School of Mechanical and Chemical Engineering, University of Western Australia, Crawley, WA 6009, Australia.
J Biomech. 2013 May 31;46(9):1561-7. doi: 10.1016/j.jbiomech.2013.03.018. Epub 2013 Apr 25.
The critical conditions to effect transverse fracture in canine teeth of carnivores in lateral loading are analyzed. The teeth are modeled as tapered coaxial beams with uniformly thin enamel coats. A stress analysis is first carried out using beam theory, and stress intensity factors for inward propagating cracks at the location of maximum tensile stress along the lingual face are then determined. The fracture begins as arrested channel cracks within the enamel, followed by stable penetration around the tooth and into the dentin to the point of failure. Two- and three-dimensional finite element models are used to evaluate the full fracture evolution. The analysis yields an explicit scaling relation for the critical fracture load in terms of characteristic tooth dimensions, notably tooth height and base radius. The role of enamel, ignored in previous 'strength of materials' analyses, is shown to be important in determining the precursor crack equilibrium prior to full fracture. Implications concerning allometry are briefly discussed.
分析了在侧向加载下使食肉动物犬齿发生横向断裂的临界条件。牙齿被建模为具有均匀薄釉质涂层的锥形共轴梁。首先使用梁理论进行应力分析,然后确定沿舌面最大拉伸应力位置处向内传播裂缝的应力强度因子。断裂首先在釉质内作为被阻止的通道裂缝开始,然后在牙齿周围稳定地穿透并进入牙本质,直到失效。二维和三维有限元模型用于评估完整的断裂演化。分析得出了一个显式的临界断裂载荷与特征牙齿尺寸(特别是牙齿高度和基底半径)的比例关系。以前的“材料强度”分析中忽略的釉质的作用,对于确定完全断裂之前的先驱裂缝平衡是很重要的。简要讨论了关于异速生长的影响。