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Synthesis, characterization, and densification of Al2-xScx(WO4)3 ceramics for low-expansion infrared-transparent windows

机译:用于低膨胀红外透明窗口的AL2-XSCX(WO4)3陶瓷的合成,表征和致密化

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Materials and Systems Research, Inc. is developing a material with a low coefficient of thermal expansion (CTE) that could be used in an infrared-transparent window. The material is derived from a solid solution of Al2(WO4)3, which has positive thermal expansion, and Sc2(WO4)3 with a negative thermal expansion. An optimum composition of Al 0.5 Sc1.5(WO4)3 was identified by synthesizing solid solutions, Al2-xScx(WO4)3, by a solid-state route with compositions ranging from x = 0 to 2.0. A single orthorhombic phase was obtained at all compositions. A composition corresponding to x = 1.5 had a low CTE value of -0.15 x 10-6/oC in the temperature range, 25-700C. A low temperature solution combustion process was developed for this optimum composition resulting in a single phase powder with a surface area of ~ 14 m2/g and average particle size (as determined from surface area) of 91 nm. Preliminary densification experiments via dry uniaxial pressing and pressureless sintering at 1100°C for 2 hours resulted in a sintered compact 97.5% in density and submicron grain size.
机译:材料和系统研究,Inc。正在开发具有低热膨胀系数(CTE)的材料,其可用于红外透明窗口。该材料衍生自Al 2(WO4)3的固溶体,其具有阳性热膨胀,以及具有负热膨胀的SC2(WO4)3。通过合成固态溶液,通过与X = 0至2.0的组合物合成固态途径,通过合成固态途径来鉴定Al 0.5SC1.5(WO4)3的最佳组合物。在所有组合物中获得单个正交相位。对应于X = 1.5的组合物的低CTE值为-0.15×10-6 / oc,温度范围为25-700℃。低温溶液燃烧方法是为得到具有91纳米的-14 2 / g的表面积和平均粒径(如从表面积测定)的单相粉末该最佳组合物显影。通过干燥单轴压制和无压烧结在1100℃下的初步致密化实验2小时,导致密度和亚微米粒度的烧结紧凑97.5%。

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