Numerical Model Developed for Thermo-Mecahnical Analysis in AlCrFeMnNiHf0.05–Armox 500 Steel Welded Joint

Q4 Engineering
D. Bîrsan, G. Simion, I. Voiculescu, E. Scutelnicu
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引用次数: 1

Abstract

High entropy alloys are a new category of materials that contain at least four main chemical elements. One of the main advantages over the traditional alloys is the ability to maintain their properties at low or high temperatures. Researchers have investigated the possibility of welding these alloys so that they can be used in industrial applications. Good results have been obtained by welding butt joints of thin sheets, without the use of filler materials. In this paper it is investigated the possibility of welding overlap joints, with applications in the military field, of medium-thickness plates of AlCrFeMnNiHf0.05 high entropy alloy on an Armox 500 steel support plate, using filler materials available on the market. The research focuses on the numerical simulation of three welding processes commonly used in on-site repair operations, namely manual metal arc, metal inert gas, and tungsten inert gas.
alcrfemnnihf0.05 - armox500钢焊接接头热力学分析数值模型的建立
高熵合金是一类包含至少四种主要化学元素的新材料。与传统合金相比,其主要优点之一是在低温或高温下都能保持其性能。研究人员已经研究了焊接这些合金的可能性,以便将其用于工业应用。在不使用填充材料的情况下,对薄板对接接头进行焊接,取得了良好的效果。本文研究了AlCrFeMnNiHf0.05高熵合金中厚板在Armox 500钢支撑板上采用市面上可买到的填充材料焊接重叠接头的可能性,并应用于军事领域。研究重点对现场维修作业中常用的手工金属电弧、金属惰性气体和钨惰性气体三种焊接工艺进行了数值模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
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