Orrù Roberto, Cao Giacomo
Dipartimento di Ingegneria Meccanica, Chimica e dei Materiali, Centro Studi sulle Reazioni Autopropaganti (CESRA), Unità di Ricerca del Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali (INSTM), Università degli Studi di Cagliari, Piazza D'Armi, Cagliari 09123, Italy.
Materials (Basel). 2013 Apr 29;6(5):1566-1583. doi: 10.3390/ma6051566.
A wider utilization of ultra high temperature ceramics (UHTC) materials strongly depends on the availability of efficient techniques for their fabrication as dense bodies. Based on recent results reported in the literature, it is possible to state that Spark Plasma Sintering (SPS) technology offers a useful contribution in this direction. Along these lines, the use of two different SPS-based processing routes for the preparation of massive UHTCs is examined in this work. One method, the so-called reactive SPS (R-SPS), consists of the synthesis and densification of the material in a single step. Alternatively, the ceramic powders are first synthesized by Self-propagating High-temperature Synthesis (SHS) and then sintered by SPS. The obtained results evidenced that R-SPS method is preferable for the preparation of dense monolithic products, while the sintering of SHS powders requires relatively milder conditions when considering binary composites. The different kinetic mechanisms involved during R-SPS of the monolithic and composite systems, i.e., combustion-like or gradual solid-diffusion, respectively, provides a possible explanation. An important role is also played by the SHS process, particularly for the preparation of composite powders, since stronger interfaces are established between the ceramic constituents formed in situ, thus favoring diffusion processes during the subsequent SPS step.
超高温陶瓷(UHTC)材料的更广泛应用在很大程度上取决于能否获得将其制成致密体的有效技术。根据文献中最近报道的结果,可以说放电等离子烧结(SPS)技术在这方面做出了有益贡献。沿着这些思路,本文研究了两种基于SPS的不同工艺路线用于制备块状UHTC。一种方法是所谓的反应性SPS(R-SPS),它包括在单个步骤中合成材料并使其致密化。另一种方法是,陶瓷粉末首先通过自蔓延高温合成(SHS)合成然后通过SPS烧结。所得结果表明,R-SPS方法更适合制备致密的整体产品,而在考虑二元复合材料时,SHS粉末的烧结需要相对温和的条件。整体和复合系统在R-SPS过程中分别涉及的不同动力学机制,即类似燃烧或逐渐的固体扩散,提供了一种可能的解释。SHS工艺也起着重要作用,特别是在制备复合粉末方面,因为原位形成陶瓷成分之间建立了更强的界面,从而有利于后续SPS步骤中的扩散过程。