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首页> 外文期刊>Materials Science and Engineering >Ti-6Al-4V ELI microlattice structures manufactured by electron beam melting: Effect of unit cell dimensions and morphology on mechanical behaviour
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Ti-6Al-4V ELI microlattice structures manufactured by electron beam melting: Effect of unit cell dimensions and morphology on mechanical behaviour

机译:电子束熔化制备的Ti-6Al-4V ELI微晶格结构:晶胞尺寸和形态对机械性能的影响

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Additive manufactured titanium alloy microlattice structures are attracting the attention of numerous industrial fields, since they allow a customised and optimised design of components and structures.In the current work, Electron Beam Melting (EBM) technique was used to produce Ti6Al4V ELI rhombic dodecahedron (RD) microlattice structures. Preliminary tests on bulk specimens highlighted the effect of surface roughness on mechanical response. A confocal microscope was used to characterise surface topography and to obtain a precise evaluation of surface roughness, which is a critical point in EBM technique.Three different unit cell sizes were selected in order to investigate the effect of cell dimensions on microlattice mechanical properties. Morphological evaluations were performed through Computed Tomography (CT) technique, which allowed the comparison of the real models to the designed one. Discrepancies between actual and CAD geometries were observed, with increasing importance for lower cell sizes.Quasi-static compression tests and low velocity impact tests were performed on RD lattices, highlighting a decrease in mechanical properties with the increase of cell size, except for the specific energy absorption, which depends also on lattice density.A heat treatment was performed on lattice structures, but its effect on mechanical properties was negligible, mainly for the higher cell size lattice, proving the lack of significant residual stresses in lattices produced via EBM.Thermographic observations during compression tests allowed a clear identification of the failure instant and the deformation mode, which occurs along a 45(center dot) inclined plane.
机译:增材制造的钛合金微晶格结构吸引了众多工业领域的关注,因为它们允许对组件和结构进行定制和优化设计。在当前工作中,电子束熔化(EBM)技术用于生产Ti6Al4V ELI菱形十二面体(RD) )微晶格结构。对大块样品的初步测试突出了表面粗糙度对机械响应的影响。共聚焦显微镜用于表征表面形貌并获得精确的表面粗糙度评估,这是EBM技术的关键点。选择了三种不同的晶胞尺寸,以研究晶胞尺寸对微晶格力学性能的影响。形态评估是通过计算机断层扫描(CT)技术进行的,该技术可以将实际模型与设计模型进行比较。观察到实际几何尺寸和CAD几何尺寸之间的差异,对于减小较小的像元尺寸而言越来越重要。对RD晶格进行了准静态压缩测试和低速冲击测试,强调了机械性能随像元尺寸的增加而降低,除了特定的能量吸收也取决于晶格密度。对晶格结构进行了热处理,但对机械性能的影响可以忽略不计,主要是因为晶格尺寸更大,证明了通过EBM产生的晶格缺乏明显的残余应力。压缩测试期间的观察结果可以清楚地识别出沿45(中心点)倾斜平面发生的破坏瞬间和变形模式。

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