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首页> 外文期刊>Surface & Coatings Technology >Investigation into microstructural properties of fluorapatite Nd-YAG laser clad coatings with PVA and WG binders
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Investigation into microstructural properties of fluorapatite Nd-YAG laser clad coatings with PVA and WG binders

机译:含PVA和WG粘结剂的氟磷灰石Nd-YAG激光熔覆涂层的微观结构性能研究

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Biomedical implants are generally coated with a thin layer of hydroxyapatite (HA) using a plasma spraying or pulsed laser deposition method. However, the bonding strength between the coating layer and the substrate is relatively low. Moreover, the high temperature of the deposition process causes a structural instability of the HA, and therefore degrades its bioactivity and reduces the service life of the coating layer following implantation. Accordingly, the present study replaces HA with fluorapatite (FA) as the coating material, and examines the effects of two different binders, namely polyvinyl alcohol (PVA) and water glass (WG), on the properties of FA coatings deposited on Ti-6Al-4V substrates using an Nd-YAG laser cladding process. Scanning electron microscopy (SEM) observations reveal that the FA coating has a coral- and dendrite-like structure when mixed with the PVA binder, but a pure dendrite-like structure when mixed with the WG binder. In addition, the Ca/P value of the WG-based FA coating is significantly higher than that of the PVA-based coating. Fluorapatite, Al_2O_3, CaTiO_3 and Ca_3(PO_4)_2 phases are observed in both coating layers. However, the XRD analysis results indicate that the microstructure of the WG sample is dominated by Ca_3(PO_4)_2 phase while that of the PVA sample is dominated by FA. After soaking in SBF, it was observed that the specimen produced with PVA binder or less laser output power possessed a better apatite induction ability.
机译:通常使用等离子喷涂或脉冲激光沉积方法在生物医学植入物上涂一层羟基磷灰石(HA)。但是,涂层与基材之间的结合强度相对较低。此外,沉积过程的高温导致HA的结构不稳定,因此降低了其生物活性并降低了植入后涂层的使用寿命。因此,本研究用氟磷灰石(FA)代替HA作为涂层材料,并研究了两种不同的粘合剂,即聚乙烯醇(PVA)和水玻璃(WG),对沉积在Ti-6Al上的FA涂层的性能的影响。 -4V基板使用Nd-YAG激光熔覆工艺。扫描电子显微镜(SEM)观察表明,FA涂层与PVA粘合剂混合时具有珊瑚状和树枝状的结构,而与WG粘合剂混合时具有纯树枝状的结构。另外,基于WG的FA涂层的Ca / P值明显高于基于PVA的涂层的Ca / P值。在两个涂层中均观察到氟磷灰石,Al_2O_3,CaTiO_3和Ca_3(PO_4)_2相。然而,XRD分析结果表明,WG样品的微观结构以Ca_3(PO_4)_2相为主,而PVA样品的微观结构以FA为主。在SBF中浸泡后,观察到用PVA粘合剂或更低的激光输出功率生产的样品具有更好的磷灰石诱导能力。

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