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微納米ZrB2p/Al復合材料的原位合成機制和組織特征

In situ fabrication and microstructure of micro-nano ZrB2p/Al composites

  • 摘要: 采用Al-KBF4-K2ZrF6組元通過熔體直接反應法制備了ZrB2顆粒增強鋁基復合材料,優化的初始合成溫度范圍為850~870℃,反應時間為25~30 min.掃描電鏡觀察結果顯示:ZrB2顆粒尺寸為300~400 nm,顆粒間距200 nm左右,有團簇現象,團簇體尺寸為30~40μm.當顆粒理論體積分數為3%時,單位熔體體積內ZrB2顆粒形核數量為6.68×1017 m-3,平均線長大速率為47.3nm·s-1.分析團簇原因認為:大量細小高熔點ZrB2增加了熔體黏度,顆粒擴散阻力大,限制了顆粒遷移位移;ZrB2顆粒因密度大具有較高的沉降速率.原位反應過程分析表明:通過Al3Zr-AlB2間的分子化合及Zr-B間的原子化合得到ZrB2顆粒,是高溫穩定相.

     

    Abstract: Aluminum matrix composites reinforced by ZrB2 particles were fabricated with Al-KBF4-K2ZrF6 components via a melt direct reaction method. The suitable synthesizing temperature and reaction time are 850 to 870℃ and 25 to 30 rain, respectively. Scanning electron microscopy observations indicate that the size of the particles is 300 to 400 nm and the interval between them is about 200 nm. Some of the particles stick together, leading to clusters with a size of 30 to 40 μm. When the theoretical volume fraction of the particles is 3%, the nucleation amount is 6.68 × 1017 m-3, and the average linear growth velocity is 47.3 nm·s-1. The reason for clustering is that abundant fine and infusible ZrB2 particles increase the viscosity of the composite melt. High diffusion resistance prohibits the particles from migrating. Thus the particles have higher density and sedimentation velocity, which make them cluster easily. In situ reaction analysis shows that the particles can be obtained by molecular combination between Al3Zr and AlB2 or atomic combination between Zr and B atoms, and they are stable at high temperature.

     

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