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首页> 外文期刊>Operative dentistry >Influence of Different Curing Modes on Polymerization Behavior and Mechanical Properties of Dual-cured Provisional Resins
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Influence of Different Curing Modes on Polymerization Behavior and Mechanical Properties of Dual-cured Provisional Resins

机译:不同固化模式对双固化临时树脂聚合行为和力学性能的影响

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This study determined the influence of curing mode on polymerization behavior and mechanical properties of dual-cured provisional resins. Three dual-cured bisacryl-based provisional resins were used: Tempsmart ( TS; GC Corp), Luxatemp Automix Solar (LX; DMG Chemisch Pharmazeutishe Fabrik GmbH), and Integrity Multi . Cure (IG; Dentsply Caulk). A self-cured bisacryl-based provisional resin, Protemp Plus (PP; 3M ESPE) and a conventional poly(methyl methacrylate) (PMMA) provisional resin, Unifast III (UF; GC Corp) were used as controls. The inorganic filler content and coefficients of linear thermal expansion of the test materials were measured. Six specimens of each material were used to determine the flexural strength, elastic modulus, and resilience. The changes in ultrasound velocity during polymerization were measured. The average inorganic filler contents of the provisional resins, apart from UF, ranged from 24.4 to 39.3 wt%. The highest inorganic filler content was determined for LX, whereas TS showed the lowest value among the tested materials. The average coefficients of thermal expansion of the tested provisional resins ranged from 77.3 to 107.7 (x10 (6)/degrees C). TS and IG showed significantly lower thermal expansions than the other tested provisional resins. The mean flexural strengths of the provisional resins ranged from 70.4 to 122.6 MPa, the mean elastic moduli ranged from 1.8 to 3.7 GPa, and the mean resilience of the provisional resins ranged from 1.1 to 2.3 MJ/mm(,)(3) respectively. Dual-cured provisional resins showed significantly higher flexural strengths than the PMMA resin. However, in all cases, the lightcuring mode showed significantly higher flexural strengths than the self-curing mode. In the initial polymerization phase, dual-cured resins in the light-curing mode showed a rapid increase in the speed of sound (V) during light irradiation, followed by a slower increase. Conversely, the dual-cured resins in the self-curing mode showed a slower initial increase, followed by a rapid increase. Although no significant difference in V was observed between 10 and 15 minutes in the light-curing mode of all tested dual-cured resins, a significantly higher V value was obtained at 15 minutes than at 10 minutes in the self-curing modes for LX and IG. Regardless of the curing mode, tested dual-cured provisional resins showed superior mechanical properties than the conventional PMMA provisional resin. However, dual-cured provisional resin flexural properties and polymerization behavior were affected by the curing mode. This study indicated that the lightcuring mode might be recommended for all dual-cured provisional resins because of the enhancement of their mechanical properties and reduction of chair time.
机译:该研究确定了固化模式对双固化临时树脂的聚合行为和力学性能的影响。使用了三种双固化的双丙烯酸双丙烯酸二丙烯酸纤维素临时树脂:Tempsmart(TS; GC Corp),Luxatemp Automix Solar(LX; DMG Chemisch Pharmazeutishe Fabrik GmbH),以及诚信多。治愈(Ig;浓度填缝)。使用自固化的双丙烯酸基丙烯酸丙烯酸丙烯酸普丙烯腈(PP; 3M ESPE)和常规聚(甲基丙烯酸甲酯)(PMMA)临时树脂,UNIFSTIC III(UF; GC CORP)作为对照。测量了测试材料的无机填料含量和线性热膨胀系数。每种材料的六个标本用于确定弯曲强度,弹性模量和弹性。测量聚合期间超声速度的变化。除UF外,临时树脂的平均无机填料含量范围为24.4至39.3wt%。测定最高的无机填料含量为Lx,而TS显示出测试材料中的最低值。经测试的临时树脂的热膨胀的平均系数范围为77.3至107.7(x10(6)/℃)。 TS和Ig显示出比其他测试的临时树脂显着降低的热膨胀。临时树脂的平均弯曲强度范围为70.4至122.6MPa,平均弹性模量为1.8至3.7GPa,临时树脂的平均值分别为1.1-2.3mJ / mm(,)(3)。双固化的临时树脂显示出比PMMA树脂显着更高的弯曲强度。然而,在所有情况下,喷射模式显示出比自固化模式显着更高的弯曲强度。在初始聚合相中,光固化模式中的双固化树脂在光照射期间的声音(v)的速度快速增加,然后较慢增加。相反,自固化模式中的双固化树脂显示出较慢的初始增加,然后快速增加。尽管在所有测试的双固化树脂的光固化模式下观察到v的v在10和15分钟之间没有显着差异,但在LX的自固化模式下在10分钟内获得显着较高的V值。 IG。无论固化模式如何,测试的双固化临时树脂都比常规PMMA临时树脂显示出优异的机械性能。然而,双固化的临时树脂弯曲性能和聚合行为受固化模式的影响。本研究表明,由于其机械性能和椅子时间的减少,所有双固化临时树脂都可能推荐用于所有双固化的临时树脂。

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