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Effects of Pressure and Reaction Time on Bonding of Hydroxyapatite Ceramics and Titanium by Hydrothermal Hot-pressing

机译:压力和反应时间对水热压羟基磷灰石陶瓷和钛键合的影响

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Solidification of hydroxyapatite (HA) and its bonding with titanium (Ti) was achieved simultaneously by using a hydrothermal hot-pressing (HHP) method at the low temperature as low as 150 °C. A mixture of calcium hydrogen phosphate dihydrate(DCPD) and calcium hydroxide was used as a starting powder material for solidifying HA. 3-point bending tests were conducted to obtain an estimate of the fracture toughness for the HA/Ti interface. Application of pressures greater than 20MPa was necessary for bonding, and the interface strength increased with the increasing applied pressure. However, the degree of HA formation was lower when the pressure was increased. Excessively long term HHP treatment was shown to be ineffective for the bonding and there was an optimal treatment time. The optimal pressure and treatment time for bonding were estimated to be 40MPa and 12hrs, respectively.
机译:通过在低至150℃下使用水热热压(HHP)方法同时通过低至150℃的水热热压(HHP)方法同时实现羟基磷灰石(HA)及其与钛(TI)的粘合。磷酸钙二水合物(DCPD)和氢氧化钙的混合物用作用于固化HA的起始粉末材料。进行3点弯曲试验以获得HA / Ti界面的断裂韧性的估计。粘合需要大于20MPa的压力的施加,并且界面强度随着施加压力的增加而增加。然而,当压力增加时,HA形成的程度降低。过度长期的HHP治疗被证明对粘合无效,并且存在最佳的治疗时间。键合的最佳压力和治疗时间估计为40MPa和12hrs。

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