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On the thermal and chemical stability of diamond during processing of Al/diamond composites by liquid metal infiltration (squeeze casting)

机译:液态金属渗透(挤压铸造)加工铝/金刚石复合材料过程中金刚石的热化学稳定性

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摘要

Aiming at assessing the feasibility of Al/diamond composites, the present study deals with the thermal stability of different diamond grades under environmental conditions which are characteristic for the selected pressurized liquid melt infiltration technique (squeeze casting). The influence of both the diamond grade, i.e., synthetic and natural, mono- and polycrystalline diamond and the particle size is investigated. The critical parameters with respect to thermal degradation of diamond have been identified. It is shown that as a consequence of then-peculiar process history, "micron-grade" diamond powders are particularly susceptible to thermal degradation in the presence of oxygen and that such degradation is most effectively prevented by using hydrogen-containing atmospheres such as forming gas. It is outlined why nanosized diamond powders and polycrystalline diamond powders are not a suitable "reinforcing phase" for Al/diamond composites. Eventually, it is shown that under the conditions prescribed, the liquid metal infiltration technique is principally viable for the processing of sound Al/diamond composites.
机译:为了评估铝/金刚石复合材料的可行性,本研究研究了不同金刚石等级在环境条件下的热稳定性,这是所选加压液体熔体渗透技术(挤压铸造)的特征。研究了金刚石等级即合成和天然金刚石,单晶和多晶金刚石以及粒度的影响。已经确定了关于金刚石热降解的关键参数。结果表明,由于当时特殊的工艺历史,“微米级”金刚石粉特别容易在氧气存在下发生热降解,并且通过使用含氢气氛(例如生成气体)可以最有效地防止这种降解。概述了为什么纳米级金刚石粉和多晶金刚石粉不是铝/金刚石复合材料的合适“增强相”。最终表明,在规定的条件下,液态金属浸渗技术主要适用于加工纯铝/金刚石复合材料。

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