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储存水对修复树脂与义齿基托树脂的粘结剪切强度和疲劳极限的影响。

Effect of water storage on the shear strength and fatigue limit of the reline resin bond to denture base resins.

机构信息

Department of Dental Materials and Prosthodontics, São Paulo State University-UNESP, Araraquara Dental School, SP, Brazil.

出版信息

J Adhes Dent. 2010 Aug;12(4):319-27. doi: 10.3290/j.jad.a17652.

Abstract

PURPOSE

This study evaluated the effect of water storage (WS) on the shear bond strength (SBS) and shear bond fatigue limit (SBFL) between denture base and reline resins. In addition, a possible correlation between SBS and SBFL was evaluated.

MATERIALS AND METHODS

Two denture base (Lucitone 550-L and Acron MC-AC) and two reline resins (Ufi Gel Hard- UGH and Tokuso Rebase Fast-TR) were selected. Cylinders (20 x 20 mm) of each denture base resin were processed, and the reline resins were packed on the bonding surfaces using a split mold (3.5 x 5.0 mm). Specimens of each denture base-reline resin combination were subjected to shear forces (0.5 mm/min) until fracture. A staircase approach was used to determine the SBFL. Specimens were submitted to either 10,000 cycles (5.0 Hz) or until fracture. For both SBS and SBFL, specimens were tested after relining (control) and after 30 days of WS. Data (MPa) were analyzed with 2-way ANOVA and Tukey's tests (α = 0.05). To test for a possible correlation between the SBS and SBFL, a linear regression analysis was performed.

RESULTS

WS significantly increased (p < 0.05) the SBS of AC-TR and AC-UGH and the SBFL of AC-TR, AC-UGH and LUGH. After WS, UGH produced higher (p < 0.05) SBS than TR, regardless of the denture base resin used. Regardless of the experimental groups and the denture base resins used, UGH produced higher (p < 0.05) SBFL than TR specimens. A strong positive linear correlation (r(2) = 0.949) was observed between the SBS and SBFL.

CONCLUSION

Overall, UGH promoted the highest SBS and SBFL. WS increased the SBS and SBFL of the AC relined specimens. A positive correlation was observed between the two variables.

摘要

目的

本研究评估了水储存(WS)对义齿基托与衬里树脂之间的剪切结合强度(SBS)和剪切结合疲劳极限(SBFL)的影响。此外,还评估了 SBS 和 SBFL 之间可能存在的相关性。

材料和方法

选择了两种义齿基托材料(Lucitone 550-L 和 Acron MC-AC)和两种衬里树脂(Ufi Gel Hard-UGH 和 Tokuso Rebase Fast-TR)。将每种义齿基托树脂加工成圆柱体(20 x 20 毫米),并使用分体模具(3.5 x 5.0 毫米)将衬里树脂包装在粘结表面上。将每种义齿基托-衬里树脂组合的试件施加剪切力(0.5 毫米/分钟)直至断裂。采用阶梯式方法确定 SBFL。将试件分别进行 10000 次循环(5.0 Hz)或直至断裂。对于 SBS 和 SBFL,在衬里后(对照)和 WS 30 天后测试试件。使用 2 因素方差分析和 Tukey 检验(α = 0.05)分析数据(MPa)。为了测试 SBS 和 SBFL 之间是否存在相关性,进行了线性回归分析。

结果

WS 显著增加了 AC-TR 和 AC-UGH 的 SBS 和 AC-TR、AC-UGH 和 LUGH 的 SBFL(p < 0.05)。WS 后,UGH 产生的 SBS 高于 TR,无论使用哪种义齿基托树脂。无论实验分组和义齿基托树脂如何,UGH 产生的 SBFL 均高于 TR 试件(p < 0.05)。在 SBS 和 SBFL 之间观察到强正线性相关性(r(2) = 0.949)。

结论

总体而言,UGH 产生的 SBS 和 SBFL 最高。WS 增加了 AC 衬里试件的 SBS 和 SBFL。在这两个变量之间观察到正相关。

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