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Response of Functionality Graded Hydroxyapatite/F-75 in Saline Solution 0.9 NaCl

机译:盐酸溶液中官能度羟基磷灰石/ F-75的响应0.9%NaCl

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Functionally graded hydroxyapatite (HAP) /F-75 was fabricated using powder metallurgy technique. Samples fabricated were tested inside 0.9% NaCl to check their bioactivity reaction. After immersed, samples were analyzed using Fourier Transform Infrared (FTIR) and mass change. Result showed that mass gain decreased as the percentage of HAP in the intermediate layer increased. Mass gain obtained after immersion test because of the passive layer formation on the F-75 surface. Dissolution of HAP was occurred as the FTIR analysis detected the existence of phosphate, and hydroxide ions bands inside the solution. The dissolution process is the part of the mechanism of apatite formation. The apatite layer formation is important to encourage the formation of new bone.
机译:使用粉末冶金技术制造功能梯度羟基磷灰石(HAP)/ F-75。在0.9%NaCl内测试制造的样品以检查其生物活性反应。浸没后,使用傅里叶变换红外(FTIR)和质量变化来分析样品。结果表明,随着中间层中的HAP百分比增加,质量增益降低。由于F-75表面上的被动层形成,在浸渍试验后获得的质量收益。发生Hap的溶解,因为FTIR分析检测到溶液内的磷酸盐和氢氧化物离子带的存在。溶解过程是磷灰石形成机制的一部分。磷灰石层形成对于鼓励形成新骨骼是重要的。

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