New Method of Fabrication of Fe80Cr20 Alloy: Effect of its Technique on Crystallite Size and Thermal Stability

D. Feriyanto, Supaat Zakaria
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Abstract

This paper focuses on the effect of the new method on the crystallite size and thermal stability of Fe80Cr20 alloy powder. Generally, the ball milling sample and ultrasonic technique sample have dissatisfaction result when applied at high temperature. In addition, the combination of both techniques not yet carried out. Therefore, this study aim to investigate an appropriate technique to produce smallest crystallite size in order to improve the thermal stability. The new method of mechanical alloying (mill) and ultrasonic technique (UT) were applied in order to reduce the crystallite size and improve thermal stability. The new method is called as combination treatment. This condition allows the enhancement of thermal stability of Fe80Cr20 alloy powder. In this study, mechanical alloying process was carried out by milling time of 60 hours. Then, the ultrasonic technique was performed at frequency of 35 kHz at 3, 3.5, 4, 4.5, and 5 hours. From XRD analysis, it was found that the broader peaks indicated the smaller crystallite size. It shows that the combination treatment (milled and UT) reduce the crystallite size up to 2.171 nm when mechanically alloyed for 60 hours (milled 60 h) and followed by ultrasonic treatment for 4.5 hours (UT 4.5 h). Smallest crystallite size enhance the thermal stability up to 12.7 mg which shown by TGA analysis during 1100 0C temperature operation. The combination treatment is method which is effective to fabricate Fe80Cr20 alloy powder.
制备Fe80Cr20合金的新方法:工艺对晶粒尺寸和热稳定性的影响
本文重点研究了新方法对Fe80Cr20合金粉末晶粒尺寸和热稳定性的影响。一般情况下,球磨样品和超声波技术样品在高温下应用效果不理想。此外,两种技术的结合尚未开展。因此,本研究旨在探索一种合适的工艺,以产生最小的晶体尺寸,以提高热稳定性。为了减小晶粒尺寸,提高热稳定性,采用了机械合金化和超声技术。这种新方法被称为联合治疗。该条件可提高Fe80Cr20合金粉末的热稳定性。本研究采用机械合金化工艺,铣削时间为60小时。然后,在35 kHz频率下于3,3.5,4,4.5和5小时进行超声技术。XRD分析发现,峰越宽,晶粒尺寸越小。结果表明:机械合金化60小时(铣削60小时),超声热处理4.5小时(UT 4.5小时),经铣削和UT联合处理后,晶粒尺寸减小至2.171 nm, 1100℃温度下,最小晶粒尺寸使热稳定性提高12.7 mg。复合处理是制备Fe80Cr20合金粉末的有效方法。
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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