首页> 美国卫生研究院文献>The Journal of the Indian Prosthodontic Society >Effect of Surface Treatment on the Flexural Strength of Denture Base Resin and Tensile Strength of Autopolymerizing Silicone Based Denture Liner Bonded to Denture Base Resin: An In Vitro Study
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Effect of Surface Treatment on the Flexural Strength of Denture Base Resin and Tensile Strength of Autopolymerizing Silicone Based Denture Liner Bonded to Denture Base Resin: An In Vitro Study

机译:表面处理对义齿基托树脂抗弯强度和自聚合硅基义齿衬里粘结到义齿基托树脂上的拉伸强度的影响:体外研究。

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摘要

Silicone based denture liners are superior to acrylic based denture liners but it has a problem of failure of adhesion with the denture base. To evaluate the effect on the tensile bond strength of silicone based liner and flexural strength of denture base resin when the latter is treated with different chemical etchants prior to the application of the resilient liner. Rectangular specimens of heat cured PMMA (65 × 10 × 3.3 mm3) for flexural strength and (10 × 10 × 40 mm3) for tensile strength were fabricated and divided into four subgroups each. One subgroup of each type acted as a control and the rest were subjected to surface treatment with acetone for 30 s, MMA monomer for 180 s, methylene chloride for 15 s, respectively. Silicone based denture liner was processed between 2 PMMA specimens (10 × 10 × 40 mm3) in the space provided by a spacer, thermocycled (555°C) for 500 cycles and then their tensile strength measurements and flexural strength measurements were done. 180 s of MMA monomer treatment was found to be most effective in improving the bonding between the liner and denture base resin as well as producing the lowest decrease in flexural strength of denture base resin. Chemical treatment of denture base resin improves the bond strength of denture liner but it also decreases the flexural strength of denture base. So careful selection of chemical etchant should be done so as to produce minimum decrease in flexural strength of denture base resin.
机译:硅酮基义齿衬里优于丙烯酸基义齿衬里,但存在无法与义齿基托粘合的问题。当在使用弹性衬里之前用不同的化学蚀刻剂处理义齿基树脂时,要评估对硅基衬里的拉伸粘合强度和义齿基树脂的挠曲强度的影响。制作了矩形的热固化PMMA试样,其抗弯强度为(65×10×3.3mm 3 ),抗拉强度为(10×10×40mm 3 ),并分为每个小组四个。每种类型的一个亚组作为对照,其余的分别用丙酮进行表面处理30秒钟,MMA单体进行表面处理180秒钟,二氯甲烷进行表面处理15秒钟。在间隔物提供的空间中,在2个PMMA标本(10×10×40mm 3 )之间处理硅基义齿衬里,并对其进行热循环(5 55°C)进行500次循环,然后进行抗张强度测量和抗弯强度测量。人们发现180毫米MMA单体处理最有效地改善了衬里和义齿基础树脂之间的结合力,并使义齿基础树脂的抗弯强度下降幅度最小。义齿基料树脂的化学处理可提高义齿衬里的粘结强度,但也会降低义齿基料的抗弯强度。因此,应仔细选择化学蚀刻剂,以使义齿基体树脂的抗弯强度降低最小。

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