用于轻质应用的仙人球增强型合成发泡材料的抗泥浆侵蚀性和损伤机理研究

Q1 Engineering
Vishwas Mahesh
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引用次数: 0

摘要

海运业面临的最大问题之一是复合材料结构与污泥和海中碎屑的相互作用所造成的侵蚀。本研究根据试样旋转角度、泥浆浓度和旋转速度研究了气圈增强合成泡沫的侵蚀行为。试样采用模塑法制作。在泥浆罐侵蚀试验台进行的实验中,使用海砂颗粒作为侵蚀材料。使用田口 L9 阵列研究了特定参数对侵蚀的影响。为了分析侵蚀行为,使用了扫描电子显微镜来分析侵蚀表面的形态。当合成泡沫中的碳圈含量最低时,侵蚀程度最大,侵蚀过程可归类为半韧性性质。研究发现,碳圈含量对侵蚀行为有重大影响。随着仙人球体积百分比的增加,基体中的侵蚀破坏也在减少,这表明仙人球增强了材料的抗侵蚀能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on slurry erosion resistance and damage mechanism in cenosphere reinforced syntactic foams for light weight applications

One of the biggest problems the maritime industries confront is the erosion of composite structures brought on by interaction with sludge and sea debris. In the current study, erosion behaviour of cenosphere reinforced syntactic foam is examined in relation to specimen rotation angle, slurry concentration, and rotational speed. Moulding method was used to create the specimens. Sea sand particles were used as the erodent material in experiments carried out in a slurry pot erosion test rig. The impact of particular parameters on erosion is examined using the Taguchi L9 array. A scanning electron microscope was used to analyse the morphology of the eroded surfaces in order to analyse the erosion behaviour. Maximum erosion was seen when the Cenosphere content is least in the syntactic foams and the erosion process may be classified as semi-ductile in nature. It has been found that Cenosphere content have a major impact on erosion behaviour. The erosion damage in the matrix diminishes as the volume % of cenospheres rises, indicating that cenospheres boost the material's resistance against erosion.

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来源期刊
International Journal of Lightweight Materials and Manufacture
International Journal of Lightweight Materials and Manufacture Engineering-Industrial and Manufacturing Engineering
CiteScore
9.90
自引率
0.00%
发文量
52
审稿时长
48 days
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