透明树脂的固化深度和努氏硬度值与3-U不透明树脂基本相同。然而,2.6-B-3和3-U不透明树脂的直径拉伸强度是U-M不透明树脂的两倍多。5000次热循环后,3种mma基不透明树脂的结合强度均为0MPa, 2.6-B-3不透明树脂约为16 MPa, 3-U不透明树脂约为25 MPa。因此,不透明树脂的结合强度受单体组成的影响。3G-UDMA不透明树脂具有优异的物理性能,临床可用于固定修复复合材料的粘结。
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