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首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of interconnected porous -tricalcium phosphate (-TCP) based on a setting reaction of -TCP granules with HNO3 followed by heat treatment
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Fabrication of interconnected porous -tricalcium phosphate (-TCP) based on a setting reaction of -TCP granules with HNO3 followed by heat treatment

机译:基于HNO3的-TCP颗粒的设定反应,然后热处理制备互连多孔磷酸钙(-TCP)的制备

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摘要

-Tricalcium phosphate [-TCP] is the typical bone substitute due to its excellent osteoconductivity and bioresorbability. One of the keys to improve its potential as bone substitute is to introduce porous structure and its regulation. In this study, interconnected porous -TCP blocks were fabricated through a setting reaction of -TCP granules and subsequent heat treatment. First, -TCP granules were mixed with HNO3. Upon mixing, -TCP granules were bridged with dicalcium phosphate dihydrate [DCPD: CaHPO(4)2H(2)O] containing Ca(NO3)(2). Then, the DCPD-bridged -TCP was heated at 1100 degrees C. During the heating process, DCPD containing Ca(NO3)(2) transformed into -TCP and bonded with -TCP granules. As a result, an interconnected porous -TCP block formed. The diametral tensile strength and porosity of the interconnected porous -TCP block fabricated from 200-300-m -TCP granules and 5 N HNO3 and then heated at 1,100 degrees C were 1.4 +/- 0.2 MPa and 57%+/- 2%, respectively. (c) 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 797-804, 2018.
机译:- 磷酸钙[-TCP]是典型的骨代替,因为其优异的骨导电性和生物吸血病。作为骨代替代品改善其潜力的钥匙之一是引入多孔结构及其调节。在该研究中,通过-TCP颗粒的设定反应和随后的热处理来制造互连的多孔-TCP嵌段。首先,将-TCP颗粒与HNO3混合。混合时,-TCP颗粒用磷酸二水合物桥接[DCPD:CaHPO(4)2H(2)O]含Ca(NO 3)(2)。然后,将DCPD - 桥接-TCP在1100℃下加热。在加热过程中,含有Ca(NO 3)(2)的DCPD转化成-TCP并与-TCP颗粒键合。结果,形成了互连的多孔-TCP块。由200-300M -TCP颗粒制备的互连多孔-TCP嵌段和5N HNO3的径向抗拉强度和孔隙率,然后在1,100℃下加热为1.4 +/- 0.2MPa和57%+ / - 2%,分别。 (c)2017年Wiley期刊,Inc .J生物保解员A部分:106A:797-804,2018。

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