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- W3208839554 abstract "Abstract The presence of dental implant has totally altered the force transfer from crown to the surrounding bone and the oral mechanical environment. This leads to abnormal bone remodelling. The high stiffness of the implant decreased the physiologic loading of the surrounding bone. This situation is described as stress shielding. Stress shielding is the common cause of failure in the fixture of dental implant. There are various implant geometries that have different impacts on the stress shielding effect. The aim of this study is to analyse the effects of implant length to stress shielding by using finite element method. 3 different lengths of dental implant models (6mm, 8mm and 10mm) are drawn using ANSYS APDL 2019 and a shear force of 30N is applied to the implant to examine the stress distribution of the implant and surrounding bone. Stress transfer parameter (STP) is computed and compared for each dental implant. This study found that by increasing the length of the dental implant, the maximum Von Mises stress decreases. The stress shielding effect also decreases when the length of dental implant increases." @default.
- W3208839554 created "2021-11-08" @default.
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- W3208839554 date "2021-10-01" @default.
- W3208839554 modified "2023-09-25" @default.
- W3208839554 title "Mechanical Characterization of Dental Implant Due to Biomechanical Loading" @default.
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- W3208839554 doi "https://doi.org/10.1088/1742-6596/2051/1/012015" @default.
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