首页> 外文会议>2003 International Conference on Powder Metallurgy amp; Particulate Materials; Jun 8-12, 2003; Las Vegas, NV >Powder Metallurgical Processing of Ultra-Hard Materials: Properties of AIMgB_(14) Prepared by High-Energy Zoz Milling
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Powder Metallurgical Processing of Ultra-Hard Materials: Properties of AIMgB_(14) Prepared by High-Energy Zoz Milling

机译:超硬材料的粉末冶金加工:通过高能Zoz铣削制备的AIMgB_(14)的性能

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摘要

Recent interest in the relationship between microstructure and hardness has motivated numerous studies on a variety of material systems. In particular, the extreme hardness reported in composites based on AIMgB_(14) is thought to be due to a combination of high hardness in the matrix phase and a highly refined microstructure, obtained through mechanical alloying. The need to produce kilogram quantities of AIMgB_(14) prompted an assessment of the processing characteristic of the high-energy Zoz "Simoloyer" CM-01 in comparison with comparable research-scale material obtained from high-energy Spex milling. Powder was sampled from both milling devices and characterized by x-ray diffraction, SEM, and photon-correlation spectroscopy particle size analysis. Specimens were consolidated by hot pressing under vacuum or inert gas, and the microstructure of both types of compacts was characterized by optical and electron microscopy. It was found that the powder produced by the Zoz mill after 16 hours of milling was comparable to that obtained in a Spex mill after 12 hours. Powder from both processing routes was found to be sinterable, and resulted in a favorable microstructure for high hardness. It is concluded that the Zoz mill is a promising technology for large-scale processing of this new ultra-hard material.
机译:最近对微观结构和硬度之间关系的兴趣激发了对各种材料系统的大量研究。特别是,据报道,基于AIMgB_(14)的复合材料具有极高的硬度,这是由于基体相的高硬度和通过机械合金化获得的高度精细的微观结构的结合。由于需要生产千克量的AIMgB_(14),因此与从高能Spex铣削获得的可比较研究规模的材料相比,对高能Zoz“ Simoloyer” CM-01的加工特性进行了评估。从两个研磨设备中取样粉末,并通过X射线衍射,SEM和光子相关光谱粒度分析对其进行表征。通过在真空或惰性气体下热压来固结样品,并通过光学和电子显微镜对两种压坯的微观结构进行表征。发现在研磨16小时后由Zoz研磨机生产的粉末与在12小时后在Spex研磨机中获得的粉末相当。发现来自两种加工路径的粉末都是可烧结的,并且导致了有利于高硬度的良好的微观结构。结论是Zoz轧机是一种用于大规模加工这种新的超硬材料的有前途的技术。

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