Li H, Khor K A, Cheang P
School of Mechanical and Production Engineering, Nanyang Technological University, Singapore, Singapore.
Biomaterials. 2002 Jan;23(1):85-91. doi: 10.1016/s0142-9612(01)00082-5.
Hydroxyapatite (HA) coatings with titania addition were produced by the high velocity oxy-fuel (HVOF) spray process. Mechanical properties of the as-sprayed coatings in terms of adhesive strength, shear strength and fracture toughness were investigated to reveal the effect of the titania reinforcement on HA. Qualitative phase analysis with X-ray diffraction (XRD) showed that mutual chemical reaction between TiO2 and HA, that formed CaTiO3 occurred during coating formation. Differential scanning calorimetry (DSC) analysis of the starting powders showed that the mutual chemical reaction temperature was approximately 1410 degrees C and the existence of TiO2 can effectively inhibit the decomposition of HA at elevated temperatures. The positive influence of TiO2 addition on the shear strength was revealed. The incorporation of 10 vol% TiO2 significantly improved the Young's modulus of HA coatings from 24.82 (+/- 2.44) GPa to 43.23 (+/- 3.20) GPa. It decreased to 38.51 (+/- 3.65) GPa as the amount of TiO2 increased to 20 vol%. However, the addition of TiO2 has a negative bias on the adhesive strength of HA coatings especially when the content of TiO2 reached 20 vol%. This is attributed to the weak chemical bonding and brittle phases existing at the splats' interface that resulted from mutual chemical reactions. The fracture toughness exhibited values of 0.48 (+/- 0.08) MPa m0.5, 0.60 (+/- 0.07) MPa m0.5 and 0.67 (+/- 0.06) MPa m0.5 for the HA coating, 10 vol% TiO2 blended HA coating and 20 vol% TiO2 blended HA coating respectively. The addition of TiO2 in HA coating with the amount of less than 20 vol% is suggested for satisfactory toughening effect in HVOF HA coating.
通过高速氧燃料(HVOF)喷涂工艺制备了添加二氧化钛的羟基磷灰石(HA)涂层。研究了喷涂态涂层在附着力、剪切强度和断裂韧性方面的力学性能,以揭示二氧化钛增强对HA的影响。X射线衍射(XRD)定性相分析表明,在涂层形成过程中,TiO2与HA之间发生相互化学反应,生成了CaTiO3。对起始粉末的差示扫描量热法(DSC)分析表明,相互化学反应温度约为1410℃,TiO2的存在可有效抑制HA在高温下的分解。揭示了添加TiO2对剪切强度的积极影响。掺入10体积%的TiO2可使HA涂层的杨氏模量从24.82(±2.44)GPa显著提高到43.23(±3.20)GPa。当TiO2含量增加到20体积%时,杨氏模量降至38.51(±3.65)GPa。然而,添加TiO2对HA涂层的附着力有负面影响,尤其是当TiO2含量达到20体积%时。这归因于相互化学反应导致的扁平颗粒界面处存在的弱化学键和脆性相。HA涂层、10体积%TiO2混合HA涂层和20体积%TiO2混合HA涂层的断裂韧性分别为0.48(±0.08)MPa·m0.5、0.60(±0.07)MPa·m0.5和0.67(±0.06)MPa·m0.5。建议在HVOF HA涂层中添加TiO2且含量小于20体积%,以获得令人满意的增韧效果。