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Microhardness and microstructure evolution of TiB2 reinforced Inconel 625/TiB2 composite produced by selective laser melting

机译:选择性激光熔化制备TiB2增强Inconel 625 / TiB2复合材料的显微硬度和组织演变

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In this study, micron-size TiB2 particles were utilized to reinforce Inconel 625 produced by selective laser melting. Exceptional microhardness 600-700 HV0.3 of the composite was obtained. In further investigation, the microstructure and mechanical properties of Inconel 625/TiB2 composite can be significantly influenced by addition of TiB2 particles during SLM. It was found that the long directional columnar grains observed from SLM-processed Inconel 625 were totally changed to fine dendritic matrix due to the addition of TiB2 particles. Moreover, with laser energy density (LED) of 1200 J/m, a Ti, Mo rich interface around TiB2 particles with fine thickness can be observed by FESEM and EDS. The microstructure evolution can be determined by different laser energy density (LED): under 1200 J/m, gamma phase in dendrite grains; under 600 J/m, gamma phase in combination of dendritic and acicular grains; under 400 J/m, gamma phase acicular grains. Under optimized LED 1200 J/m, the dynamic nanohardness (8.62 GPa) and elastic modulus (167 GPa) of SLM-processed Inconel 625/TiB2 composite are higher compared with those of SLM-processed Inconel 625 (3.97 GPa and 135 GPa, respectively). (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,微米尺寸的TiB2颗粒用于增强通过选择性激光熔化生产的Inconel 625。获得了优异的复合材料显微硬度600-700 HV0.3。在进一步的研究中,Inconel 625 / TiB2复合材料的微观结构和力学性能会受到SLM期间添加TiB2颗粒的影响。结果发现,由于添加了TiB2颗粒,经SLM处理的Inconel 625观察到的长方向柱状晶粒已完全转变为精细的树枝状基质。此外,在激光能量密度(LED)为1200 J / m的情况下,可以通过FESEM和EDS观察到TiB2颗粒周围的Ti,Mo富界面。可以通过不同的激光能量密度(LED)来确定微观结构的演变:在1200 J / m以下,枝晶晶粒中的γ相;在1200 J / m以下,枝晶中的γ相。在600 J / m以下,γ相结合了树枝状和针状晶粒;低于400 J / m,γ相针状晶粒。在优化的1200 J / m LED下,与SLM处理的Inconel 625相比,SLM处理的Inconel 625 / TiB2复合材料的动态纳米硬度(8.62 GPa)和弹性模量(167 GPa)分别高于SLM处理的Inconel 625的动态纳米硬度(3.97 GPa和135 GPa) )。 (C)2016 Elsevier Ltd.保留所有权利。

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