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Improvement of ZrC/Zr Coating on the Interface Combination and Physical Properties of Diamond-Copper Composites Fabricated by Spark Plasma Sintering

机译:ZrC / Zr涂层对火花等离子体烧结制备的金刚石-铜复合材料界面结合和物理性能的改进

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摘要

In this study, diamond-copper composites were prepared with ZrC/Zr-coated diamond powders by spark plasma sintering. The magnetron sputtering technique was employed to coat the diamond particles with a zirconium layer. After heat treatment, most of the zirconium reacted with the surface of diamond and was transformed into zirconium carbide. The remaining zirconium on the zirconium carbide surface formed the outer layer. Owing to the method used to produce the ZrC/Zr-coated diamond in this study, the maximum thermal conductivity (TC) of 609 W·m−1·K−1 was obtained for 60 vol. % diamond-copper composites and the corresponding coefficient of thermal expansion (CTE) reached as low as 6.75 × 10−6 K−1. The bending strength of 40 vol. % ZrC/Zr-coated diamond-copper composites reached 255.95 MPa. The thermal and mechanical properties of ZrC/Zr-coated diamond-copper composites were substantially superior to those of uncoated diamond particles. Excellent properties can be attributed to the strengthening of the interfacial combination and the decrease in the interfacial thermal resistance due to the improvement associated with the ZrC/Zr coating. Theoretical analysis was also proposed to compare the thermal conductivities and CTE of diamond-copper composites fabricated with these two kinds of diamond powders.
机译:在这项研究中,金刚石-铜复合材料由ZrC / Zr涂层金刚石粉末通过火花等离子体烧结制备。采用磁控溅射技术在金刚石颗粒上涂覆锆层。热处理后,大多数锆与金刚石表面反应并转化为碳化锆。碳化锆表面上剩余的锆形成了外层。由于采用了本研究生产ZrC / Zr涂层金刚石的方法,最大热导率(TC)为609 W·m -1 ·K -1 以60vol。%获得。 %的金刚石-铜复合材料和相应的热膨胀系数(CTE)降至6.75×10 -6 K -1 。弯曲强度为40 vol。 ZrC / Zr涂层的金刚石-铜复合材料的百分比达到255.95 MPa。 ZrC / Zr涂层的金刚石-铜复合材料的热性能和机械性能明显优于未涂层的金刚石颗粒。由于与ZrC / Zr涂层相关的改进,界面结合的增强和界面热阻的降低可归因于优异的性能。还提出了理论分析,以比较用这两种金刚石粉末制成的金刚石-铜复合材料的热导率和CTE。

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