首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced stability of the Diamond/Al composites by W coatings prepared by the magnetron sputtering method
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Enhanced stability of the Diamond/Al composites by W coatings prepared by the magnetron sputtering method

机译:通过磁控溅射法制备的W涂层增强了金刚石/ Al复合材料的稳定性

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In the present work, the effect of the W coatings prepared by the magnetron sputtering method on the stability of the thermal and mechanical properties of the Diamond/Al composites has been investigated. Due to the decomposition of the interfacial Al4C3phase, the thermal conductivity and bending strength of the Diamond/Al composites without W coating were decreased 23% and 33%, respectively. However, the variation of the normalized thermal conductivity (NTC) of the Diamond/Al composites has been changed from polynomial to linear relationships after the W-coating treatment, indicating the enhancement of the thermal conductivity and the bending strength stability. Diamond/Al composite with 45?nm?W coating demonstrated the best thermal and mechanical stability with slight decrement of 3% after 720?h heat-moisture treatment (HMT). Due to the decomposition of the Al4C3phase and the corresponding weakened interfacial bonding, more “clean {111} planes” of the diamond particles were observed in the fracture surface of Diamond/Al composites without W coating after HMT. However, no significant difference was found in the fracture surface of the Diamond/Al composites with 45?nm and thicker W coatings before and after HMT. It is suggested that the continuous, stable and well bonded interfacial structure without the formation of the Al4C3phase is the key for the improvement of the stability of the Diamond/Al composites.
机译:在本作工作中,研究了通过磁控溅射法制备的W涂层对金刚石/ Al复合材料的热量和机械性能的稳定性的效果。由于界面Al4c3相的分解,金刚石/ Al复合材料的导热率和弯曲强度分别降低了23%和33%。然而,在W涂层处理之后,金刚石/ Al复合材料的归一化导热率(NTC)的变化已经从多项式改变为线性关系,表明导热率和弯曲强度稳定性的增强。金刚石/ Al复合材料,45〜NM涂层涂层显示出720℃水分处理(HMT)后的3%略有下降的最佳热和机械稳定性。由于Al4C3相的分解和相应的弱化界面键合,在金刚石/ Al复合材料的断裂表面中观察到金刚石颗粒的更多“清洁{111}”,HMT后没有W涂层。然而,在金刚石/ Al复合材料的断裂表面中没有发现显着差异,在HMT之前和之后厚度厚度厚。建议在不形成Al4C3相的连续,稳定和良好的粘合界面结构是改善金刚石/ Al复合材料稳定性的关键。

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