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首页> 外文期刊>Materials Science and Engineering >A comparative study on single-laser and multi-laser selective laser melting AlSi10Mg: defects, microstructure and mechanical properties
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A comparative study on single-laser and multi-laser selective laser melting AlSi10Mg: defects, microstructure and mechanical properties

机译:单激光和多激光选择性激光熔炼AlSi10Mg的比较研究:缺陷,显微组织和力学性能

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摘要

AlSi10Mg samples fabricated by using a multi-laser beams selective laser melting system have been studied in this paper. The relative density, defects, microstructure and mechanical properties of the isolated and overlap samples are investigated. It is found that the width and depth of the melt pools in overlap area are larger than that in isolated area, which leads to an obvious boundary between the overlap area and isolated area. Moreover, a few small pores were found in the melt pools along the overlap boundary. The isolated and overlap area in as-built samples have similar microstructure, microhardness and tensile strength. The morphology and distribution of Si change into particles from continuous dendrite after annealing treatment. However, it does not cause the grains to grow up. The microhardness and tensile strength have little difference due to almost the same grain size. The slight difference in strength and elongation of isolated and overlap samples are supposed to be caused by small pores. It can be concluded that the microstructure significantly influences the microhardness and strength of the AlSi10Mg samples, while the small pores have limited influence. There area few smooth surfaces on the fractures of both isolated and overlap samples, which turn out to be the melt pool boundaries. This indicates that the cracks mainly propagate along the melt pool boundaries.
机译:本文研究了采用多激光束选择性激光熔化系统制备的AlSi10Mg样品。研究了分离和重叠样品的相对密度,缺陷,微观结构和力学性能。结果表明,重叠区熔池的宽度和深度大于孤立区,导致重叠区与孤立区之间边界明显。此外,沿着重叠边界在熔池中发现了一些小孔。竣工样品中的孤立区域和重叠区域具有相似的显微组织,显微硬度和抗张强度。退火处理后,Si的形态和分布从连续的枝晶变为颗粒。但是,它不会导致谷物长大。由于几乎相同的晶粒尺寸,因此显微硬度和拉伸强度几乎没有差异。分离的和重叠的样品的强度和伸长率的细微差异被认为是由小孔引起的。可以得出结论,显微组织显着影响AlSi10Mg样品的显微硬度和强度,而小孔的影响有限。在隔离样品和重叠样品的裂缝上几乎没有光滑的表面,这证明是熔池边界。这表明裂纹主要沿着熔池边界传播。

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