Comparative and parametric study of aluminium honeycomb sandwich composites and GRP

IF 1.5 4区 工程技术 Q3 ENGINEERING, MARINE
Arun Rajput, Rabius Sunny Mohammed, A. Sarkar, Rururaj Pradhan
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引用次数: 1

Abstract

Sandwich composites are a special class of material because of distinctive properties such as lightweight, high damping and high energy absorbing capacity, which in turn make this material highly suitable for the shipbuilding industry. The traditionally used materials for hull construction in the shipbuilding industry are steel, Glass Reinforced Plastic (GRP) and wood which is prone to problems such as weight and strength reduction due to water absorption over a period of time. This manuscript presents a comparative study of specific energy absorption (SEA) of GRP sheets and two different aluminium honeycomb sandwich composites one of which has aluminium honeycomb core and aluminium face sheet/skin and the other has aluminium honeycomb core and GRP face sheet. Experiments are carried out on the GRP sheet and sandwich composite with aluminium honeycomb core and aluminium as face sheet using Charpy ASTM E-23 machine. The experimental results are compared with the numerical results obtained from Abaqus and are found to be in good agreement. Further, the numerical simulation has been carried out on sandwich composites and GRP sheets varying several parameters such as foil thickness of honeycomb in sandwich composites, and skin of sandwich composites (aluminium sheet and GRP). Failures have been discussed based on stress theories and the deformation patterns of sandwich composites and GRP sheets (obtained from the numerical and experimental investigation) have been compared. The maximum impulse force has also been presented by using the impulse-momentum equation. It has been found in the study that the aluminium honeycomb sandwich composites with aluminium as face sheet possess high energy absorption to mass ratio than the pure GRP sheets and the aluminium honeycomb sandwich composites with GRP sheet as skin. Further parametric study reveals that the energy absorption to mass ratio increases with increase in foil thickness in both type of honeycomb sandwich composites.
铝蜂窝夹层复合材料与玻璃钢的对比及参数化研究
夹层复合材料是一种特殊的材料,因为它具有轻质、高阻尼和高能量吸收能力等独特的性能,因此非常适合造船工业。造船业传统的船体建造材料是钢铁、玻璃钢(GRP)和木材,这些材料在一段时间内容易因吸水而产生重量和强度下降等问题。本文介绍了两种不同的铝蜂窝夹层复合材料的比能吸收(SEA)的比较研究,一种是铝蜂窝芯和铝面片/皮肤,另一种是铝蜂窝芯和GRP面片。采用Charpy ASTM E-23试验机对玻璃钢片材和铝蜂窝芯、铝为面材的夹层复合材料进行了实验研究。将实验结果与Abaqus软件的数值计算结果进行了比较,两者吻合较好。在此基础上,对夹心复合材料和玻璃钢板进行了数值模拟,并对夹心复合材料的蜂窝箔厚度、夹心复合材料(铝板和玻璃钢)的蒙皮等参数进行了数值模拟。基于应力理论讨论了夹层复合材料和玻璃钢薄板的破坏,并对其变形规律进行了比较(数值和实验研究结果)。用冲量-动量方程给出了最大冲量。研究发现,以铝为面板的铝蜂窝夹层复合材料比纯玻璃钢片和以玻璃钢片为皮的铝蜂窝夹层复合材料具有更高的吸能质量比。进一步的参数化研究表明,两种蜂窝夹层复合材料的吸能质量比均随箔厚的增加而增加。
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来源期刊
CiteScore
3.90
自引率
11.10%
发文量
77
审稿时长
>12 weeks
期刊介绍: The Journal of Engineering for the Maritime Environment is concerned with the design, production and operation of engineering artefacts for the maritime environment. The journal straddles the traditional boundaries of naval architecture, marine engineering, offshore/ocean engineering, coastal engineering and port engineering.
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