金属冶金:工艺变化的影响

M. Pinnel, J. Bennett
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引用次数: 22

摘要

最近在电信交换设备方面的一项开发工作是针对残余簧片、干的、密封的触点的生产。这是一种中硬磁性合金,名义上由等量的铁和钴组成,重2.7吨。在这个触点中,选择百分之钒作为簧片材料。然而,该应用要求合金具有相当特定的磁性和机械性能,并且在将Remendur持续加工成具有这些特定性能的线材方面经历了相当大的困难。为了确定这些性能对加工时间和温度以及钒含量变化的敏感性,在几个阶段对两种remendr熔体(2.5% V和3.0% V)进行了退火温度的选择。在光镜下对每一步的微观结构进行了表征,并与相应的三元平衡图相关联。结果表明,在900 ~ 950℃之间退火形成的组织对退火温度和合金成分极为敏感。对磁性和机械性能有强烈影响的微观结构可以在两相α 1 + γ区域的极限上发生变化,钒含量的变化仅为0.5 wt. %,温度范围为50°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The metallurgy of remendur: Effects of processing variations
A recent development effort in telecommunications switching apparatus has been directed toward the production of a remanent reed, dry, sealed contact (remreed). Remendur, a medium-hard magnetic alloy nominally composed of equal parts iron and cobalt and 2.7-wt. percent vanadium, was chosen as the reed material in this contact. However, the application required the alloy to possess rather specific magnetic and mechanical properties and considerable difficulty was experienced in consistently processing Remendur into wire with these specified properties. To ascertain the sensitivity of these properties to variations in processing times and temperatures, and vanadium content, two melts of Remendur (2.5-percent V and 3.0-percent V) were processed with selected alterations in annealing temperatures at several stages. Microstructures were characterized following each step by light microscopy and were correlated with the appropriate ternary equilibrium diagram. Results demonstrate that microstructures developed by anneals between 900°C and 950°C are extremely sensitive to the precise temperature of the anneal and composition of the alloy. The microstructure, which strongly influences magnetic and mechanical properties, can be varied over the limits of the two-phase α 1 + γ region by variations in vanadium content of only 0.5 wt. percent and by the small 50°C temperature range.
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