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首页> 外文期刊>American Journal of Physical Anthropology >Effect of prism orientation and loading direction on contact stresses in prismatic enamel of primates: Implications for interpreting wear patterns
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Effect of prism orientation and loading direction on contact stresses in prismatic enamel of primates: Implications for interpreting wear patterns

机译:棱柱取向和加载方向对灵长类棱柱搪瓷中接触应力的影响:解释磨损模式的含义

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The ability of prisms to effectively dissipate contact stress at the surface will influence wear rates in teeth. The aim of this investigation was to begin to quantify the effect of prism orientation on surface stresses. Seven finite element models of enamel microstructure were created, each model differing in the angulation of prism orientation with regard to the wear surface. For validation purposes, the mechanical behavior of the model was compared with published experimental data. In order to test the enamel under lateral loads, a compressed food particle was dragged across the surface from the dentino-enamel junction (DEJ) towards the outer enamel surface (OES). Under these conditions, tensile stresses in the enamel model increased with increases in the coefficient of friction. More importantly, stresses were found to be lowest in models in which the prisms approach the surface at lower angles (i.e., more obliquely cut prisms), and highest when the prisms approached the surface at 60 degrees (i.e., less obliquely cut). Finally, the direction of travel of the simulated food particle was reversed, allowing comparison of the difference in behavior between trailing and leading edge enamels (i.e., when the food particle was dragged either towards or away from the DEJ). Stresses at the trailing edge were usually lower than stresses at the leading edge. Taken together with what is known about prism orientation in primate teeth, such findings imply greater wear resistance at the intercuspal region and less wear resistance at the lateral enamel at. midcrown. Such findings appear to be supported by archeological evidence.
机译:棱镜有效消除表面接触应力的能力将影响牙齿的磨损率。这项研究的目的是开始量化棱镜取向对表面应力的影响。创建了七个搪瓷微观结构的有限元模型,每个模型在磨损表面方面的棱柱取向角度不同。为了进行验证,将模型的机械性能与已发布的实验数据进行了比较。为了在横向载荷下测试牙釉质,将压缩的食物颗粒从牙本质-牙釉质结合处(DEJ)拖动到牙釉质外表面(OES)上。在这些条件下,搪瓷模型中的拉伸应力随着摩擦系数的增加而增加。更重要的是,在棱镜以较小角度接近表面的模型中(即,斜切的棱镜越多),应力越低;而当棱镜以60度倾斜表面(即,斜切的程度越小)时,应力最大。最后,将模拟食物颗粒的行进方向反转,从而可以比较后沿和前沿搪瓷之间的行为差​​异(即,当食物颗粒向DEJ方向移动或离开DEJ方向拖动时)。后缘的应力通常低于前缘的应力。结合已知的关于灵长类动物牙齿中棱柱取向的知识,这些发现意味着在牙尖间区域的耐磨性更高,而在外侧牙釉质的耐磨性更低。中冠。这些发现似乎得到考古学证据的支持。

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