Deng Yan, Lawn Brian R, Lloyd Isabel K
Materials Science and Engineering Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
J Biomed Mater Res. 2002;63(2):137-45. doi: 10.1002/jbm.10091.
Results of contact tests using spherical indenters on flat ceramic coating layers bonded to compliant substrates are reported for selected dental ceramics. Critical loads to produce various damage modes, cone cracking, and quasiplasticity at the top surfaces and radial cracking at the lower (inner) surfaces are measured as a function of ceramic-layer thickness. It is proposed that these damage modes, especially radial cracking, are directly relevant to the failure of all-ceramic dental crowns. The critical load data are analyzed with the use of explicit fracture-mechanics relations, expressible in terms of routinely measurable material parameters (elastic modulus, strength, toughness, hardness) and essential geometrical variables (layer thickness, contact radius). The utility of such analyses in the design of ceramic/substrate bilayer systems for optimal resistance to lifetime-threatening damage is discussed.
报告了使用球形压头对粘结在柔性基底上的平面陶瓷涂层进行接触测试的结果,测试对象为选定的牙科陶瓷。测量了在陶瓷层厚度变化时,产生各种损伤模式(如顶面的锥形开裂和准塑性,以及底面(内表面)的径向开裂)的临界载荷。研究表明,这些损伤模式,尤其是径向开裂,与全瓷牙冠的失效直接相关。利用明确的断裂力学关系对临界载荷数据进行分析,这些关系可以用常规可测量的材料参数(弹性模量、强度、韧性、硬度)和基本几何变量(层厚度、接触半径)来表示。讨论了此类分析在设计陶瓷/基底双层系统以实现对危及寿命的损伤的最佳抗性方面的实用性。