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Traumatic impact loading on human maxillary incisor: A Dynamic finite element analysis

机译:外伤对人上颌切牙的冲击载荷:动态有限元分析

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Background: The most vulnerable tooth is the maxillary incisor, which sustains 80% of dental injuries. Dynamic Finite element analysis is used to understand the biomechanics of fracture of maxillary incisor under traumatic impact loading. Aim: The aim was to investigate the stress patterns of an upper incisor in a three-dimensional (3D) model under traumatic impact loading in various directions. Materials and Methods: A 3D finite element model of the upper incisor and surrounding tissues was established. A sinusoidal force of 800N was applied over a period of 4 ms. Results: Software performs a series of calculations and mathematical equations and yields the simulation results. During the horizontal impact (F1), stresses were concentrated in the cervical area of the crown, reaching peak stress of 125 MPa at 2 ms. Conclusion: A horizontal force exerted on the labial surface of the tooth tends to cause cervical crown fractures, oblique crown root fractures, and oblique root fractures.
机译:背景:最脆弱的牙齿是上颌切牙,可造成80%的牙齿受伤。动态有限元分析被用来了解上颌切牙在外伤冲击载荷作用下的骨折的生物力学。目的:目的是研究在不同方向的外伤冲击载荷下三维(3D)模型中上门牙的应力模式。材料与方法:建立上切牙及周围组织的3D有限元模型。在4毫秒内施加了800N的正弦力。结果:软件执行一系列计算和数学方程式,并产生仿真结果。在水平冲击(F1)期间,应力集中在冠部的颈部区域,在2 ms时达到125 MPa的峰值应力。结论:在牙齿的唇面上施加水平力会导致颈冠骨折,斜冠根骨折和斜根骨折。

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