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Bonding strength of apatite layer formed on chemically treated tantalum metal

机译:化学处理钽金属上形成的磷灰石层的结合强度

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摘要

As a candidate for highly loaded bone substitute, tantalum metal has attractive features such as biocompatibility, high malleability and ductility. The present authors previously showed that NaOH and heat treatments make tantalum metal to form a bonelike apatite layer on its surface in a short period, although even the untreated tantalum metal forms the apatite in a long period. In the present study, bonding strength of the apatite layer, which was formed on the NaOH- and heat-treated tantalum metal, to the substrate was measured under tensile stress and compared with that of the apatite formed on the untreated substrate. The former showed much higher bonding strength than the latter. The higher bonding strength of the former was attributed to a graded structure at the apatite-substrate interface where the apatite gradually changes into the interior metal substrate.
机译:作为高负荷骨替代品的候选者,钽金属具有生物相容性,高延展性和延展性等吸引人的特征。本发明人先前表明,NaOH和热处理使钽金属在短时间内在其表面上形成骨状磷灰石层,尽管即使未经处理的钽金属也能在长时间内形成磷灰石。在本研究中,在拉伸应力下测量了在NaOH和热处理过的钽金属上形成的磷灰石层与基底的结合强度,并将其与未处理的基底上形成的磷灰石的结合强度进行了比较。前者的结合强度比后者高得多。前者的较高结合强度归因于在磷灰石-基底界面处的渐变结构,其中磷灰石逐渐变为内部金属基底。

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