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Effect of Titanium Addition on the Thermal Properties of Diamond/Cu-Ti Composites Fabricated by Pressureless Liquid-Phase Sintering Technique

机译:钛对无压液相烧结技术制备的金刚石/ Cu-Ti复合材料热性能的影响

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摘要

In this study, minor-addition elements such as Si, Co, Cr, W, Mo, and Ti were added to matrix to improve the wettability between the diamonds and Cu matrix. The pressureless liquid-phase sintering technique adopted in this study provides a low-cost method for producing diamond/Cu composites with high potential for industrial mass production. Thermal properties of the diamond/Cu-Ti composites fabricated by pressureless liquid-phase sintering at 1373 K with variation in Ti contents were thoroughly investigated. XRD and TEM analysis show that TiC layer formed in the interface between Cu and diamond. The composites exhibited thermal conductivity as high as 620 W/m·K for 50 vol% diamond/Cu-0.6  at % Ti composite with diamond particle size of 300 µm. This value comes up to 85% of the thermal conductivity calculated by the Hasselman and Johnson (H-J) theoretical analysis. Under these conditions, a suitable coefficient of thermal expansion of 6.9 ppm/K was obtained.
机译:在这项研究中,向基质中添加了微量元素,如Si,Co,Cr,W,Mo和Ti,以改善金刚石与Cu基质之间的润湿性。本研究采用的无压液相烧结技术为生产具有工业大规模生产潜力的金刚石/铜复合材料提供了一种低成本的方法。深入研究了在1373 K下无压液相烧结制备的金刚石/ Cu-Ti复合材料的热性能,其中Ti含量有所变化。 XRD和TEM分析表明,TiC层形成在Cu和金刚石的界面上。对于50%(体积)的金刚石/Cu-0.6%(按原子百分比计)的Ti复合材料,金刚石颗粒尺寸为300μm,该复合材料的导热系数高达620 W / m·K。该值达到Hasselman and Johnson(H-J)理论分析计算得出的热导率的85%。在这些条件下,获得了6.9 ppm / K的合适的热膨胀系数。

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