【粘接树脂对金属板变形的影响】。

M Hideshima
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引用次数: 0

摘要

从生命和义齿两方面来看,口腔临床义齿的设计需要兼顾多方面的考虑;减轻对牙周组织的不良影响是至关重要的,而预防假牙在其功能上的可能破裂和采取卫生措施是必要的。据报道,在义齿设计中使用金属和粘接剂,含4-META树脂(以下简称粘接剂树脂)不仅具有卫生优势,因为金属与树脂之间的牢固结合使细菌菌群难以粘连,而且减少了义齿从其终线部分破裂的危险。然而,关于义齿整体机械强度与粘接树脂的使用之间的相关性分析以及由于粘接树脂固化收缩导致金属框架变形的报道很少。针对这些问题,本文采用振动逻辑模态分析方法和适合于时间过程测定的应变计装置,对铬钴合金和局部义齿样品进行了粘接树脂和非粘接树脂对其影响的测试。得到了以下结果:1。应变片法测定结果表明,插入量越大、越薄的铬钴合金试样,粘接树脂的插入量越大,而非粘接树脂的插入量几乎没有粘结力,表明试样因固化收缩而产生的变形很小,联锁力很小。2. 模态分析结果表明,与非粘接树脂相比,在义齿样品上插入粘接树脂导致义齿终点线部分机械强度和活动的刚体模态增加。3.从应变片法测定结果和模态分析结果来看,建议采用粘接树脂提高义齿强度。
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[The influence of the adhesive resin for the deformation of the metallic plate].

From both vital and denture sides, the design of denture in dental clinic needs taking care of various viewpoints; alleviation of the adverse effect on the periodontium is necessary on the vital side, and prevention of possible rupture of the denture at its functioning and taking hygienic measures are necessary on the denture side. Utilization of the metal and adhesive, 4-META containing resin (hereinafter referred to as adhesive resin) in the design of denture has been reported to be not only hygienically advantageous because of difficult adhesiveness of bacterial flora due to solid union between the metal and the resin, but also less in danger of the denture rupture from its finishing line portion. However, a few reports have been made on the analysis of the correlation between the mechanical strength of the whole of denture and the use of adhesive resin and on the deformation of the metallic frame due to curing shrinkage of adhesive resin. In the present study, in terms of these problems, utilizing the modal analysis applying a vibrato-logical technique and the strain gauge device appropriate for the determination of the time-course, samples of chrome-cobalt alloy and of partial denture were examined for the influence of inserted adhesive and non-adhesive resins upon them. The following results were obtained: 1. The results of the determination by the strain gauge method revealed that the insertion of adhesive resin tended to have more displacement volume for more insertion volume and for thinner chrome-cobalt alloy sample and that of non-adhesive resin had practically no adhesive force, suggesting a small deformation of the sample due to curing shrinkage, with little interlocking force. 2. The results of modal analysis revealed that the insertion of the adhesive resin onto the denture sample led to an increase in mechanical strength and a rigid body modality of the activity at the finishing line portion compared with the non-adhesive resin. 3. From the results of the determination by the strain gauge method and of the modal analysis, the application of adhesive resin was suggested to increase the intensity of denture.

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