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Zrw_2o_8-containing Composites With Near-zero Coefficient Of Thermal Expansion Fabricated By Various Methods: Comparison And Optimization

机译:多种方法制备的热膨​​胀系数接近零的含Zrw_2o_8复合材料:比较与优化

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摘要

Various fabrication methods for producing ZrW_2O_8-containing composites were developed and evaluated. By adjusting the ratio among the components, those composites attained nearly zero thermal expansion. The resulting samples were measured for the coefficient of thermal expansion (CTE) and Young's modulus using a Thermomechanical Analyzer (TMA). The microstructure, final density, mechanical strength, and ability to maintain their shape in the sintering process were investigated and compared among the sintered samples fabricated by various methods. One of the fabrication methods, the in-situ reaction of ZrO_2, AbO_3 and WO_3 with mass ratio 2.61:0.03:1, offers the best attainable final density without any geometric distortion from sintering. The zero CTE of these composites allows them to be utilized as the ceramic substrate of optical fiber Bragg gratings and some components in microelectronics to eliminate thermal stresses due to the thermal gradient or transient temperature change.
机译:开发并评估了用于制备含ZrW_2O_8的复合材料的各种制造方法。通过调节组分之间的比例,这些复合材料的热膨胀几乎为零。使用热机械分析仪(TMA)测量所得样品的热膨胀系数(CTE)和杨氏模量。在通过各种方法制造的烧结样品中,研究并比较了其在烧结过程中的微观结构,最终密度,机械强度以及保持其形状的能力。一种制造方法是ZrO_2,AbO_3和WO_3的质量比为2.61:0.03:1的原位反应,可提供最佳的最终密度,而不会因烧结而产生任何几何变形。这些复合材料的零CTE使其可用作光纤布拉格光栅的陶瓷基板以及微电子学中的某些组件,以消除由于热梯度或瞬态温度变化而产生的热应力。

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