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为减轻重量对新型复合多细胞板结构进行优化。

Optimization of a New Composite Multicellular Plate Structure in Order to Reduce Weight.

作者信息

Kovács György

机构信息

Faculty of Mechanical Engineering and Informatics, Institute of Manufacturing Science, University of Miskolc, H-3515 Miskolc, Hungary.

出版信息

Polymers (Basel). 2022 Jul 31;14(15):3121. doi: 10.3390/polym14153121.

Abstract

Currently, the most important structural design aims are weight reduction, corrosion resistance, high stiffness and vibration damping in several industrial applications, which can be provided by the application of advanced fiber-reinforced plastic () composites. The main research aim was to develop novel and innovative multicellular plate structures that utilize the benefits of lightweight advanced and aluminum materials, as well as to combine the advantageous characteristics of cellular plates and sandwich structures. Two new multicellular plate structures were developed for the structural element of a transport vehicle. The first structure consists of carbon-fiber-reinforced plastic () face sheets and pultruded glass-fiber-reinforced plastic () stiffeners. The second structure consists of carbon-fiber-reinforced plastic face sheets and aluminum () stiffeners. The second main goal of this research was the development of an optimization method of minimal weight for the newly developed all- structure and the structure, considering seven design constraints. The third main purpose was to confirm in a real case study that lightweight multicellular composite constructions, optimized by the flexible tolerance optimization method, provide significant weight saving (86%) compared to the all-steel structure. The added value of the research is that optimization methods were developed for the constructed new composite structures, which can be applied in applications where weight saving is the primary aim.

摘要

目前,在一些工业应用中,最重要的结构设计目标是减轻重量、耐腐蚀、高刚度和减振,而先进的纤维增强塑料(FRP)复合材料的应用可以实现这些目标。主要研究目标是开发新颖创新的多胞板结构,利用轻质先进材料和铝材料的优势,以及结合蜂窝板和夹层结构的有利特性。为运输车辆的结构部件开发了两种新型多胞板结构。第一种结构由碳纤维增强塑料(CFRP)面板和拉挤玻璃纤维增强塑料(GFRP)加强筋组成。第二种结构由碳纤维增强塑料面板和铝(Al)加强筋组成。本研究的第二个主要目标是针对新开发的全CFRP结构和Al-CFRP结构,考虑七个设计约束条件,开发一种最小重量优化方法。第三个主要目的是在一个实际案例研究中证实,通过灵活公差优化方法优化的轻质多胞复合材料结构与全钢结构相比,可显著减轻重量(86%)。该研究的附加值在于为构建的新型复合结构开发了优化方法,这些方法可应用于以减轻重量为主要目标的应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdf1/9371241/fb53c3f061ab/polymers-14-03121-g001.jpg

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