Microstructure, wear and corrosion resistance mechanism of as-cast lightweight refractory NbMoZrTiX (X = al, V) high-entropy alloys

材料科学 微观结构 腐蚀 维氏硬度试验 高熵合金 冶金 钝化 体积分数 复合材料 图层(电子)
作者
Wenjie Chen,Xinmei Li
出处
期刊:Journal of materials research and technology [Elsevier]
卷期号:31: 1215-1228 被引量:29
标识
DOI:10.1016/j.jmrt.2024.06.170
摘要

Refractory high-entropy alloys (RHEAs) have good overall properties and potential high temperature applications, but they are not competitive in terms of light weight and wear and corrosion resistance, which severely limits the wide range of applications. In this paper, novel NbMoZrTi-X (Al, V) light refractory high entropy alloys (LRHEAs) were fabricated and their physical phase composition, microstructure, hardness, and wear and corrosion resistance were systematically investigated. The results show that NbMoZrTi LRHEA and NbMoZrTiV LRHEA are both single BCC structures, while NbMoZrTiAl LRHEA and NbMoZrTiAlV LRHEA are transformed into BCC, B2, and Zr5Al3 phase structures. The hardness increases as the volume fraction of the Zr5Al3 hard phase increases, with NbMoZrTiAl LRHEA having a maximum Vickers hardness of 811.29 HV. Room temperature dry friction tests showed that NbMoZrTiAl LRHEA had the lowest wear and coefficient of friction of 1.5 mg and 0.6713, respectively. Electrochemical tests performed in 3.5 wt% NaCl solution showed that NbMoZrTiAlV LRHEA has excellent corrosion resistance with the highest Ecorr (−0.142 V) and the lowest Icorr (2.149 × 10−7 A/cm2). Therefore, the addition of V and Al to NbMoZrTi-based LRHEA can effectively improve its wear and corrosion resistance due to the increase in hardness and dense passivation film formation. Our study provides a new strategy for designing LRHEAs with a combination of high hardness and excellent wear and corrosion resistance.
最长约 10秒,即可获得该文献文件

科研通智能强力驱动
Strongly Powered by AbleSci AI
科研通是完全免费的文献互助平台,具备全网最快的应助速度,最高的求助完成率。 对每一个文献求助,科研通都将尽心尽力,给求助人一个满意的交代。
实时播报
搜集达人应助mengzhao采纳,获得10
刚刚
科研通AI6应助太清采纳,获得10
1秒前
2秒前
标致惜天关注了科研通微信公众号
4秒前
4秒前
Deerlu完成签到,获得积分10
4秒前
星星赶路发布了新的文献求助10
4秒前
烟花应助怕大型采纳,获得10
5秒前
量子星尘发布了新的文献求助10
6秒前
mengzhao完成签到,获得积分10
7秒前
空谷新苗发布了新的文献求助10
7秒前
小蘑菇应助星辰愿采纳,获得10
8秒前
9秒前
司空博涛完成签到,获得积分10
9秒前
安然发布了新的文献求助10
9秒前
刘欢完成签到,获得积分10
10秒前
10秒前
浮游应助科研通管家采纳,获得10
10秒前
tiptip应助科研通管家采纳,获得10
10秒前
易点邦应助科研通管家采纳,获得10
10秒前
易点邦应助科研通管家采纳,获得10
10秒前
华仔应助科研通管家采纳,获得10
10秒前
科研通AI6应助科研通管家采纳,获得10
10秒前
领导范儿应助科研通管家采纳,获得100
10秒前
酷波er应助科研通管家采纳,获得10
10秒前
完美世界应助科研通管家采纳,获得10
10秒前
科研通AI6应助科研通管家采纳,获得10
10秒前
wubo完成签到,获得积分10
10秒前
10秒前
易点邦应助科研通管家采纳,获得200
10秒前
科研通AI6应助科研通管家采纳,获得10
10秒前
11秒前
桃桃好困应助科研通管家采纳,获得10
11秒前
11秒前
酷波er应助科研通管家采纳,获得30
11秒前
11秒前
ding应助科研通管家采纳,获得10
11秒前
科研通AI6应助科研通管家采纳,获得10
11秒前
11秒前
12秒前
高分求助中
(应助此贴封号)【重要!!请各用户(尤其是新用户)详细阅读】【科研通的精品贴汇总】 10000
2025-2031全球及中国金刚石触媒粉行业研究及十五五规划分析报告 6000
Real World Research, 5th Edition 680
Superabsorbent Polymers 600
Handbook of Migration, International Relations and Security in Asia 555
Between high and low : a chronology of the early Hellenistic period 500
Advanced Memory Technology: Functional Materials and Devices 500
热门求助领域 (近24小时)
化学 材料科学 生物 医学 工程类 计算机科学 有机化学 物理 生物化学 纳米技术 复合材料 内科学 化学工程 人工智能 催化作用 遗传学 数学 基因 量子力学 物理化学
热门帖子
关注 科研通微信公众号,转发送积分 5675058
求助须知:如何正确求助?哪些是违规求助? 4942863
关于积分的说明 15151208
捐赠科研通 4834311
什么是DOI,文献DOI怎么找? 2589377
邀请新用户注册赠送积分活动 1542953
关于科研通互助平台的介绍 1500969