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电子束熔炼打印的负泊松比手性结构的压缩行为

Compression Behavior of EBM Printed Auxetic Chiral Structures.

作者信息

Gunaydin Kadir, Türkmen Halit Süleyman, Airoldi Alessandro, Grasso Marco, Sala Giuseppe, Grande Antonio Mattia

机构信息

General Electric Aviation, Gebze, Kocaeli 41400, Turkey.

Aeronautics and Astronautics Faculty, Istanbul Technical University, Maslak, Istanbul 34467, Turkey.

出版信息

Materials (Basel). 2022 Feb 17;15(4):1520. doi: 10.3390/ma15041520.

Abstract

In this study, the cyclic compression and crush behavior of chiral auxetic lattice structures produced from titanium alloy (Ti6Al4V) metallic powder using electron beam melting (EBM) additive manufacturing technology is investigated numerically and experimentally. For material characterization and understanding the material behavior of EBM printed parts, tensile and three-point flexural tests were conducted. Log signals produced during the EBM process were investigated to confirm the stability of process and the health of the produced parts. Furthermore, a compressive cyclic load profile was applied to the EBM printed chiral units having two different thicknesses to track their Poisson's ratios and displacement limits under large displacements in the absence of degradation, permanent deformations and failures. Chiral units were also crushed to investigate the effect of failure and deformation mechanisms on the energy absorption characteristics. Moreover, a surface roughness study was conducted due to high surface roughness of EBM printed parts, and an equation is offered to define load-carrying effective areas to prevent misleading cross-section measurements. In compliance with the equation and tensile test results, a constitutive equation was formed and used after a selection and calibration process to verify the numerical model for optimum topology design and mechanical performance forecasting using a non-linear computational model with failure analysis. As a result, the cyclic compression and crush numerical analyses of EBM printed Ti6Al4V chiral cells were validated with the experimental results. It was shown that the constitutive equation of EBM printed as-built parts was extracted accurately considering the build orientation and surface roughness profile. Besides, the cyclic compressive and crush behavior of chiral units were investigated. The regions of the chiral units prone to prematurely fail under crush loads were determined, and deformation modes were investigated to increase the energy absorption abilities.

摘要

在本研究中,采用电子束熔化(EBM)增材制造技术,对由钛合金(Ti6Al4V)金属粉末制成的手性负泊松比晶格结构的循环压缩和挤压行为进行了数值和实验研究。为了进行材料表征并了解EBM打印零件的材料行为,进行了拉伸和三点弯曲试验。对EBM过程中产生的日志信号进行了研究,以确认过程的稳定性和所生产零件的质量。此外,对具有两种不同厚度的EBM打印手性单元施加了压缩循环载荷曲线,以跟踪它们在大位移下的泊松比和位移极限,且不存在降解、永久变形和失效。对手性单元进行挤压,以研究失效和变形机制对能量吸收特性的影响。此外,由于EBM打印零件的表面粗糙度较高,进行了表面粗糙度研究,并提供了一个方程来定义承载有效面积,以防止横截面测量产生误导。根据该方程和拉伸试验结果,在经过选择和校准过程后,形成并使用了本构方程,以验证用于优化拓扑设计和机械性能预测的非线性计算模型(带有失效分析)的数值模型。结果,EBM打印的Ti6Al4V手性单元的循环压缩和挤压数值分析与实验结果得到了验证。结果表明,考虑到构建方向和表面粗糙度轮廓,准确提取了EBM打印的成型零件的本构方程。此外,对手性单元的循环压缩和挤压行为进行了研究。确定了手性单元在挤压载荷下容易过早失效的区域,并研究了变形模式以提高能量吸收能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bf0/8879299/853f098db527/materials-15-01520-g001.jpg

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