Kim J-W, Kim J-H, Thompson V P, Zhang Y
Department of Biomaterials and Biomimetics, New York University College of Dentistry, 345 E. 24th St., Room 813C, New York, NY 10010, USA.
J Dent Res. 2007 Nov;86(11):1046-50. doi: 10.1177/154405910708601105.
Porcelain-veneered restorations often chip and fracture from repeated occlusal loading, making fatigue studies relevant. Most fatigue studies are limited to uni-axial loading without sliding motion. We hypothesized that bi-axial loading (contact-load-slide-liftoff, simulating a masticatory cycle), as compared with uni-axial loading, accelerates the fatigue of layered ceramics. Monolithic glass plates were epoxy-joined to polycarbonate substrates as a transparent model for an all-ceramic crown on dentin. Uni-and bi-axial cyclic contact was applied through a hard sphere in water, by means of a mouth-motion simulator apparatus. The uni-axial (contact-load-hold-liftoff) and traditional R-ratio fatigue (indenter never leaves the specimen surface) produced similar lifespans, while bi-axial fatigue was more severe. The accelerated crack growth rate in bi-axial fatigue is attributed to enhanced tensile stresses at the trailing edges of a moving indenter. Fracture mechanics descriptions for damage evolution in brittle materials loaded repeatedly with a sliding sphere are provided. Clinical relevance is addressed.
烤瓷贴面修复体常常因反复的咬合负荷而崩瓷和断裂,因此疲劳研究具有重要意义。大多数疲劳研究仅限于无滑动运动的单轴加载。我们推测,与单轴加载相比,双轴加载(接触 - 加载 - 滑动 - 抬起,模拟咀嚼周期)会加速层状陶瓷的疲劳。将单片玻璃板用环氧树脂连接到聚碳酸酯基板上,作为牙本质上全瓷冠的透明模型。通过口腔运动模拟器装置,在水中通过一个硬球施加单轴和双轴循环接触。单轴(接触 - 加载 - 保持 - 抬起)和传统的R比率疲劳(压头从不离开试样表面)产生相似的寿命,而双轴疲劳更为严重。双轴疲劳中裂纹扩展速率的加快归因于移动压头后缘处拉应力的增强。本文提供了对用滑动球体反复加载的脆性材料损伤演化的断裂力学描述,并探讨了其临床相关性。