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2D and 3D SIMS investigations on sintered steels

机译:烧结钢的2D和3D SIMS研究

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Powder metallurgy (PM) is a well-established method for manufacturing ferrous precision parts. Sintering is one of the important production steps and can be strongly enhanced (activated) by formation of a liquid phase during the sintering process. The liquid phase can be reached by the addition of alloying elements (e.g., copper) or sintering activators (e.g., phosphorus) and is formed by melting of eutectic phase mixtures or by incipient melting. The main investigations presented in this work are done by secondary ion mass spectrometry (SIMS): 2D and 3D elemental distribution. Additionally, impact energy and hardness measurements were performed in order to study the influence of phosphorus on mechanical properties. The concentration of P in different samples was varied between 0 and 1 weight percent (wt.%), the carbon content was consistently 0.5 wt.%. Nominal specimens were sintered at 1120 and 1250 degrees C in protective atmosphere of flowing nitrogen to determine the influence of sintering temperature. (c) 2005 Elsevier B.V. All rights reserved.
机译:粉末冶金(PM)是一种用于制造黑色精密零件的成熟方法。烧结是重要的生产步骤之一,并且可以在烧结过程中通过形成液相而大大增强(活化)。液相可以通过添加合金元素(例如铜)或烧结活化剂(例如磷)来达到,并且可以通过共晶混合物的熔融或初期熔融来形成。这项工作中提出的主要研究是通过二次离子质谱(SIMS):2D和3D元素分布进行的。另外,进行冲击能和硬度测量以研究磷对机械性能的影响。不同样品中P的浓度在0至1重量百分比(wt。%)之间变化,碳含量始终为0.5 wt。%。在流动的氮气保护气氛中,在1120和1250摄氏度下烧结名义试样,以确定烧结温度的影响。 (c)2005 Elsevier B.V.保留所有权利。

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