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首页> 外文期刊>Journal of Applied Oral Science >Effect of thermocycling on the tensile and shear bond strengths of three soft liners to a denture base resin
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Effect of thermocycling on the tensile and shear bond strengths of three soft liners to a denture base resin

机译:热循环对三种软衬对义齿基料树脂的拉伸和剪切粘合强度的影响

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STATEMENT OF PROBLEM: In clinical practice, loss of adhesion between the silicone-based denture liner and the denture base resin is always an undesirable event that might cause loss of material softness, water sorption, bacterial colonization and functional failure of the prosthesis. PURPOSE: This study evaluated the effect of thermocycling on tensile and shear bond strengths of three soft liner materials to a denture base acrylic resin. MATERIAL AND METHODS: Three resilient liners (Mucopren-Soft, Mollosil-Plus and Dentusil) and a heat-polymerized acrylic resin (QC-20) were processed according to manufacturers' directions. Sixty specimens (14 x 14 mm cross-sectional area) per bond strength test (20 for each liner) were fabricated and either stored in water at 37oC for 24 hours (control groups; n=10) or thermocycled 3,000 times in water between 5oC and 55oC (test groups; n=10). The specimens were tested in tensile and shear strength in a universal testing machine until fracture. Bond strength means were compared between water-stored and thermocycled groups for each material, as well as among materials for each treatment (water storage or thermocycling). Failure mode (adhesive, cohesive and mixed) after debonding was assessed. Data were analyzed statistically by paired Student's t-test and ANOVA at 5% significance level. RESULTS: The water-stored groups had statistically significant higher bond strengths than the thermocycled groups (p<0.05). Without thermocycling, Mucopren-Soft (2.83 ± 0.48 MPa) had higher bond strength than Mollosil-Plus (1.04 ± 0.26 MPa) and Dentusil (1.14 ± 0.51 MPa). After thermocycling, Mucopren-Soft (1.63 ± 0.48 MPa) had the highest bond strength (p<0.05). CONCLUSION: The bond strength of the three soft denture liners tested in this study changed with their chemical composition and all of them exhibited higher bond strengths than those usually reported as clinically acceptable. CLINICAL IMPLICATIONS: All soft lining materials tested in this study showed a significant decrease in the bond strength to an acrylic denture base resin after thermocycling. In spite of thermocycling, though, the silicone-based liners had satisfactory bond strengths for clinical application.
机译:问题陈述:在临床实践中,有机硅基义齿衬里和义齿基体树脂之间的附着力丧失始终是不希望发生的事件,可能会导致材料柔软性丧失,吸水,细菌定植和假体功能衰竭。目的:本研究评估了热循环对三种软衬材料与义齿基丙烯酸树脂的拉伸和剪切粘合强度的影响。材料与方法:根据制造商的指示加工了三种弹性衬里(Mucopren-Soft,Mollosil-Plus和Dentusil)和热聚合丙烯酸树脂(QC-20)。每个粘合强度测试制作了60个样品(14 x 14 mm横截面)(每个衬里20个),并在37oC的水中储存24小时(对照组; n = 10)或在5oC之间的水中热循环3,000次。和55oC(测试组; n = 10)。在万能试验机中测试样品的拉伸强度和剪切强度,直到断裂。比较了每种材料的储水组和热循环组之间以及每种处理的材料(储水或热循环)之间的粘结强度平均值。评估了脱粘后的失效模式(胶粘,内聚和混合)。通过配对的学生t检验和ANOVA在5%显着性水平上对数据进行统计学分析。结果:与热循环组相比,储水组的粘合强度具有统计学意义(p <0.05)。在没有热循环的情况下,Mucopren-Soft(2.83±0.48 MPa)的粘结强度高于Mollosil-Plus(1.04±0.26 MPa)和Dentusil(1.14±0.51 MPa)。热循环后,Mucopren-Soft(1.63±0.48 MPa)的粘结强度最高(p <0.05)。结论:本研究中测试的三种软义齿衬垫的粘合强度随其化学成分而变化,并且它们均显示出比通常报告为临床上可接受的粘合强度更高的粘合强度。临床意义:本研究中测试的所有软衬材料在热循环后均显示出与丙烯酸义齿基托树脂的粘合强度显着降低。尽管进行了热循环,但基于有机硅的衬里仍具有令人满意的临床应用粘合强度。

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