The role of phosphorus in pore rounding of sintered steels

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Cogent Engineering Pub Date : 2018-01-01 DOI:10.1080/23311916.2018.1452350
W. Khraisat, W. A. Jadayil, Nathir A. Rawashdeh, H. Borgström
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引用次数: 2

Abstract

Abstract The contribution of the surface active element Phosphorus (P) in pore rounding in sintered steels is absent in popular sintering models. Instead, these mathematical models analyze the rate of mass transport, which, according to these models, is driven by chemical potential gradients set up by the differences in the curvature of the free surfaces of the compact of contacting particles. To elucidate the effect that P has on rounding of pores in sintering models, an attempt has been made to incorporate surface curvature in Gibbs’ surface thermodynamics. Using the image analysis method, a comparative study of pore morphology of sintered Iron-Carbon-Phosphorus (Fe-C-P) has been performed to study the effect P has on pore morphology. The application of the shape factor has been used to characterize the morphology of the pores. It was found that morphological enrichment and depletion of P are related to surface stresses as well as to the influence of vacancies.
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磷在烧结钢成孔中的作用
摘要在流行的烧结模型中,表面活性元素磷(P)在烧结钢中的成孔作用是不存在的。相反,这些数学模型分析了质量传输速率,根据这些模型,质量传输速率是由接触颗粒的压块的自由表面的曲率差异所建立的化学势梯度所驱动的。为了阐明P对烧结模型中孔隙变圆的影响,试图将表面曲率纳入吉布斯表面热力学。采用图像分析方法,对烧结铁碳磷(Fe-C-P)的孔隙形态进行了对比研究,以研究P对孔隙形态的影响。形状因子的应用已被用于表征孔隙的形态。研究发现,磷的形态富集和贫化与表面应力以及空位的影响有关。
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来源期刊
Cogent Engineering
Cogent Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.00
自引率
5.30%
发文量
213
审稿时长
13 weeks
期刊介绍: One of the largest, multidisciplinary open access engineering journals of peer-reviewed research, Cogent Engineering, part of the Taylor & Francis Group, covers all areas of engineering and technology, from chemical engineering to computer science, and mechanical to materials engineering. Cogent Engineering encourages interdisciplinary research and also accepts negative results, software article, replication studies and reviews.
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