Mechanical and Aerospace Engineering, Oklahoma State University, Tulsa, OK, USA.
Dent Mater. 2011 Dec;27(12):1279-84. doi: 10.1016/j.dental.2011.09.004. Epub 2011 Oct 10.
Chipping failures observed clinically in bilayer systems of porcelain and zirconia restorations should be coupled with a monoclinic to tetragonal phase transformation in the zirconia layer due to the high compressive stress.
Phase transformations were mapped using 2D micro X-ray diffraction of 1083 frames at 100μm×100μm spacing automatically positioned along the core layer of a sectioned fractured crown.
Yttria-zirconia tetragonal phase transformations to monoclinic zirconia and monoclinic yttria were observed, mostly at the impacted area. A simple map of (101) tetragonal d-spacing strain reveals stress relaxation during phase transformation was detected at inner section of lingual side, because the initial state of compressive residual stress assists this phase transformation at the inter section of lingual side of the core while initial tensile stress at the outer sides under the veneer relaxes under compression and initially prevents phase transformation.
This study implements an experimental method to map the phase transformation, after applying local compressive load until fracture. Such fractures resemble clinically observed chipping failure.
瓷层和氧化锆修复双层系统中临床观察到的碎裂失效,应归因于氧化锆层中的高压缩应力导致的单斜相向四方相的转变。
通过对分段断裂牙冠的核心层自动定位的 1083 个帧以 100μm×100μm 的间距进行二维微 X 射线衍射,对相变进行了映射。
观察到氧化钇稳定四方相氧化锆向单斜相氧化锆和单斜相氧化钇的转变,主要发生在受影响区域。简单的(101)四方 d 间距应变图揭示了在相变过程中检测到的应力松弛,这是在舌侧内部分层中发现的,因为初始压缩残余应力状态有助于在核心的舌侧交点处发生这种相变,而在贴面下方的外侧的初始拉伸应力在压缩下松弛,并最初防止了相变。
本研究实施了一种实验方法,在施加局部压缩载荷直至断裂后,对相变进行映射。这种断裂类似于临床观察到的碎裂失效。