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Fabrication of heat-resisting nickel composite gradient structures with TiC nano additive during powder bed fusion process

机译:TiC纳米添加剂在粉末床熔合过程中制备耐热镍复合梯度结构

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In the present study, we the experimentally determined regimes of powder bed fusion (PBF) for multilayered 3D parts of metal matrix composites (ММС) based on nickel heat resistance alloy with TiC nano ceramic reinforced additive. Via combinatorial method of design, it was shown the possibility of layer-by-layer PBF of functional grade (FG) 3D parts from these MMC for the account of increasing the alloying element concentration - (5 % – 10 % – 15%vol) for nano TiC in NiCrSiB matrix. Methods of optical and scanning electronic microscopy, X-ray and EDX microanalysis, microhardness measurement have been used to estimate the structure formation features in the fabricated gradient layers. Phase analysis of the fabricated MMC showed that the initial TiC particles are dissolved after the laser remelting with different velocities depending on the layer height concerning substrate. It was shown the control capability by the mechanical properties (microhardness) within such FG cladded layers.
机译:在本研究中,我们通过实验确定了基于镍耐热合金和TiC纳米陶瓷增强添加剂的金属基复合材料(ММС)多层3D零件的粉末床熔化(PBF)方案。通过组合设计方法,表明了这些MMC中功能级(FG)3D零件的逐层PBF的可能性,原因是增加了合金元素的浓度-(5%-10%-15%vol)用于NiCrSiB基体中的纳米TiC。光学和扫描电子显微镜,X射线和EDX显微分析,显微硬度测量的方法已用于估计所制造的梯度层中的结构形成特征。所制造的MMC的相分析表明,激光重熔后,初始TiC颗粒会以与基材有关的层高而不同的速度溶解。通过这种FG包覆层内的机械性能(显微硬度)显示出控制能力。

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