Hardness and corrosion behaviour of stir cast LM26 Al/sugar palm fibre ash composites

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Multidiscipline Modeling in Materials and Structures Pub Date : 2023-05-23 DOI:10.1108/mmms-10-2022-0219
I. Aliyu, S. M. Sapuan, E. S. Zainudin, M. Zuhri, Y. Ridwan
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Abstract

PurposeThe conflicting results on the corrosion characteristics of aluminium matrix composites reinforced with agrarian waste have stimulated an investigation on the hardness and corrosion rate of sugar palm fibre ash (SPFA) reinforced LM26 Al/alloy composite by varying the SPFA from 0 to 10 wt% in an interval of 2 wt%. This paper aims to discuss the aforementioned issue.Design/methodology/approachThe composites were produced via stir-casting and the hardness was determined using a Vickers hardness testing machine, corrosion rate was examined through the weight loss method by immersion in 0.5, 1.0 and 1.5 M hydrochloric acid (HCl) at temperatures of 303, 318, and 333 K for the maximum duration of 120 h. The morphological study was conducted using a scanning electron microscope (SEM) on the samples before and after immersion in HCl.FindingsThe incorporation of SPFA improved the hardness of the alloy from 58.22 to 93.62 VH after 10 wt% addition. The corrosion rate increases with increased content of SPFA, the concentration of HCl and temperature. The least corrosion rate of 0.0272 mpy was observed for the LM26 Al alloy in 0.5 M after 24 h while the highest corrosion rate of 0.8511 mpy was recorded for LM26 Al/10 wt% SPFA in 1.5 M HCl acid after 120 h. The SEM image of corroded samples revealed an increased number of pits with increased SPFA content.Research limitations/implicationsThe work is limited to SPFA up to 10 wt% as reinforcement in LM26 Al alloy, the use of HCl as corrosion medium, temperatures in the range of 303–333 K, and a weight loss method were used to evaluate the corrosion rate.Originality/valueThe corrosion rate was determined for LM26 Al/SPFA composites with various amounts of SPFA in 0.5, 1.0 and 1.5 M HCl at 303, 318 and 333 K and compared with the matrix alloy.
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搅拌铸造LM26铝/糖棕榈纤维灰复合材料的硬度和腐蚀行为
目的通过研究糖棕榈纤维灰(SPFA)增强LM26铝/合金复合材料的硬度和腐蚀速率,在2 wt%的范围内改变SPFA从0 ~ 10 wt%。本文旨在对上述问题进行探讨。设计/方法/方法采用搅拌铸造法制备复合材料,采用维氏硬度试验机测定复合材料的硬度,通过失重法测定复合材料在0.5、1.0和1.5 M盐酸(HCl)中分别在303、318和333 K温度下浸泡120 h的腐蚀速率。通过扫描电子显微镜(SEM)观察复合材料在HCl浸泡前后的形貌。结果SPFA的加入使合金的硬度从58.22提高到93.62 VH(添加量为10 wt%)。腐蚀速率随SPFA含量、HCl浓度和温度的增加而增加。在1.5 M盐酸中,LM26 Al/10 wt% SPFA在24 h后0.5 M的腐蚀速率最小,为0.0272 mpy,而在120 h后,LM26 Al/10 wt% SPFA的腐蚀速率最高,为0.8511 mpy。研究局限/意义:本研究仅限于在LM26铝合金中添加高达10 wt%的SPFA作为增强剂,使用HCl作为腐蚀介质,温度范围为303-333 K,并使用失重法评估腐蚀速率。测定了不同SPFA含量的LM26 Al/SPFA复合材料在HCl浓度为0.5、1.0和1.5 M,温度为303、318和333 K时的腐蚀速率,并与基体合金进行了比较。
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来源期刊
CiteScore
3.70
自引率
5.00%
发文量
60
期刊介绍: Multidiscipline Modeling in Materials and Structures is published by Emerald Group Publishing Limited from 2010
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