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The fibre/matrix interface and its influence on mechanical and physical properties of Cu-MMC

机译:纤维/基体界面及其对Cu-MMC力学和物理性能的影响

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摘要

Fibre or wire reinforced copper or copper alloys (Cu-MMCs) have been developed as a high temperature heat sink material in the scheme of the integrated European project "Extremat". The Cu-MMC of interest for application e.g. in fusion reactors should be able to operate at 550 ℃ and posses a thermal conductivity of at least 200W/m/K. Properties of the developed Cu-MMCs with the SCS-6 SiC-fibres and W-wires in a matrix of pure Cu or CuCrZr are discussed. W-wire reinforced CuCrZr is selected as a candidate material for application in the fusion reactor with the highest thermal loadings, i.e. in the divertor. A divertor mockup is produced which will be tested under a high heat flux of up to 20 MW/m~2.
机译:在欧洲综合项目“ Extremat”的计划中,已开发出纤维或金属丝增强的铜或铜合金(Cu-MMC)作为高温散热器材料。应用中感兴趣的Cu-MMC在聚变反应堆中,应能在550℃的温度下运行,并具有至少200W / m / K的导热率。讨论了在纯Cu或CuCrZr基质中具有SCS-6 SiC纤维和W线的已开发Cu-MMC的性能。选择W线增强的CuCrZr作为候选材料,可用于热负荷最高的聚变反应堆中,即在分流器中。产生了一个分流器样机,将在高达20 MW / m〜2的高热通量下进行测试。

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