残余应力对增材制造中三重周期性最小表面晶格结构机械性能的影响

IF 3.1 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
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引用次数: 0

摘要

三周期极小表面(TPMS)晶格结构由于其特殊的多孔结构,具有光滑的连续表面和高比表面积,因此具有承载能力强、能量吸收率高和疲劳性能好等优良特性。增材制造(AM)过程中产生的残余应力会对 TPMS 结构的机械性能产生重大影响。本文通过热-机械耦合模型研究了四种典型 TPMS 结构的 AM 工艺。分析了残余应力产生的机理,并提出了减少残余应力的优化制备工艺方案。此外,还研究了不同类型、体积分数和压缩方向的残余应力对 TPMS 结构机械性能的影响。结果表明,在激光功率恒定的情况下,扫描速度和舱口间距对残余应力的影响不大,但应根据结构的特性调整沉积厚度。残余应力会降低弹性模量和屈服强度,但对塑性行为没有明显影响。重要的是,在所研究的四种类型中,残余应力对 I-WP 型的机械性能影响最大,而且随着体积分数的增加,这种影响更加明显。此外,残余应力对 TPMS 结构机械性能的影响取决于压缩方向。我们的研究结果让人们全面了解了残余应力的分布及其对 TPMS 结构力学性能的影响,为 TPMS 结构在工程应用中的合理设计和优化提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of residual stress on mechanical properties of Triply periodic minimal surface lattice structures in Additive manufacturing

Effect of residual stress on mechanical properties of Triply periodic minimal surface lattice structures in Additive manufacturing

Due to its special porous structure with smooth continuous surface and high specific surface area, the triply periodic minimal surface (TPMS) lattice structure exhibits excellent properties such as strong bearing capacity, high energy absorption rate and good fatigue performance. The residual stresses generated during the additive manufacturing (AM) process can have a significant impact on the mechanical properties of the TPMS structure. In this paper, the AM process of four typical TPMS structures are investigated by the thermal–mechanical coupling model. The mechanism of residual stress generation is analyzed, and an optimized preparation process scheme is proposed to reduce the residual stress. Furthermore, the effects of residual stresses on the mechanical properties of TPMS structures are investigated for different types, volume fractions and compression directions. Results show that the influences of scanning speed and hatch spacing on the residual stress are not significant with constant laser power, but the deposition thickness should be adjusted according to the characteristics of the structure. The residual stress will reduce the elastic modulus and yield strength, while no obvious effect on the plastic behavior is observed. Importantly, the residual stress has the greatest influence on the mechanical properties of I-WP-type among the four investigated types, which becomes more pronounced with the increase of volume fraction. Moreover, the influence of residual stress on the mechanical properties of TPMS structures depends on the compression direction. Our results give a comprehensive understanding of the residual stress distribution and impact on the mechanical properties of TPMS structures, providing guidance to the rational design and optimization of TPMS structures in engineering applications.

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来源期刊
Computational Materials Science
Computational Materials Science 工程技术-材料科学:综合
CiteScore
6.50
自引率
6.10%
发文量
665
审稿时长
26 days
期刊介绍: The goal of Computational Materials Science is to report on results that provide new or unique insights into, or significantly expand our understanding of, the properties of materials or phenomena associated with their design, synthesis, processing, characterization, and utilization. To be relevant to the journal, the results should be applied or applicable to specific material systems that are discussed within the submission.
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