Guo Hongbo, Khor Khiam Aik, Boey Yin Chiang, Miao Xigeng
School of Materials Engineering, Nanyang Technological University, Nanyang Avenue, Singapore 639798, Singapore.
Biomaterials. 2003 Feb;24(4):667-75. doi: 10.1016/s0142-9612(02)00381-2.
Hydroxyapatite (HA) ceramics have been conventionally strengthened and toughened in the form of composites and coatings. New microstructural designs and processing methodologies are still needed for the improvement of the mechanical properties of HA-based ceramics. This study was to prepare laminated and functionally graded HA/yttria stabilized tetragonal zirconia (Y-TZP) composites by the relatively new process of spark plasma sintering (SPS). The microstructure and the mechanical properties of the laminated and functionally graded composites were studied for possible orthopedic applications. It was found that the laminated and functionally graded HA/Y-TZP composites could be densified at 1200 degrees C within 5 min by the SPS process and the average HA grain size in the composite layers was reduced by half due to the well-dispersed Y-TZP second phase. The HA phase in the composite layers was stable up to 1200 degrees C and the Y-TZP second phase remained the tetragonal zirconia (t-ZrO(2)) phase after being processed at the highest temperature of 1250 degrees C. The laminated and functionally graded HA/Y-TZP composites exhibited much improved mechanical properties compared with the pure HA ceramics; the bending strength of the composites reached about 200 MPa, double the strength of the pure HA ceramics.
羟基磷灰石(HA)陶瓷传统上是以复合材料和涂层的形式进行强化和增韧的。为了改善HA基陶瓷的力学性能,仍然需要新的微观结构设计和加工方法。本研究旨在通过相对较新的放电等离子烧结(SPS)工艺制备层状和功能梯度的HA/钇稳定四方氧化锆(Y-TZP)复合材料。研究了层状和功能梯度复合材料的微观结构和力学性能,以探讨其在骨科领域的潜在应用。结果发现,通过SPS工艺,层状和功能梯度的HA/Y-TZP复合材料能够在5分钟内于1200℃下致密化,并且由于Y-TZP第二相分布均匀,复合层中HA的平均晶粒尺寸减小了一半。复合层中的HA相在1200℃以下保持稳定,Y-TZP第二相在最高温度1250℃下处理后仍为四方氧化锆(t-ZrO₂)相。与纯HA陶瓷相比,层状和功能梯度的HA/Y-TZP复合材料的力学性能有了显著提高;复合材料的抗弯强度达到约200MPa,是纯HA陶瓷强度的两倍。