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Assay of Secondary Anisotropy in Additively Manufactured Alloys for Dental Applications

机译:牙科用增材制造合金的次级各向异性测定

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摘要

Even though additive manufacturing (AM) techniques have been available since the late 1980s, their application in medicine is still striving to gain full acceptance. For the production of dental implants, the use of AM allows to save time and costs, but also to ensure closer dimensional tolerances and higher repeatability, as compared to traditional manual processes. Among the several AM solutions, Laser Powder Bed Fusion (L-PBF) is the most appropriate for the production of metal prostheses. The target of this paper was to investigate the mechanical and microstructural characteristics of Co–Cr–Mo and Ti–6Al–4V alloys processed by L-PBF, with a specific focus on secondary anisotropy that is usually disregarded in the literature. Tensile specimens were built in the EOSINT-M270 machine, along different orientations perpendicular to the growth direction. Density, hardness, and tensile properties were measured and the results combined with microstructural and fractographic examination. For both alloys, the results provided evidence of high strength and hardness, combined with outstanding elongation and full densification. Extremely fine microstructures were observed, sufficient to account for the good mechanical response. Statistical analysis of the mechanical properties allowed to attest the substantial absence of secondary anisotropy. The result was corroborated by the observations of the microstructures and of the failure modes. Overall, the two alloys proved to be high-performing, in very close agreement with the values reported in the datasheets, independently of the build orientation.
机译:尽管自1980年代末以来就已经出现了增材制造(AM)技术,但它们在医学中的应用仍在努力争取获得完全的接受。对于牙科植入物的生产,与传统的手动工艺相比,使用AM可以节省时间和成本,而且还可以确保更小的尺寸公差和更高的可重复性。在几种增材制造解决方案中,激光粉末床融合(L-PBF)最适合用于金属假体的生产。本文的目的是研究由L-PBF处理的Co-Cr-Mo和Ti-6Al-4V合金的力学和微观结构特征,特别是通常在文献中忽略的二次各向异性。在EOSINT-M270机器上沿垂直于生长方向的不同方向构建拉伸试样。测量密度,硬度和拉伸性能,并将结果与​​显微组织和分形学检查相结合。对于这两种合金,结果均提供了高强度和硬度的证据,并具有出色的延伸率和完全致密化。观察到非常精细的微观结构,足以说明良好的机械响应。机械性能的统计分析可以证明基本上没有次级各向异性。观察到的微观结构和破坏模式证实了这一结果。总体而言,这两种合金被证明是高性能的,与数据表中报告的值非常接近,而与构造方向无关。

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