Influence of tension and deformation indicators on the quality of removable constructions acrylic basis

K. Andrienko
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Abstract

Background. The question of distribution of masticatory pressure is one of the main branches in quali­tive manufacturing of removable constructions. With the development of software, as well as with the increase in the power of computer technology has also spread to the problems of biomechanics, in particular the biomechanics of the human oral cavity. The aim of our study was to analyze the results of using the method of finite element techniques with the purpose to improve the quality of prosthetic treatment by correct modeling constructional denture elements. Materials and Methods. The study involved 45 patients aged 44–73 years (mean age 59.2±4.3) treated with complete laminar prosthetic constructions for the upper jaw and lower jaw. A powerful method was developed to solve the problems of the theory of elasticity – the finite element method. The main idea is that the body under the study is divided into a finite number of subdomains or elements on which the desired continuous function is approximated by a polynomial (consists of piecewise continuous functions). A two-dimensional quadrangular element with four nodes was chosen as the partition element. Dividing it into elements and further solving the problem was in the ANSYS Mechanical APDL package (USA). Results. Regarding the calibration of the ultimate displacements of nodal points and as a result of the distribution of masticatory pressure under the basis of a complete removable dentures on the tissues of the prosthetic area, the average values of each plane were as follows: for section PM1 – the plane with high pressure was ([675298.14±5.21] m2K). Taking the PM2 region, the values were slightly higher ([369743.3±3.9] m2K) and ([735356.34±4.52] m2K), respectively. Conclusions. Our findings suggest direct relationship between the using of mathematical calculation of material volume, volume deformation, potential data and elasticity theory as auxiliary element in the manufacture of removable dentures and, as a result, direct influence on level of quality of following constructions. Keywords: orthopedic treatment, finite element method, complete removable dentures, tension theory, deformation.
拉力和变形指标对可拆卸结构质量的影响 丙烯酸酯基础
背景。咀嚼压力的分布问题是可摘义齿质量制造的主要分支之一。随着软件的发展和计算机技术能力的提高,生物力学问题,特别是人类口腔的生物力学问题也得到了广泛的研究。 我们的研究旨在分析使用有限元技术方法的结果,目的是通过对义齿结构元素进行正确建模来提高修复治疗的质量。 材料和方法。研究涉及 45 名年龄在 44-73 岁之间(平均年龄为 59.2±4.3)的上颌和下颌全层义齿修复患者。为解决弹性理论问题,研究人员开发了一种强大的方法--有限元法。其主要思想是将被研究体划分为有限个子域或元素,在这些子域或元素上,所需的连续函数由多项式(由片断连续函数组成)逼近。我们选择了一个有四个节点的二维四边形元素作为分割元素。使用 ANSYS Mechanical APDL 软件包(美国)将其划分为多个元素并进一步求解。 结果关于结点极限位移的校准,以及在全口活动假牙基础上咀嚼压力在修复区域组织上的分布,每个平面的平均值如下:PM1 部分--高压力平面为([675298.14±5.21] m2K)。PM2 区域的数值分别略高([369743.3±3.9] m2K)和([735356.34±4.52] m2K)。 结论我们的研究结果表明,将材料体积、体积变形、势能数据和弹性理论的数学计算作为制作活动义齿的辅助元素,两者之间有着直接的关系,因此对后续结构的质量水平有着直接的影响。 关键词:矫形治疗、有限元法、全口义齿、张力理论、变形。
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