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Improving Densification of Zirconium Tungstate with Nano Tungsten Trioxide and Sintering Aids

机译:用纳米钨三氧化锆和烧结辅助液改善钨酸锆的致密化

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Because of the highly negative thermal expansion coefficient, zirconium tungstate (ZT) offers a unique opportunity in engineering applications. However, processing of ZT has not been fully perfected to yield a near thoeretical density. Thus, ZT has relatively a weak strength, which prevented its unique property to be fully utilized in applications. This study investigates the processing methods to improve the packing and subsequent final densities - thus improving the mechanical strength. These methods include (1) use of a wide variety of powders with different size, (2) use of nano-powders and (3) use of sintering aids. Under the same compaction and sintering condition, a variety of powder mixtures were produced, whose initial packing density and final sintered density were measured and compared in order to determine the optimal combination. The elastic modulus of each sample was also tested. By adding nanopowders, the sintered density of zirconium tungstate can be enhanced by 5%. Furthermore, with the sintering aids, the density can be improved by additional 5%. The optimal amount of nanopowders and sintering aids were determined to improve the final density and strength.
机译:由于热膨胀系数高,钨酸锆(ZT)在工程应用中提供了独特的机会。然而,ZT的加工尚未完全完善以产生近的致致致致其密度。因此,ZT具有相对较弱的强度,防止其独特的性质在应用中充分利用。本研究研究了改善包装和随后的最终密度的加工方法 - 从而提高了机械强度。这些方法包括(1)使用具有不同尺寸的多种粉末,(2)使用纳米粉末和(3)使用烧结助剂。在相同的压实和烧结状态下,产生各种粉末混合物,其初始填充密度和最终烧结密度进行了测量并进行比较,以确定最佳组合。还测试了每个样品的弹性模量。通过加入纳米粉末,锆钨酸锆的烧结密度可以增强5%。此外,通过烧结助剂,可以通过额外5%提高密度。确定纳米粉末和烧结助剂的最佳量以提高最终密度和强度。

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