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首页> 外文期刊>Journal of biomedical materials research, Part A >Mechanical Properties of Porous, Electrosprayed Calcium Phosphate Coatings
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Mechanical Properties of Porous, Electrosprayed Calcium Phosphate Coatings

机译:多孔电喷涂磷酸钙涂层的机械性能

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Mechanical properties of calcium phosphate coatings (CaP), deposited using the electrostatic spray deposition (ESD) technique, have been characterized using a range of analytical techniques, including tensile testing (ASTM C633), fatigue testing (ASTM E855), and scratch testing using blunt and sharp scratch styli. Moreover, a simple explantation procedure was successfully introduced using ESD-coated, threaded dental implants to characterize the mechanical performance of CaP coatings qualitatively under conditions that mimic clinical situations as close as possible. Generally, all analysis techniques revealed that ESD coatings need to be crystallized in order to ensure interfacial adhesion to the substrate and sufficient mechanical strength of the superficial reticular structure. Crystalline carbonated hydroxyapatite coatings (CHA, heat-treated at 700 deg C) were resistant to fatigue as well as to plastic plough-ing deformation by means of various scratch styli, and the fragile surface structure of ESD coatings was maintained to a large extent after unscrewing CHA-coated dental implants from femoral condyles of goat cadavers. From these experiments, it was concluded that interfacial adhesion of crystalline CHA ESD coatings to the titanium substrate was sufficient, but that mechanical strength of the superficial architecture of ESD coatings need to be optimized for applications where high shear and compressive stresses are imposed onto the rather fragile coating surface of reticular ESD morphologies.
机译:使用静电喷涂(ESD)技术沉积的磷酸钙涂层(CaP)的机械性能已通过一系列分析技术进行了表征,包括拉伸测试(ASTM C633),疲劳测试(ASTM E855)和划痕测试,包括钝和锋利的刮笔。此外,已成功引入一种简单的植入程序,该程序使用ESD涂层螺纹牙植入物在尽可能接近临床情况的条件下定性表征了CaP涂层的机械性能。通常,所有分析技术都表明,ESD涂层需要结晶,以确保与基底的界面粘合以及表面网状结构的足够机械强度。结晶的碳酸羟基磷灰石涂层(CHA,在700摄氏度下进行了热处理)具有抗疲劳和通过各种划痕笔头进行的塑性犁形变形的能力,并且ESD涂层的脆弱表面结构在很大程度上保持了从山羊尸体的股骨上拧下CHA涂层的牙科植入物。从这些实验得出的结论是,晶体CHA ESD涂层与钛基体的界面附着力足够,但是对于在高剪切应力和压缩应力作用于表面的情况下,需要优化ESD涂层表面结构的机械强度。易碎的涂层表面呈网状ESD形态。

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