首页> 外文期刊>South African journal of industrial engineering >INFLUENCE OF LARGE ARTIFICIAL POROSITY ON BENDING BEHAVIOUR OF TI6AL4V ELI ADDITIVELY MANUFACTURED SPECIMENS SUBJECTED TO TYPICAL LOADS DURING MASTICATION
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INFLUENCE OF LARGE ARTIFICIAL POROSITY ON BENDING BEHAVIOUR OF TI6AL4V ELI ADDITIVELY MANUFACTURED SPECIMENS SUBJECTED TO TYPICAL LOADS DURING MASTICATION

机译:大型人工孔隙度对Ti6Al4V ELI拆卸行为对咀嚼典型载荷进行典型载荷的弯曲行为的影响

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Effective quality control of implants made using additive manufacturing is an important task for suppliers to comply fully with existing regulations and certifications.To study the influence of porosity on the mechanical behaviour of mandibular implants produced by additive manufacturing, preliminary tests with longitudinal flat samples were performed with 3D point bending tests.Ti6Al4V Extra Low Interstitial (ELI) specimens with artificial porosity were designed and subjected to typical loads during mastication.In this work, a finite element simulation was constructed to investigate the bending behaviour of samples, which was consistent with the experimental results.The work shows that even large artificial cavities (designed up to 0.42 mm) do not significantly affect the strength of additively manufactured 2.5 mm-thick Ti6Al4V ELI specimens under typical static loads of mandibular implants, in the considered loading conditions, and for samples subjected to appropriate surface finishing and annealing heat treatment.
机译:使用添加剂制造业的植入物的有效控制是供应商完全符合现行法规和认证的重要任务。要研究孔隙率对由添加剂制造产生的下颌植入物的力学行为的影响,进行了纵向平面样品的初步试验使用3D点弯曲试验。在咀嚼过程中设计并进行了具有人工孔隙度的额外低间隙(ELI)标本,并在咀嚼过程中进行典型的载荷。在这项工作中,构建了有限的元素模拟以研究样品的弯曲行为,这与之一致实验结果表明,甚至大的人造腔(设计高达0.42毫米)不会显着影响在悬浮条件下的典型静载下的典型静载下加剧制造的2.5mm厚的Ti6Al4V ELI标本的强度,以及样品经过适当的表面NG和退火热处理。

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