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Preparation of Graphite-Dispersed Copper Composite with Heating Graphite and Copper Particles to 2180 K

机译:用加热石墨和铜颗粒制备石墨分散的铜复合物至2180k

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It was tried in this work to prepare bulk of the graphite-dispersed copper composite. The compact which was prepared with pressing the graphite and copper particles mixture was heated in the induction furnace up to 2173 K. In the case that the composite prepared under atmospheric pressure of argon, the composite was porous. The apparent porosity increased from around 10 % to around 50 % with an increase in the initial carbon content. In the case that the composite was heated to around 1500 K in vacuum and heated to the designated temperature under atmospheric pressure of argon, the composite was dense. The apparent porosity increased from around 2 % to around 14 % with an increase in the initial carbon content. The electric resistance was the same as the lower limit of 0.025Ω and under irrespective of the preparation condition of the composite. The micro-Vickers hardness of the copper matrix of the composite prepared at 2173 K was around 0.5 MPa irrespective of the initial carbon content.
机译:在这项工作中试图制备大量石墨分散的铜复合材料。用压制石墨和铜颗粒混合物制备的压块在诱导炉中加热至2173k。在氩气大气压下制备的复合材料的情况下,复合材料是多孔的。表观孔隙率从初始碳含量增加增加到约10%至约50%。在将复合物在真空中加热至约1500k的情况下,在氩气的大气压下加热到指定温度,复合材料致密。随着初始碳含量的增加,表观孔隙率从约2%增加到约约14%。电阻与0.025Ω的下限相同,而不论复合材料的制备条件如何。无论初始碳含量如何,在2173 k下制备的复合材料的铜基质的微维氏率硬度约为0.5MPa。

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