Self-fluxing amorphous Nickel-based alloys obtained by different techniques. Performance and technological difficulties

D. Buzdugan, C. Codrean, Sebastian Ambruș, V. Șerban
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Abstract

Amorphous metal alloys can already be considered advanced structural materials. This structure induces specific properties such as: high mechanical resistance and hardness, high bending ductility, high elastic modulus, superior resistance to corrosion and wear or, depending on the chemical composition, exceptional magnetic properties. The family of self-fluxing alloys based on nickel has multiple applications: NiCrBSi powders are used with remarkable results in obtaining protective layers against corrosion and wear, strips and wires are successfully used as brazing alloys, etc. In this paper it is presented the research carried out for obtaining and characterizing the amorphous NiCrSiB ribbons, through the melt spinning technique and the massive products (bulks) from the same family through mold casting and additive manufacturing using the Selective Laser Melting (SLM) technique
通过不同技术获得的自熔非晶镍基合金。性能和技术难点
非晶态金属合金已被视为先进的结构材料。这种结构可产生特殊性能,例如:高机械阻力和硬度、高弯曲延展性、高弹性模量、优异的耐腐蚀性和耐磨损性,或者根据化学成分的不同,具有特殊的磁性能。以镍为基础的自熔合金系列具有多种用途:NiCrBSi 粉末在获得抗腐蚀和抗磨损保护层方面效果显著,带材和线材可成功用作钎焊合金等。本文介绍了通过熔融纺丝技术获得无定形 NiCrSiB 带并对其进行表征的研究,以及通过模具铸造和使用选择性激光熔化 (SLM) 技术进行增材制造获得同系列的大量产品(块状)的研究。
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