3d打印连续玻璃纤维增强聚乳酸(PLA)复合材料蜂窝结构疲劳行为的剩余刚度和强度分析

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES
Hussain Gharehbaghi, AmirMohammad Shojaei, Mohammad Sadeghzadeh, Amin Farrokhabadi
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引用次数: 0

摘要

本文研究了以聚乳酸(PLA)为基体,连续玻璃纤维增强的熔融长丝(FFF)复合材料蜂窝结构的疲劳性能。在55%、65%和75%的极限抗拉强度(UTS)应力水平下进行疲劳测试,以形成S-N曲线。所有试样进行循环拉伸疲劳试验,载荷比R = 0.05。此外,蜂窝的剩余刚度和剩余强度分别在其平均疲劳寿命的30%、60%和90%进行了评估。结果表明,加入连续玻璃纤维可显著提高PLA蜂窝结构在循环拉伸载荷下的疲劳寿命。利用扫描电子显微镜(SEM)对试样的断口进行了分析,揭示了与传统制造的复合材料蜂窝相似的破坏模式。该研究强调了FFF在生产具有优异疲劳性能的工程复合蜂窝方面的潜力,使其适用于各种高负载应用。研究结果还强调了了解残余力学性能对于预测这些材料在实际应用中的长期性能和可靠性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Residual stiffness and strength analysis of fatigue behavior in a 3D-printed honeycomb structure of continuous glass fiber-reinforced polylactic acid (PLA) composite
This study investigates the fatigue behavior of composite honeycomb structures fabricated using the fused filament fabrication (FFF) technique with a polylactic acid (PLA) matrix and continuous glass fiber reinforcement. Fatigue testing was conducted at stress levels of 55 %, 65 %, and 75 % of the ultimate tensile strength (UTS) to develop S-N curves. All samples were fatigue tested in cyclic tension with a load ratio of R = 0.05. Additionally, the residual stiffness and residual strength of the honeycombs were evaluated at 30 %, 60 %, and 90 % of their average fatigue life. Results indicate that incorporating continuous glass fibers significantly enhances the fatigue life of the PLA honeycomb structures under cyclic tension loading. The fracture surfaces of the specimens were analyzed using scanning electron microscopy (SEM), revealing failure modes similar to those of traditionally manufactured composite honeycombs. The study underscores the potential of FFF in producing engineered composite honeycombs with superior fatigue properties, making them suitable for various high-load applications. The findings also highlight the importance of understanding the residual mechanical properties to predict the long-term performance and reliability of these materials in practical applications.
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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