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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Nano-structural bioactive gradient coating fabricated by computer controlled plasma-spraying technology
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Nano-structural bioactive gradient coating fabricated by computer controlled plasma-spraying technology

机译:计算机控制等离子喷涂技术制备的纳米结构生物活性梯度涂层

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The poor mechanical property of hydroxyapatite was the major problem for load bearing and implant coating in clinical applications. To overcome this weakness, a bioactive gradient coating with a special design composition of hydroxyapatite (HA), ZrO_2, Ti, bioglass was developed. This 120 μm coating with an upper layer of 30-50 μm porous HA produced by computer controlled plasma spraying which maintained energy level of the plasma which ensure proper melting of powder. The crystal size of the coating was 18.6-26.2 nm. Transformation of t-ZrO_2 to m-ZrO_2 reduced the thermal stress that weakened the coating and lowered down interfacial strength of the coating and metal substrate. Thermal stress of sprayed coating was 16.4 MPa which was much smaller than the sample without thermal treatment of 67.1 MPa. Interfacial strength between the coating and metal substrate was 53 MPa which is much higher than conventional Hydroxyapatite coating. Based on XRD analysis crystallinity of HA approached 98%. Therefore, high temperature treatment improved long term stability of the coating through improved crystallinity of hydroxyapatite and reduced other impure calcium phosphate phase.
机译:羟基磷灰石的机械性能差是临床应用中承重和植入物涂层的主要问题。为了克服这一弱点,开发了一种具有特殊设计成分的羟基磷灰石(HA),ZrO_2,Ti和生物玻璃的生物活性梯度涂层。这种120μm的涂层具有30-50μm多孔HA的上层涂层,可通过计算机控制的等离子喷涂生产,该涂层可维持等离子的能量水平,从而确保粉末的适当熔化。涂层的晶体尺寸为18.6-26.2nm。从t-ZrO_2到m-ZrO_2的转变降低了使涂层弱化的热应力,并降低了涂层与金属基材的界面强度。喷涂涂层的热应力为16.4 MPa,比未经热处理的样品67.1 MPa小得多。涂层与金属基材之间的界面强度为53 MPa,远高于传统的羟基磷灰石涂层。根据XRD分析,HA的结晶度接近98%。因此,高温处理通过改善羟基磷灰石的结晶度和减少其他不纯的磷酸钙相来改善涂层的长期稳定性。

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