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Ceramic Bonding to Biocompatible Titanium Alloys Obtained by Powder Metallurgy

机译:通过粉末冶金获得的生物相容性钛合金陶瓷粘合

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The shear bond strength between a ceramic material (Titankeramik , Vita Zahnfabrik, Germany) and two biocompatible titanium alloys was investigated. Ti-13%Nb-13%Zr (TNZ) and Ti-35%Nb-7%Zr-5%Ta (TNZT) alloys were obtained based on the blended elemental technique followed by a sequence of cold uniaxial and isostatic pressing and sintering. Characterization involved microstructural analysis (SEM) and crystalline phase identification (XRD). Subsequently, samples were machined to 4 × 4 mm with a base of 5 × 1 mm. The base metals were blasted with Al_2O_3 particles followed by the application of a coupling agent and opaque ceramic. After ceramic firing, the specimens were loaded in a universal testing machine (0,5mm/min). XRD revealed the presence of a and p-phases for TNZ, and peaks related to β phases and Nb and Ta for the TNZT alloy. SEM evaluation (TNZ) depicted remaining pores and biphasic microstructure formation. SEM micrographs of the TNZT alloy revealed good densification and a homogeneous β structure. Shear bond strength data (MPa) were statistically analyzed (one-way ANOVA and Tukey test, α=.05) revealing that TNZT (37.6 ± 2.91) presented significant higher values (p=0.0002) compared to TNZ (26.03 ± 2.92). In conclusion, it seems that Ti alloy composition plays a significant role on ceramic bonding.
机译:研究了陶瓷材料(TaTankeramik,Vita Zahnfabrik,德国)和两种生物相容性钛合金之间的剪切粘合强度。基于混合元素技术,获得Ti-13%Nb-13%Zr(TNZ)和Ti-35%Nb-7%Zr-5%Ta(TNZT)合金,然后得到一系列寒冷的单轴和等静压和烧结序列。表征涉及微观结构分析(SEM)和结晶相鉴定(XRD)。随后,将样品加工至4×4mm,底部为5×1mm。将贱金属用Al_2O_3颗粒喷射,然后施用偶联剂和不透明陶瓷。陶瓷烧制后,将样品装入通用试验机(0.5mm / min)。 XRD揭示了TNZ的A和P阶段的存在,以及与TNZT合金的β相和Nb和Ta相关的峰。 SEM评估(TNZ)描绘了剩余的孔和双相组织形成。 TNZT合金的SEM显微照片显示出良好的致密化和均匀的β结构。统计分析剪切粘合强度数据(MPa)(单向ANOVA和Tukey检验,α= .05)揭示TNZT(37.6±2.91)与TNZ(26.03±2.92)相比呈现显着较高的值(P = 0.0002)。总之,Ti合金组成似乎对陶瓷粘合起着重要作用。

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