Enhancing the tribological performance of polymeric laminated composite materials by adopting the functionally graded materials technique

IF 4.4 3区 工程技术 Q1 ENGINEERING, CIVIL
Mostafa A. A. Nowier, Amr A. Abd-Elhady, Hossam El-Din M. Sallam, Mahmoud Atta
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引用次数: 0

Abstract

The concept of functionally graded materials was adopted to experimentally enhance the wear resistance and hardness of the traditional laminated composite materials made of long glass fibers and epoxy resin in this work. The laminated composite structure consisted of twelve layers. The redistribution of fibers through the width of the specimens produces three distinct functionally graded patterns: linear, non-linear, and stepwise. A Shore-D hardness tester was used to get the hardness of each pattern, while their wear and friction coefficients were measured through a Pin-On-Disc tester according to ASTM standards for applied load varied from 10 to 40 N and sliding speed ranged from 0.2 to 0.8 m/s. The study also considered the effects of fiber orientation relative to the sliding direction, i.e., parallel, anti-parallel, and normal. The worn surfaces of the composite were inspected using an optical microscopy microscope, X-ray diffraction analysis, and scanning electron microscope. The results indicated that the wear rate, friction coefficient, and temperature of a functionally graded composite are influenced by several factors, including sliding speed, applied load, sliding distance, and fiber orientation. The composite demonstrated superior wear performance in the normal orientation compared to parallel and anti-parallel ones. The linear patterns improved the wear resistance rate and coefficient of friction of conventional composites with an average of 15% and 3%, respectively, in the normal orientation in all manners of applied forces and sliding velocities. Meanwhile, the stepwise patterns enhanced both of them by up to 25% and 8% in parallel and anti-parallel orientations for the same cases.

采用功能梯度材料技术提高聚合物层合复合材料的摩擦学性能
本文采用功能梯度材料的概念,对传统的长玻璃纤维与环氧树脂复合层合材料的耐磨性和硬度进行了实验提高。层压复合材料结构由12层组成。纤维的再分配通过试样的宽度产生三种不同的功能梯度模式:线性,非线性和逐步。使用Shore-D硬度计测量每种图案的硬度,同时根据ASTM标准通过Pin-On-Disc测试仪测量其磨损和摩擦系数,施加载荷范围为10至40 N,滑动速度范围为0.2至0.8 m/s。研究还考虑了纤维取向相对于滑动方向的影响,即平行、反平行和法线。利用光学显微镜、x射线衍射分析和扫描电镜对复合材料的磨损表面进行了观察。结果表明:复合材料的磨损率、摩擦系数和温度受滑动速度、外加载荷、滑动距离和纤维取向等因素的影响;与平行和反平行复合材料相比,该复合材料在正向方向上表现出优越的磨损性能。线性模式提高了常规复合材料的耐磨率和摩擦系数,在所有的外力和滑动速度下,平均分别提高了15%和3%。与此同时,在相同的情况下,分步模式在平行和反平行方向上分别提高了25%和8%。
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来源期刊
Archives of Civil and Mechanical Engineering
Archives of Civil and Mechanical Engineering 工程技术-材料科学:综合
CiteScore
6.80
自引率
9.10%
发文量
201
审稿时长
4 months
期刊介绍: Archives of Civil and Mechanical Engineering (ACME) publishes both theoretical and experimental original research articles which explore or exploit new ideas and techniques in three main areas: structural engineering, mechanics of materials and materials science. The aim of the journal is to advance science related to structural engineering focusing on structures, machines and mechanical systems. The journal also promotes advancement in the area of mechanics of materials, by publishing most recent findings in elasticity, plasticity, rheology, fatigue and fracture mechanics. The third area the journal is concentrating on is materials science, with emphasis on metals, composites, etc., their structures and properties as well as methods of evaluation. In addition to research papers, the Editorial Board welcomes state-of-the-art reviews on specialized topics. All such articles have to be sent to the Editor-in-Chief before submission for pre-submission review process. Only articles approved by the Editor-in-Chief in pre-submission process can be submitted to the journal for further processing. Approval in pre-submission stage doesn''t guarantee acceptance for publication as all papers are subject to a regular referee procedure.
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