首页> 外文会议>International Manufacturing Science and Engineering Conference >EFFECTS OF BUILD ORIENTATION ON MECHANICAL PROPERTIES OF CURVED-SURFACE ALSI10MG ALLOY FABRICATED BY POWDER BED FUSION ADDITIVE MANUFACTURING
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EFFECTS OF BUILD ORIENTATION ON MECHANICAL PROPERTIES OF CURVED-SURFACE ALSI10MG ALLOY FABRICATED BY POWDER BED FUSION ADDITIVE MANUFACTURING

机译:基于粉床融合添加剂制造制造曲面Alsi10mg合金机械性能的影响

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摘要

AlSi10Mg alloy has been widely used in the aerospace and automotive industries due to its superior physical and mechanical properties. Most AlSi10Mg components possess complicated-geometrical characteristics, such as planar thin wall, lattice structure, curved surface, etc. In recent years, laser-based powder bed fusion (PBF) has emerged as a promising additive manufacturing technique to produce complex AlSi10Mg alloy parts with a high resolution. PBF of curved-surface components exhibit varied heat transfer conditions, challenging post-fabrication processes, and intricate force conditions during mechanical testing owing to their structural inflections and variable cross-sections. Thus, the mechanical properties of the as-built AlSi10Mg parts with curved surfaces should be comprehensively understood to facilitate the adoption of PBF-built curved-surface AlSi10Mg parts in practical engineering applications. This paper systematically investigated the effects of build orientation on the tensile property and microhardness of the PBF-built AlSi10Mg parts with curved surfaces. The results showed that both bending stress and stretching stress contributed to the overall tensile stress of the curved-surface tensile specimens, and the failure always occurred at the peak/valley locations of the sine curved surface due to the largest bending moment. Meanwhile, the ultimate tensile strength increased with the build orientation varying from 60° to 90°. In addition, the curvatures C_2 and C_4 presented the lowest microhardness while C_1 and C_5 showed the highest one.
机译:由于其优越的物理和机械性能,Alsi10mg合金已广泛应用于航空航天和汽车工业。大多数ALSI10MG组件具有复杂的几何特征,如平面薄壁,晶格结构,弯曲表面等。近年来,基于激光的粉末床融合(PBF)被出现为有前途的添加剂制造技术,用于生产复合Alsi10mg合金零件高分辨率。曲面组分的PBF表现出变化的传热条件,挑战制造后工艺,并且由于其结构拐点和可变的横截面而在机械测试期间挑战性能。因此,应全面地理解具有弯曲表面的AS-嵌入的Alsi10mg部件的机械性能,以便于在实际工程应用中采用PBF建造的曲面Alsi10mg零件。本文系统地研究了基于曲面的PBF构建的Alsi10mg部件的拉伸性能和显微硬度的影响。结果表明,弯曲应力和拉伸应力均导致曲面拉伸样品的总张力,并且由于最大的弯矩,因此在正弦弯曲表面的峰/谷位置处总是发生故障。同时,终极拉伸强度随着60°至90°而变化的构建方向增加。另外,曲率C_2和C_4呈现最低的微硬度,而C_1和C_5显示出最高的微硬度。

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