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Impact of Packing and Processing Technique on Mechanical Properties of Acrylic Denture Base Materials

机译:包装和加工工艺对丙烯酸义齿基托材料力学性能的影响

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摘要

The fracture resistance of polymethylmethacrylate (PMMA) as the most popular denture base material is not satisfactory. Different factors can be involved in denture fracture. Among them, flexural fatigue and impact are the most common failure mechanisms of an acrylic denture base. It has been shown that there is a correlation between the static strength and fatigue life of composite resins. Therefore, the transverse strength of the denture base materials can be an important indicator of their service life. In order to improve the fracture resistance of PMMA, extensive studies have been carried out; however, only a few promising results were achieved, which are limited to some mechanical properties of PMMA at the cost of other properties. This study aimed at optimizing the packing and processing condition of heat-cured PMMA as a denture base resin in order to improve its biaxial flexural strength (BFS). The results showed that the plain type of resin with a powder/monomer ratio of 2.5:1 or less, packed conventionally and cured in a water bath for 2 h at 95 °C provides the highest BFS. Also, it was found that the performance of the dry heat processor is inconsistent with the number of flasks being loaded.
机译:聚甲基丙烯酸甲酯(PMMA)作为最受欢迎的义齿基材的耐断裂性不令人满意。假牙骨折可能涉及不同的因素。其中,弯曲疲劳和冲击是丙烯酸义齿基托最常见的破坏机理。已经表明,复合树脂的静态强度和疲劳寿命之间存在相关性。因此,义齿基体材料的横向强度可以是其使用寿命的重要指标。为了提高PMMA的抗断裂性,已经进行了广泛的研究。但是,仅获得了一些有希望的结果,这些结果以其他性能为代价,限制了PMMA的某些机械性能。这项研究旨在优化热固化PMMA作为义齿基体树脂的包装和加工条件,以提高其双轴弯曲强度(BFS)。结果表明,粉末/单体比率为2.5:1或更低,以常规方式包装并在95°C的水浴中固化2小时的普通树脂提供了最高的BFS。另外,还发现干热处理器的性能与所装载的烧瓶的数量不一致。

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