Suppr超能文献

L型混合铝/玻璃纤维增强塑料对轴向和横向特性影响的实验研究

Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic.

作者信息

Nugraha Ariyana Dwiputra, Alandro Daffa, Kusumawanto Arif, Junianto Endro, Perwara Budi, Kumar Vishnu Vijay, Santos Gil Nonato C, Sentanuhady Jayan, Norcahyo Rachmadi, Muflikhun Muhammad Akhsin

机构信息

PLN Research Institute, Jl. Duren Tiga Raya No.102, RT.8/RW.1, Duren Tiga, Kec. Pancoran, Kota Jakarta Selatan, Daerah Khusus Ibukota Jakarta 12760, Indonesia.

Mechanical and Industrial Engineering Department, Gadjah Mada University, Jalan Grafika No. 2, Yogyakarta 55281, Indonesia.

出版信息

Polymers (Basel). 2023 Feb 24;15(5):1137. doi: 10.3390/polym15051137.

Abstract

The current study investigates the effect of a hybrid L-profile aluminium/glass-fiber-reinforced polymer stacking sequence under axial and lateral compression loads. Four stacking sequences are studied: aluminium (A)-glass-fiber (GF)-AGF, GFA, GFAGF, and AGFA. In the axial compression test, the aluminium/GFRP hybrid tends to crush in a more progressive and stable failure than the net aluminium and net GFRP specimens, with a relatively more stable load-carrying capacity throughout the experimental tests. The AGF stacking sequence was second, with an energy absorption of 145.31 kJ, following AGFA at 157.19 kJ. The load-carrying capacity of AGFA was the highest, with an average peak crushing force of 24.59 kN. The second-highest peak crushing force, 14.94 kN, was achieved by GFAGF. The highest amount of energy absorption, 157.19 J, was achieved by the AGFA specimen. The lateral compression test showed a significant increase in load-carrying and energy absorption capacity in the aluminium/GFRP hybrid specimens compared to the net GFRP specimens. AGF had the highest energy absorption with 10.41 J, followed by AGFA with 9.49 J. AGF also had the highest peak crushing force with 2.98 kN, followed by AGFA with 2.16 kN. The most crashworthy stacking sequence among the four variations tested in this experimental research was the AGF stacking sequence because of its great load-carrying capacity, energy absorption, and specific energy absorption in axial and lateral loading. The study provides greater insight into the failure of hybrid composite laminates under lateral and axial compression.

摘要

本研究调查了混合L型铝/玻璃纤维增强聚合物堆叠顺序在轴向和横向压缩载荷下的效果。研究了四种堆叠顺序:铝(A)-玻璃纤维(GF)-AGF、GFA、GFAGF和AGFA。在轴向压缩试验中,与纯铝和纯玻璃纤维增强塑料(GFRP)试样相比,铝/GFRP混合材料倾向于以更渐进和稳定的方式破坏,在整个试验过程中具有相对更稳定的承载能力。AGF堆叠顺序排第二,能量吸收为145.31 kJ,仅次于AGFA的157.19 kJ。AGFA的承载能力最高,平均峰值压溃力为24.59 kN。GFAGF的峰值压溃力第二高,为14.94 kN。AGFA试样的能量吸收量最高,为157.19 J。横向压缩试验表明,与纯GFRP试样相比,铝/GFRP混合试样的承载和能量吸收能力显著提高。AGF的能量吸收最高,为10.41 J,其次是AGFA的9.49 J。AGF的峰值压溃力也最高,为2.98 kN,其次是AGFA的2.16 kN。在本实验研究测试的四种变体中,最耐撞的堆叠顺序是AGF堆叠顺序,因为它在轴向和横向加载中具有很大的承载能力、能量吸收和比能量吸收。该研究为混合复合层压板在横向和轴向压缩下的破坏提供了更深入的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb40/10007158/c9072c4c3f9b/polymers-15-01137-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验