一种用于亚硝基渗碳工艺的新型酰胺基无污染固体粉状介质的活性改性

IF 1 4区 工程技术 Q4 ENGINEERING, MECHANICAL International Journal of Surface Science and Engineering Pub Date : 2020-12-23 DOI:10.1504/ijsurfse.2020.10034488
M. Cojocaru, M. Branzei, M. Ion, L. Drugặ
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引用次数: 0

摘要

碳酰胺(工业级尿素)经常被用作铁素体或奥氏体氮碳共渗工艺所用介质中的高效活性成分,并且在各种温度值范围内使用,从实现铁素体氮碳共熔工艺所需的590°C以下到奥氏体氮碳碳共渗过程所需的800°C以上。脲的活性产生了一层特别强烈的生长动力学。本文研究了尿素在550~950°C的温度范围内提供氮和碳的能力。得出的结论是,该过程随温度而变化,对于820°C下固体粉末介质(35%尿素、50%碳、10%硫和5%氯化铵)的组成,碳势水平高于氮势水平。
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Activity modification of a new type of carbamide-based non-polluting solid powdery medium used in the sulphonitrocarburising process
Carbamide (technical grade urea) is frequently used as a highly efficient active component in the mediums used for ferritic or austenitic nitrocarburising processes, and across a wide range of temperature values, ranging from values below 590°C required for achieving the ferritic nitrocarburising process, to values above 800°C required for the austenitic nitrocarburising process. The carbamide activity generates a particularly intense layer of growth kinetics. This paper studies the ability of carbamide to supply nitrogen and carbon, in the temperature range 550-950°C. It was concluded that this process varies by temperature, and for a composition of the solid powdery medium (35% carbamide, 50% carbon, 10% sulphur and 5% ammonium chloride) at 820°C the carbon potential level is higher compared to the nitrogen one.
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来源期刊
CiteScore
1.60
自引率
25.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: IJSurfSE publishes refereed quality papers in the broad field of surface science and engineering including tribology, but with a special emphasis on the research and development in friction, wear, coatings and surface modification processes such as surface treatment, cladding, machining, polishing and grinding, across multiple scales from nanoscopic to macroscopic dimensions. High-integrity and high-performance surfaces of components have become a central research area in the professional community whose aim is to develop highly reliable ultra-precision devices.
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