Comparison in mechanical properties of zirconium titanate (ZrTiO4) synthetized by alternative routes and sintered by microwave (MW)

René Miguel Guillén Pineda, María Amparo Borrell Tomás, M. Moya, Felipe Laureano Peñaranda Foix, R. Moreno
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引用次数: 1

Abstract

At present, ZrTiO4 nanopowders are used as a dielectric in the electroceramic field, applications of catalysis, microwave telecommunications devices, pigments, composites, etc. One of the most interesting applications is the potential as structural material and similar applications that require a high thermal resistance. However, all the properties of zirconium titanate are still a subject of interest for the industrial field.12   There are several routes of synthesis of ZrTiO4; among them is the sol-gel method and lyophilization. These methods have been used to make powders or small pieces of zirconium titanate. However, structural applications require materials in large quantities, so it is necessary to identify the differences between the methods of synthesizing and allowing the preparation of powders suitable for the generation of green materials for subsequent sintering.3   To develop a new generation of nanomaterials with microstructural differences it is necessary to innovate in the sintering process. Years ago, the use of conventional oven for sintering material was the usual procedure. Nowadays, non-conventional methods as Microwave sintering (MW) are a bright way to produce high dense materials, using heating rates in reduce dwell times and lower consumption using 70%-80% less energy. 4   This reactive sintering technique achieves excellent mechanical properties, homogeneous microstructure employing lower sintering temperatures. All these energy and economic advantages generate a new vision for the future on ceramic materials and their industrial production. The main objective of this study is to make a comparison of the mechanical properties of the materials synthesized by sol-gel method and lyophilization and sintered by microwaves.
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目前,ZrTiO4纳米粉体作为介质在电陶瓷领域、催化、微波通信器件、颜料、复合材料等方面的应用。最有趣的应用之一是作为结构材料和类似的应用,需要高热阻的潜力。然而,钛酸锆的所有性质仍然是工业领域感兴趣的课题ZrTiO4的合成方法有几种;其中有溶胶-凝胶法和冻干法。这些方法已被用于制造钛酸锆粉末或小块。然而,结构应用需要大量的材料,因此有必要识别合成方法的差异,并允许制备适合后续烧结绿色材料生成的粉末为了开发具有微观结构差异的新一代纳米材料,必须在烧结工艺上进行创新。多年前,使用传统的烘箱烧结材料是通常的程序。如今,微波烧结(MW)等非常规方法是一种生产高密度材料的好方法,它使用加热速率,减少停留时间,降低能耗,节省70%-80%的能源。这种反应烧结技术在较低的烧结温度下获得了优异的力学性能和均匀的微观结构。所有这些能源和经济优势为陶瓷材料及其工业生产的未来带来了新的愿景。本研究的主要目的是比较溶胶-凝胶法合成的材料和冻干微波烧结的材料的力学性能。
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