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Manufacturing of High Toughness Hydroxyapatite Produced by Wet Chemical Method

机译:湿化学方法生产的高韧性羟基磷灰石制造

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Hydroxyapatite (HA) is among the leading ceramic materials for hard tissue replacement implants. Despite the excellent bioactivity of HA, low toughness has limited the application of these materials to non-load bearing areas. The sinterability of nanocrystalline hydroxyapatite (HA) powder via new heating profile for conventional pressureless sintering was studied. The starting nanocrystalline HA powder was synthesized by wet chemical precipitation method. After uniaxial pressing followed by isostatic pressing, HA powder compacts are sintered over the temperature range of 1000°C to 1300°C. Different holding time of 1 minute and 120 minutes was applied as a heating profile of HA samples. The results revealed that new heating profile was effective in producing a HA body with high density of 98% when sintered at 1200°C. Subsequently, mechanical properties such as fracture toughness and hardness, of HA compacts increased with decrease in grain size. HA showed the highest hardness of 9.51 GPa and fracture toughness of 1.41 MPa.m1/2 when sintered at 1100 °C. XRD analysis indicated that decomposition of HA phase during sintering at high temperatures do not occur. Short holding time leads to finer microstructure of HA and subsequently better mechanical properties.
机译:羟基磷灰石(HA)是硬组织替代植入物的领先陶瓷材料中。尽管HA的优异生物活性,但低韧性限制了这些材料在非承载区域的应用。研究了纳米晶羟基磷灰石(HA)粉末通过新的加热曲线用于传统无压烧结的烧结性。通过湿化学沉淀法合成起始的纳米晶HA粉末。在单轴压制之后,在等静压后,HA粉末压块在1000℃至1300℃的温度范围内烧结。将持续时间为1分钟和120分钟作为HA样品的加热曲线施加。结果表明,在1200℃下烧结时,新的加热型材在生产高密度为98%的HA主体方面是有效的。随后,HA紧凑的诸如断裂韧性和硬度的机械性能随着晶粒尺寸的降低而增加。 HA在1100℃下烧结时,HA显示出最高硬度为9.51GPa的最高硬度,并且在1.41mPa.m1 / 2的骨折韧性。 XRD分析表明,在高温下烧结期间HA相的分解不会发生。短保持时间导致HA的微观结构和随后更好的机械性能。

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