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Multiscale Analysis Of Stress Distribution In Teeth Under Applied Forces

机译:外力作用下牙齿应力分布的多尺度分析

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Objectives. The present study aimed to clarify stress distribution in teeth under an external applied load using microindentation and multiscale simulation. Methods. Anisotropic material properties of enamel and dentin were measured using a microindentation method with a dynamic ultra microhardness tester. The numerical model was constructed using the finite element mesh superposition method with a microscale (enamel rods), mesoscale (teeth), and macroscale (bone). Multiscale simulation was used to analyze different scale structures. A concentrated load (10 N) was applied to the labial surface of the central incisor. Results. The results revealed stresses of 5 MPa (normal stress) and 6.5 MPa (shear stress) in the enamel sheath at the center of the labial region compared to 1.4 MPa (normal stress) and 21.4 MPa (shear stress) in the cervical region. Significance. These results suggest that shear stresses in the enamel sheath may play significant roles in stress transmission.
机译:目标。本研究旨在通过显微压痕和多尺度模拟来阐明外加载荷下牙齿的应力分布。方法。牙釉质和牙本质的各向异性材料性能使用动态超显微硬度测试仪的显微压痕法进行测量。数值模型是使用有限元网格叠加方法构建的,其中包括微米级(搪瓷棒),中观级(牙齿)和宏观级(骨骼)。多尺度模拟用于分析不同尺度的结构。将集中负荷(10 N)施加到中央门牙的唇面。结果。结果显示在唇部区域中心的牙釉质护套中的应力为5 MPa(法向应力)和6.5 MPa(剪切应力),而在子宫颈区域为1.4 MPa(法向应力)和21.4 MPa(剪切应力)。意义。这些结果表明搪瓷护套中的剪切应力可能在应力传递中起重要作用。

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