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首页> 外文期刊>The Journal of Prosthetic Dentistry >Influence of thermal and mechanical stresses on the strength of intact and relined denture bases.
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Influence of thermal and mechanical stresses on the strength of intact and relined denture bases.

机译:热应力和机械应力对完整义齿和义齿义齿基托强度的影响。

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STATEMENT OF PROBLEM: Denture bases may become increasingly weaker as a result of thermal stress and flexural cyclic loading. Information regarding this potential problem and its relationship to the denture base reline is limited. PURPOSE: This study evaluated the influence of thermal and mechanical stresses on the strength of intact and relined denture bases. MATERIAL AND METHODS: Twenty-eight microwave-polymerized (Acron MC) intact denture bases were prepared in the shape of a 3-mm-thick maxillary denture. Additionally, fifty-six 2-mm-thick denture bases were relined with 1 mm of autopolymerizing resin (Tokuyama Rebase Fast II or New Truliner) (n=28). Intact and relined specimens were divided into 4 groups (n=7) as follows: without stress (control); a mechanical stress at 0.8 Hz for 10,000 cycles; 5000 thermal cycles between 5 degrees C and 55 degrees C; or a combination thermo-mechanical stress. The specimens were vertically loaded in compression with a rounded rod at 5 mm/min until failure, using auniversal testing machine. Data on maximum fracture load (N), deflection at fracture (%), and fracture energy (N.mm) were analyzed by 2-way analysis of variance and Student-Newman-Keuls tests (alpha=.05). RESULTS: The strength of the denture bases relined with New Truliner was not significantly affected by any of the experimental conditions, but comparing the control groups, New Truliner exhibited the lowest maximum fracture load values. The maximum fracture load of intact denture bases (P=.002) and those relined with Tokuyama Rebase Fast II (P=.01) showed a significant decrease after thermal stress. Additionally, cyclic loading significantly decreased the maximum fracture load (P<.001), deflection at fracture (P=.025), and fracture energy (P<.001) of intact denture bases and those relined with Tokuyama Rebase (P values of .002, .039, and .001, respectively). CONCLUSION: Thermal and mechanical stresses exert deleterious effects on the strength of intact and/or relined denture bases, which vary according to the relining material used.
机译:问题陈述:由于热应力和弯曲循环载荷的影响,义齿基托可能会变得越来越弱。有关此潜在问题及其与义齿基托的关系的信息有限。目的:本研究评估了热应力和机械应力对完整义齿和义齿义齿基托强度的影响。材料与方法:制备28颗微波聚合(Acron MC)完整义齿基托,其厚度为3毫米厚的上颌义齿。另外,用1mm的自聚树脂(Tokuyama Rebase Fast II或New Truliner)对56个2mm厚的义齿基托进行衬里(n = 28)。将完整和内衬的标本分为4组(n = 7),如下:无压力(对照组);无应力(对照组)。在0.8 Hz的机械应力下进行10,000次循环;在5摄氏度至55摄氏度之间的5000个热循环;或热机械应力的组合。使用通用测试机,以5 mm / min的速度用圆棒垂直压缩试样,直到失败。通过方差的2维分析和Student-Newman-Keuls检验(alpha = .05),分析了最大断裂载荷(N),断裂挠度(%)和断裂能(N.mm)的数据。结果:在任何实验条件下,使用新特鲁林纳衬托的义齿基托的强度均未受到显着影响,但与对照组相比,新特鲁林纳衬托的义齿基托显示出最低的最大骨折负荷值。完整义齿基托(P = .002)和用Tokuyama Rebase Fast II衬托的义齿基托(P = .01)的最大断裂载荷在热应力作用下显着降低。此外,循环载荷显着降低了完整义齿基托和用Tokuyama Rebase衬托的义齿基托的最大断裂载荷(P <.001),断裂挠度(P = .025)和断裂能(P <.001)(P值分别为.002,.039和.001)。结论:热应力和机械应力会对完整义齿和/或义齿义齿基托的强度产生有害影响,义齿强度会根据所使用的义齿材料而变化。

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