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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Effect of Repair Gap Width on the Strength of Denture Repair: An In Vitro Comparative Study
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Effect of Repair Gap Width on the Strength of Denture Repair: An In Vitro Comparative Study

机译:修复间隙宽度对义齿修复强度的影响:体外比较研究

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Abstract Purpose To evaluate the effect of repair gap width on the flexural strength and impact strength of a repaired acrylic denture with and without thermal cycling. Materials and Methods A total of 240 heat‐polymerized acrylic resin specimens were fabricated in dimensions of 65 × 10 × 2.5 ± 0.2 mm and 55 × 10 × 10 ± 0.2 mm for flexural strength and impact strength testing, respectively. All specimens were sectioned into halves then divided into 6 groups according to repair gap width (n = 10). The repair gap of the control group was 2.5 mm at the base, while the repair gaps of the test groups were prepared as 2.0, 1.5, 1.0, 0.5, and 0 mm at the base. All specimens were prepared with a 45° bevel joint. Each specimen was placed into the mold that retained the original length of the specimen and modified only the repair gap, which was packed with repair resin. After polymerization, specimens were finished and polished, and half of the specimens were thermal cycled for 5000 cycles. Three‐point bending test and Charpy impact test were used to determine the flexural strength and impact strength, respectively. ANOVA and Tukey's HSD test were used for statistical analysis, where α was set at 0.05. Results Decreasing repair gap significantly increased the flexural strength in comparison to control group ( p 0.05); 0.5‐mm repair gap showed the highest flexural strength values. Changing the repair gap significantly increased the impact strength of groups 2.0‐ and 1.5‐mm ( p 0.05). Thermal cycling significantly decreased the flexural strength of all tested groups as well as impact strength for groups with wide repair gaps (2.5‐, 2.0‐, and 1.5‐mm) ( p 0.05), while other tested groups had nonsignificant effect on impact strength ( p 0.05). Conclusion Decreasing repair gap increased the flexural and impact strengths of repaired acrylic resin. A repair gap of 0‐, 0.5‐, or 1.0‐mm with beveled repair surface is recommended to improve repair strength and overcome the drawbacks of increased amounts of autopolymerized repair resin.
机译:摘要目的是评价修复间隙宽度对抗弯曲强度和抗热循环抗弯曲强度和冲击强度的影响。材料和方法总共240个热聚合的丙烯酸树脂样品,分别以65×10×2.5±0.2mm和55×10×10±10±10±10±10±0.2mm制成,分别用于弯曲强度和冲击强度试验。将所有标本均分成半部,然后根据修复间隙宽度(n = 10)分成6组。对照组的修复间隙在底座上为2.5mm,而在碱处制备试验组的修复间隙为2.0,1.5,1.0,0.5和0mm。所有标本用45°斜角接头制备。将每个样品置于模具中,该模具保留样品的原始长度并仅改性修复间隙,其用修复树脂包装。聚合后,完成并抛光试样,并将一半的样品循环5000次循环。三点弯曲试验和夏比冲击试验分别用于确定弯曲强度和冲击强度。 ANOVA和Tukey的HSD测试用于统计分析,其中α设定为0.05。结果降低修复间隙与对照组相比显着提高了弯曲强度(P <0.05); 0.5毫米修复隙显示出最高的弯曲强度值。改变修复间隙显着增加了2.0-和1.5mm(P <0.05)的撞击强度。热循环显着降低了所有测试组的弯曲强度以及具有宽修复间隙(2.5-,2.0-和1.5mm)的基团的冲击强度(P <0.05),而其他测试基团对撞击产生无显着影响强度(P& 0.05)。结论修复间隙降低增加了修复丙烯酸树脂的弯曲和冲击强度。建议使用倾斜修复表面的修复间隙,以提高修复强度,克服增加量的自聚聚酯化修复树脂的缺点。

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