首页> 外文期刊>The Journal of Advanced Prosthodontics >Effect of light-curing, pressure, oxygen inhibition, and heat on shear bond strength between bis-acryl provisional restoration and bis-acryl repair materials
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Effect of light-curing, pressure, oxygen inhibition, and heat on shear bond strength between bis-acryl provisional restoration and bis-acryl repair materials

机译:光固化,压力,氧气抑制和热量对双丙烯酸临时修复体与双丙烯酸修复材料之间的剪切粘结强度的影响

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PURPOSE This study aimed to discover a way to increase the bond strength between bis-acryl resins, using a comparison of the shear bond strengths attained from bis-acryl resins treated with light curing, pressure, oxygen inhibition, and heat. MATERIALS AND METHODS Self-cured bis-acryl resin was used as both a base material and as a repair material. Seventy specimens were distributed into seven groups according to treatment methods: pressure - stored in a pressure cooker at 0.2 Mpa; oxygen inhibition- applied an oxygen inhibitor around the repaired material,; heat treatment - performed heat treatment in a dry oven at 60℃, 100℃, or 140℃. The shear bond strength was measured with a universal testing machine, and the shear bond strength (MPa) was calculated from the peak load of failure. A comparison of the bond strength between the repaired specimens was conducted using one-way ANOVA and Tukey multiple comparison tests (α=.05). RESULTS There were no statistically significant differences in the shear bond strength between the control group and the light curing, pressure, and oxygen inhibition groups. However, the heat treatment groups showed statistically higher bond strengths than the groups treated without heat, and the groups treated at a higher temperature resulted in higher bond strengths. Statistically significant differences were seen between groups after different degrees of heat treatment, except in groups heated at 100℃ and 140℃. CONCLUSION Strong bonding can be achieved between a bis-acryl base and bis-acryl repair material after heat treatment.
机译:目的本研究旨在通过比较光固化,压力,氧气抑制和加热处理的双丙烯酸树脂的剪切粘合强度,发现一种提高双丙烯酸树脂之间的粘合强度的方法。材料和方法自固化双丙烯酸树脂既用作基础材料,又用作修复材料。根据处理方法将70个标本分为7组:压力-以0.2 Mpa的压力锅存放;阻氧剂-在修复材料周围施加阻氧剂;热处理-在60℃,100℃或140℃的干燥炉中进行热处理。用万能试验机测定抗剪强度,并根据破坏的峰值载荷算出抗剪强度(MPa)。使用单向方差分析和Tukey多重比较测试(α= .05)进行了修复样品之间的粘结强度比较。结果对照组与光固化,压力和氧气抑制组之间的剪切粘结强度在统计学上没有显着差异。然而,热处理组显示出统计学上比未加热处理的组更高的结合强度,并且在更高温度下处理的组导致更高的结合强度。在不同程度的热处理后,两组之间的差异有统计学意义(除了在100℃和140℃加热的组以外)。结论热处理后,双丙烯酸酯基和双丙烯酸修复材料之间可实现牢固的结合。

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