首页> 外文会议>PRICM 7;Pacific Rim International Conference on Advanced Materials and Processing >Thermo-physical Properties of Ti-coated Diamond/AI Composites Prepared by Pressure Infiltration
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Thermo-physical Properties of Ti-coated Diamond/AI Composites Prepared by Pressure Infiltration

机译:压力渗透法制备Ti涂层金刚石/ Al复合材料的热物理性质

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Thermo-physical properties of diamond reinforced Al composites were investigated. Volume fraction of diamond particles was up to 55%. In order to improve the interfacial bonding between diamond and aluminum, diamond particles were pre-coated with titanium using molten salt method. XRD and SEM observation showed that the Ti coating on diamond consists of carbide layer and metal layer, which mainly depend on temperature and time. The influences of the Ti coating on interfacial characteristic and the thermo-physical properties of the composites were studied. The interfacial characterization and thermal diffusivity measurements indicated that Ti coated diamond was more favorable on interfacial bonding and thermal properties. Ti coating on diamond resulted in an increase of thermal conductivity of the composites, from 200 to 430 W/mK along with a coefficient of thermal expansion of 6.40 × 10~(-6)/K.
机译:研究了金刚石增强铝复合材料的热物理性能。金刚石颗粒的体积分数高达55%。为了改善金刚石与铝之间的界面结合,使用熔融盐法将金刚石颗粒预涂了钛。 XRD和SEM观察表明,金刚石上的Ti涂层由碳化物层和金属层组成,这主要取决于温度和时间。研究了Ti涂层对复合材料界面特性和热物理性能的影响。界面表征和热扩散率测量表明,Ti涂层金刚石在界面结合和热性能方面更有利。金刚石上的Ti涂层使复合材料的热导率从200 W / mK增加到430 W / mK,热膨胀系数为6.40×10〜(-6)/ K。

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