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Novel calcium hexaluminate/spinel-alumina composites with graded microstructures and mechanical properties

机译:具有梯度微结构和力学性能的新型六铝酸钙/尖晶石-氧化铝复合材料

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Calcium hexaluminate (CA6) was incorporated into the matrix of magnesio aluminate spinel-alumina (MA-A) via infiltration of a porous preform fabricated from α-Al2O3 and MgO powders with a saturated calcium acetate solution and subsequent firing, forming CA6/(MA-A) functionally composites with graded fracture toughness. Actually, the porous preform was partially and perpendicularly immersed (1/4 of its length) in the solution. Owing to the capillary action, the calcium acetate solution was absorbed into the porous preform, and the different absorption distance led to the graded solution concentration in the height direction of the porous preform. The in-situ formation of CA6 conferred graded microstructures, as well as improved mechanical properties on the resultant composites. The CA6 content decreased gradually along the solution absorption direction, i.e. , from one end [CA6/(MA-A) region] immersed in solution to the other end [MA-A region], reducing evidently the formation of layered structure along the direction, while increasing gradually the formation of spherical alumina particles. The CA6/(MA-A) region had a better toughness that could prevent the crack propagation and improve the spalling resistance. Meanwhile, the MA-A region could provide structural support, because of the higher Vickers hardness and density.
机译:通过渗入由α-Al 2 O <制成的多孔预成型坯,将六铝酸钙(CA 6 )掺入镁铝尖晶石-氧化铝(MA-A)的基质中sub> 3 和MgO粉末与饱和醋酸钙溶液混合,然后烧制,形成具有分级断裂韧性的CA 6 /(MA-A)功能复合材料。实际上,多孔预成型件已部分垂直浸入(长度的1/4)在溶液中。由于毛细作用,乙酸钙溶液被吸收到多孔预制品中,并且不同的吸收距离导致在多孔预制品的高度方向上梯度溶液浓度。 CA 6 的原位形成赋予了渐变的微观结构,并改善了所得复合材料的机械性能。 CA 6 的含量沿溶液吸收方向逐渐降低,即从浸入溶液中的一端[CA 6 /(MA-A)区域]到另一端[ MA-A区域],沿方向明显减少了层状结构的形成,同时逐渐增加了球形氧化铝颗粒的形成。 CA 6 /(MA-A)区域具有较好的韧性,可以防止裂纹扩展并提高抗剥落性。同时,由于较高的维氏硬度和密度,MA-A区可以提供结构支撑。

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