高熵合金作为船用耐腐蚀合金的新替代品

M. Paredes
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引用次数: 0

摘要

最近物理冶金领域的范式转变使得探索具有未知优越性能的多主元素合金(mpea)或高熵合金(HEAs)成为可能,这些合金已成为各种工程应用和工业部门的吸引力。特别是,油气行业每天都面临着克服腐蚀过程对关键基础设施(如管道网络、炼油厂、海底设备等)的有害影响的技术挑战。本工作的目的是简要回顾这种新型材料的一些关键方面,作为现有的传统合金的替代品,广泛应用于造船和能源工业,包括石油和天然气部门。本文首先概述了钢铁消费工业的未来趋势和对金属合金的日益依赖,尽管制造业和智能材料领域的新兴技术正在兴起,这些技术正在寻求替代产品。然后,简要总结了腐蚀过程和工业上常用的一些防护方法。最后,对HEAs与传统钢合金进行了简要的对比分析,强调了基于多主元素合金原理的抗腐蚀合金的最新技术进展的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Entropy Alloys as a New Alternative to Corrosion-Resistant Alloys For Marine Applications
A recent paradigm shift in physical metallurgy has enabled the exploration of multi-principal element alloys (MPEAs) or high entropy alloys (HEAs) with as-yet-unknown superior properties which have turned attractive to various engineering applications and industry sectors. In particular, the O&G industry, on daily basis, faces technical challenges to overcome the deleterious effects of corrosion processes affecting critical infrastructure such as pipeline networks, refineries, subsea equipment, etc. The purpose of this work is to briefly review some key aspects of this new type of material as an alternative to the existing conventional alloys widely used by the shipbuilding and energy industries including the O&G sector. The review begins with some generalities about the future tendency of the steel-consuming industry and the growing dependency on metallic alloys despite the rising of emerging technologies in the area of manufacturing and smart materials which seek to be substitute goods. Then, a short summary of corrosion processes and some protection methods used by the industry are discussed. Finally, a succinct comparative analysis between HEAs and conventional steel alloys is carried out by highlighting the pros and cons of these latest technological advances in corrosion-resistant alloy development based on the multi-principal element alloy principle.
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