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Effect of microwave irradiation and water storage on the viscoelastic properties of denture base and reline acrylic resins

机译:微波辐射和贮水对义齿基托和线型丙烯酸树脂粘弹性的影响

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This study evaluated the effect of microwave irradiation and water storage on the viscoelastic properties of two denture base resins (Lucitone 550-L and Vipi Wave-VW) and two reline resins (Kooliner-K and Tokuyama Rebase Fast II-TR II). Eight specimens (40×10×3.3 mm) of each material were evaluated by dynamic mechanical thermal analysis (DMTA) after processing, water storage for 7 days (WS), one (MW1) and 7 cycles of microwave irradiation (MW7). For each specimen, DMTA runs were carried out within different temperature intervals. Values of storage modulus (E') and loss tangent (tan δ) at 37 °C were obtained from the first and last runs. From the last run, values of E' at the glass transition temperature (Tg) and maximum tan δ were also recorded. Data were analyzed by a 2-way ANOVA followed by Student-Newman-Keuls test (α=0.05). Measurements of the inside temperature of each specimen during microwave irradiation (650 W/3 min) were conducted using a fiber optic temperature sensor. Six specimens of each material were evaluated. During microwave irradiation, all specimens reached the boiling temperature of water at approximately 130 s. From the first DMTA run, MW1 and WS significantly increased the E' and decreased the tan δ of K at 37 °C (P0.05). From the last run, the tan δ of K and TR II was significantly decreased after MW 1 (P0.05). MW 7 decreased the tan δ of K (P0.05). The E' of L and VW was similar and higher than K and TR II (P0.05). At Tg, K produced the lowest E' and its maximum tan δ was increased after MW1 (P0.05). The Tg mean values were arranged as: LV WTR IIK (P0.05). Microwave irradiation and WS did not detrimentally affect the viscoelastic properties of the denture base and reline resins evaluated.
机译:这项研究评估了微波辐照和储水对两种义齿基础树脂(Lucitone 550-L和Vipi Wave-VW)和两种线型树脂(Kooliner-K和Tokuyama Rebase Fast II-TR II)的粘弹性的影响。加工后,通过动态机械热分析(DMTA),储水7天(WS),一个(MW1)和七个微波辐照(MW7)评估每种材料的八个样品(40×10×3.3 mm)。对于每个样品,在不同的温度间隔内进行DMTA运行。从第一次和最后一次运行中获得在37°C下的储能模量(E')和损耗角正切(tanδ)值。从最后一次运行开始,还记录了玻璃化转变温度(Tg)时的E'值和最大tanδ。数据通过2通ANOVA,Student-Newman-Keuls检验(α= 0.05)进行分析。使用光纤温度传感器对微波辐照(650 W / 3 min)期间每个样品的内部温度进行测量。对每种材料的六个样品进行了评估。在微波辐照期间,所有标本在约130 s时达到水的沸腾温度。从第一次DMTA运行开始,MW1和WS在37°C时显着增加了E'并降低了K的tanδ(P <0.05)。从最后一次运行开始,MW 1之后,K和TR II的tanδ显着降低(P <0.05)。 MW 7降低了K的tanδ(P <0.05)。 L和VW的E'相似且高于K和TR II(P <0.05)。在Tg,K产生最低的E',而MW1之后其最大tanδ增加(P <0.05)。 Tg平均值排列为:L> V W> TR II> K(P <0.05)。微波辐照和WS不会对义齿基托和所评估的线型树脂的粘弹性产生不利影响。

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