特殊用途钨合金的力学性能和显微组织性能比较

A. Imamović, Šaban Žuna, Ensar Mulaosmanović, Zijad Alibašić, B. Kosec
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引用次数: 1

摘要

钨属难熔金属,具有优异的耐热性和耐磨性,是最重的工程材料。由于它的特性,钨被用于特殊用途。本文以不同Ni/Co比的91W-6Ni-1.8Fe-1Co和93W-5Ni-1.6Fe-0.3Co两种特征重钨合金为例,进行了力学和显微组织研究。适当的Ni/Co比对于获得良好的微观组织和力学性能至关重要。钨相和结合剂相中W、Ni、Co和Fe元素的分布影响了钨合金的力学性能。SEM分析和力学性能分析结果表明,Ni/Co含量在一定范围内的合金具有较好的显微组织和力学性能,这对保持特种用途钨合金的质量具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of mechanical and microstructure properties of tungsten alloys for special purposes
Tungsten belongs to group of refractory metal that possess extraordinary resistance to heat and wear and it is the heaviest engineering material. Because of its properties tungsten is used for special purposes. This paper presents the results of mechanical and microstructure research on the example of the characteristic heavy tungsten alloys 91W-6Ni-1.8Fe-1Co and 93W-5Ni-1.6Fe-0.3Co with different Ni/Co ratios. The proper Ni/Co ratio is important to obtain a favorable microstructure and mechanical properties of these materials. The distribution of the W, Ni, Co and Fe elements in tungsten phase and binder phase, which can influence on mechanical properties of tungsten alloys. The SEM analysis and mechanical results show that the alloy, which has Ni/Co within the given limits,  posses a finer microstructure and better mechanical properties that is very important for the maintenance of the quality of tungsten alloys for special purposes.
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