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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructural and Mechanical Characterization of Thin-Walled Tube Manufactured with Selective Laser Melting for Stent Application
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Microstructural and Mechanical Characterization of Thin-Walled Tube Manufactured with Selective Laser Melting for Stent Application

机译:用选择性激光熔化制造薄壁管的微观和力学特性

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摘要

This paper focuses on microstructural and mechanical characterization of metallic thin-walled tube produced with additive manufacturing (AM), as a promising alternative technique for the manufacturing of tubes as a feedstock for stents micromachining. Tubes, with a wall thickness of 500 mu m, were made of 316L stainless steel using selective laser melting. Its surface roughness, constituting phases, underlying microstructures and chemical composition were analyzed. The dependence of hardness and elastic modulus on the crystallographic orientation were investigated using electron backscatter diffraction and nanoindentation. Spherical nanoindentation was performed to extract the indentation stress-strain curve from the load-displacement data. The obtained results were compared with those for a commercial 316L stainless steel stent. Both tube and commercial stent samples were fully austenitic, and the as-fabricated surface finish for the tube was much rougher than the stent. Microstructural characterization revealed that the tube had a columnar and coarse grain microstructure, compared to equiaxed grains in the commercial stent. Berkovich nanoindentation suggested an effect for the grain orientation on the hardness and Young's modulus. The stress-strain curves and the indentation yield strength for the tube and stent were similar. The work is an important step toward AM of patient-specific stents.
机译:本文重点研究了用添加剂制造(AM)生产的金属薄壁管的微观结构和力学特性,这是一种很有前途的替代技术,可用于制造支架微加工的管。管子的壁厚为500μm,由316L不锈钢通过选择性激光熔化制成。分析了其表面粗糙度、组成相、微观结构和化学成分。利用电子背散射衍射和纳米压痕研究了硬度和弹性模量与晶体取向的关系。采用球形纳米压痕法从载荷-位移数据中提取压痕应力-应变曲线。所得结果与商用316L不锈钢支架的结果进行了比较。管子和商用支架样品均为完全奥氏体,管子的制造表面光洁度比支架粗糙得多。微观结构表征表明,与商用支架中的等轴晶粒相比,该管具有柱状粗晶粒微观结构。Berkovich纳米压痕表明晶粒取向对硬度和杨氏模量有影响。管和支架的应力-应变曲线和压痕屈服强度相似。这项工作是实现患者专用支架AM的重要一步。

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