表面涂层对玻璃离子聚合物挠曲和粗糙度性能的影响

Noha Anany, Aya Samaha, Hanan Niazi
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摘要

目的:本研究旨在评估不同表面涂层材料对两种不同玻璃离子体修复材料抗弯强度和表面粗糙度的影响。材料与方法:制备 80 个玻璃离子体材料矩形条(12×2×2 毫米),其中 40 个为高粘度玻璃离子体(HVGI),40 个为树脂改性玻璃离子体(RMGI),用于抗折强度(FS)测试,并根据表面涂层分为 4 组(n=20):0 组:无涂层,1 组:纳米填充树脂涂层,3 组:全蚀刻粘合剂,4 组:凡士林。另外还准备了 80 个相同材料的圆柱形盘(6×2 毫米)用于表面粗糙度(SR)测试,并分配到与 FS 测试相同的 4 个组(n=20)。在 FS 测试中,使用万能试验机以 0.5 毫米/分钟的十字头速度进行三点加载测试,直至失效。在 SR 测试中,使用了截断值为 0.25 毫米的机械轮廓仪。统计分析采用单向方差分析/土耳其 HSD 后检验。结果结果表明,在所有测试组中,纳米填充树脂涂层的 FS 值最高,SR 值最低。结论即时表面涂层增强了 HVGI 和 RMGI 的挠曲和粗糙性能。光固化纳米填充树脂对玻璃离聚体的 FS 和 SR 有积极影响。
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Effect Of Surface Coating On Flexure And Roughness Properties Of Glass Ionomers
Aim: This study was conducted to evaluate the effect of different surface coating materials on flexural strength and surface roughness of two different glass ionomer restorative materials. Materials and Methods: 80 rectangular bars (12×2×2 mm) of glass ionomer materials; 40 highly viscous glass ionomer (HVGI) and 40 resin modified glass ionomer (RMGI) were prepared for flexure strength (FS) testing and divided into 4 groups (n=20) according to the applied surface coat; Group 0: no coat, Group 1: nano-filled resin coat, Group 3: total etch adhesive and Group 4: petroleum jelly. Another 80 cylindrical disks (6×2 mm) of the same materials were prepared for surface roughness (SR) testing and allocated to the same 4 groups as for FS testing (n=20). Samples were subjected to mechanical tooth brushing and then stored in distilled water at room temperature for either 24 hr. or 7 d. For FS testing, a 3-point loading test was performed using a universal testing machine running at a crosshead speed of 0.5 mm/min up to failure. For SR testing, mechanical profilometer was used with a cut-off value of 0.25mm. Statistical analysis was performed using One-Way ANOVA/ Turkey’s HSD post hoc test. Results: The results showed that the nano-filled resin coat exhibited the highest Statistically significant FS values and the lowest statistically significant SR values among all tested groups. Conclusions: Immediate surface coating enhances the flexure and roughness properties of HVGI and RMGI . The light cured nano-filled resin positively influences the FS and the SR of glass ionomers.
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