Optimization of boriding process on AISI 1015 steel using response surface methodology

Surya Raj Gopala Krishnan, Prince Muthiah, Maniraj Jaganathan
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引用次数: 0

Abstract

The goal of this study is to increase the impact toughness of the borided steel without much compromising the surface microhardness. An optimization technique known as Response Surface Methodology was employed to achieve the goal of this work. The pack borided specimens at optimized conditions were analyzed in terms of microstructure, microhardness, XRD, and Impact toughness and compared with borided specimens treated for 950°C for 180minutes. The poly-phase iron borides zone, transition zone, and base metal were all evident. In the iron borides zone, the microhardness was 1745HV, then 345HV in the transition zone, and lastly 245HV in the matrix area. The XRD technique was used to identify the growth of Fe 2 B and FeB phases. The impact toughness was 44.182 J when the specimens treated at optimized conditions.
用响应面法优化aisi1015钢渗硼工艺
本研究的目的是在不影响表面显微硬度的情况下提高渗硼钢的冲击韧性。一种被称为响应面法的优化技术被用来实现这项工作的目标。对优化条件下的包渗硼试样进行微观组织、显微硬度、XRD和冲击韧性分析,并与950℃180分钟的渗硼试样进行比较。多相铁硼化物区、过渡区和母材均明显。铁硼化物区显微硬度为1745HV,过渡区显微硬度为345HV,基体区显微硬度为245HV。采用XRD技术对fe2b和FeB相的生长进行了表征。在优化条件下,试样的冲击韧性为44.182 J。
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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