Imbeni V, Kruzic J J, Marshall G W, Marshall S J, Ritchie R O
Materials Sciences Division, Lawrence Berkeley National Laboratory, and Department of Materials Science and Engineering, University of California, Berkeley, California 94720, USA.
Nat Mater. 2005 Mar;4(3):229-32. doi: 10.1038/nmat1323. Epub 2005 Feb 13.
The dentin-enamel junction (DEJ), which is the interfacial region between the dentin and outer enamel coating in teeth, is known for its unique biomechanical properties that provide a crack-arrest barrier for flaws formed in the brittle enamel1. In this work, we re-examine how cracks propagate in the proximity of the DEJ, and specifically quantify, using interfacial fracture mechanics, the fracture toughness of the DEJ region. Careful observation of crack penetration through the interface and the new estimate of the DEJ toughness ( approximately 5 to 10 times higher than enamel but approximately 75% lower than dentin) shed new light on the mechanism of crack arrest. We conclude that the critical role of this region, in preventing cracks formed in enamel from traversing the interface and causing catastrophic tooth fractures, is not associated with the crack-arrest capabilities of the interface itself; rather, cracks tend to penetrate the (optical) DEJ and arrest when they enter the tougher mantle dentin adjacent to the interface due to the development of crack-tip shielding from uncracked-ligament bridging.
牙本质-釉质界(DEJ)是牙齿中牙本质与外层釉质涂层之间的界面区域,以其独特的生物力学特性而闻名,这些特性为脆性釉质中形成的缺陷提供了裂纹阻止屏障1。在这项工作中,我们重新研究了裂纹在DEJ附近的扩展情况,并具体使用界面断裂力学量化了DEJ区域的断裂韧性。对裂纹穿透界面的仔细观察以及对DEJ韧性的新估计(比釉质高约5至10倍,但比牙本质低约75%)为裂纹阻止机制提供了新的线索。我们得出结论,该区域在防止釉质中形成的裂纹穿过界面并导致灾难性牙齿骨折方面的关键作用,并非与界面本身的裂纹阻止能力相关;相反,裂纹倾向于穿透(光学)DEJ,并在进入与界面相邻的更坚韧的罩牙本质时由于未开裂韧带桥接产生的裂纹尖端屏蔽作用而停止扩展。