首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructure, hardness, corrosion resistance and porcelain shear bond strength comparison between cast and hot pressed CoCrMo alloy for metal-ceramic dental restorations
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Microstructure, hardness, corrosion resistance and porcelain shear bond strength comparison between cast and hot pressed CoCrMo alloy for metal-ceramic dental restorations

机译:铸造和热压CoCrMo合金在金属陶瓷牙科修复物中的组织,硬度,耐蚀性和瓷剪切粘结强度比较

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Objectives: The purpose of this study was to compare the microstructure, hardness, corrosion resistance and metal-porcelain bond strength of a CoCrMo dental alloy obtained by two routes, cast and hot pressing. Methods: CoCrMo alloy substrates were obtained by casting and hot pressing. Substrates' microstructure was examined by the means of Optical Microscopy (OM) and by Scanning Electron Microscope (SEM) and Energy Dispersive X-ray Spectroscopy (EDS). Hardness tests were performed in a microhardness indenter. The electrochemical behavior of substrates was investigated through potentiodynamic tests in a saline solution (8gNaCl/L). Substrates were bonded to dental porcelain and metal-porcelain bond strength was assessed by the means of a shear test performed in a universal test machine (crosshead speed: 0.5mm/min) until fracture. Fractured surfaces as well as undestroyed interface specimens were examined with Stereomicroscopy and SEM-EDS. Data was analyzed with Shapiro-Wilk test to test the assumption of normality. The t-test (p 0.05) was used to compare shear bond strength results. Results: Cast specimens exhibited dendritic microstructures whereas hot pressed specimens exhibited a typical globular microstructure with a second phase spread through the matrix. The hardness registered for hot pressed substrates was greater than that of cast specimens, 438±24HV/1 and 324±8HV/1, respectively. Hot pressed substrates showed better corrosion properties than cast ones, i.e. higher OCP; higher corrosion potential (E corr) and lower current densities (i corr). No significant difference was found (p0.05) in metal-ceramic bond strength between cast (116.5±6.9MPa) and hot pressed (114.2±11.9MPa) substrates. The failure type analysis revealed an adhesive failure for all specimens.Significance: Hot pressed products arise as an alternative to cast products in dental prosthetics, as they impart enhanced mechanical and electrochemical properties to prostheses without compromising the metal-ceramic bond strength.
机译:目的:本研究的目的是比较通过铸造和热压两种途径获得的CoCrMo牙科合金的显微组织,硬度,耐腐蚀性和金属-陶瓷结合强度。方法:通过铸造和热压获得CoCrMo合金基底。通过光学显微镜(OM)以及扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDS)检查基材的微观结构。硬度测试是在显微硬度计中进行的。通过在盐溶液(8gNaCl / L)中的电位动力学测试研究了底物的电化学行为。将基材粘结到牙科瓷器上,并通过在万能试验机(十字头速度:0.5mm / min)中进行直至剪切断裂的剪切试验来评估金属-陶瓷的粘结强度。用立体显微镜和SEM-EDS检查破裂的表面以及未破坏的界面样品。使用Shapiro-Wilk检验分析数据以检验正态性假设。 t检验(p <0.05)用于比较剪切粘结强度结果。结果:铸件标本显示出树枝状的微观结构,而热压标本则显示出典型的球状微观结构,第二相散布在整个基体中。热压基材的硬度大于铸件,分别为438±24HV / 1和324±8HV / 1。热压基材比铸造基材表现出更好的腐蚀性能,即更高的OCP。较高的腐蚀电位(E corr)和较低的电流密度(i corr)。在铸造(116.5±6.9MPa)和热压(114.2±11.9MPa)基材之间的金属陶瓷结合强度没有发现显着差异(p <0.05)。失效类型分析揭示了所有标本的粘合失败。意义:热压产品在牙科修复物中代替铸造产品出现,因为它们在不损害金属-陶瓷结合强度的情况下赋予了其增强的机械和电化学性能。

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