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Morse taper performance: A finite element analysis study

机译:莫氏锥度性能:有限元分析研究

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摘要

OBJECTIVES: To evaluate and compare the magnitude and distribution of stresses generated on implants, abutments and first molar metal-ceramic crowns using finite element analysis. METHODS: Preliminary three-dimensional models were created using the computer-aided design software SolidWorks. Stress and strain values were observed for two distinct virtual models: model 1 - Morse taper and solid abutment; model 2 - Morse taper and abutment with screw. A load (250 N) was applied to a single point of the occlusal surface at 15° to the implant long axis. Von Mises stresses were recorded for both groups at four main points: 1) abutment-retaining screws; 2) abutment neck; 3) cervical bone area; 4) implant neck. RESULTS AND CONCLUSION: Model 1 showed a higher stress value (1477.5 MPa) at the abutment-retaining screw area than the stresses found in model 2 (1091.1 MPa for the same area). The cervical bone strain values did not exceed 105 μm for either model.
机译:目的:使用有限元分析评估和比较在种植体,基台和第一磨牙金属陶瓷冠上产生的应力的大小和分布。方法:使用计算机辅助设计软件SolidWorks创建了初步的三维模型。在两个不同的虚拟模型中观察到应力和应变值:模型1-莫氏锥度和固体基台;模型2-莫氏锥度和带螺钉的基台。在与种植体长轴成15°角的咬合表面的单个点上施加一个负载(250 N)。两组的冯·米塞斯应力都记录在四个要点上:1)支座固定螺丝; 2)基台颈部; 3)颈椎骨面积; 4)植入颈部。结果与结论:模型1在基台固位螺钉区域显示的应力值(1477.5 MPa)比模型2(在相同区域为1091.1 MPa)高。两种模型的颈骨应变值均不超过105μm。

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