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Ceramic materials with low thermal conductivity and low coefficients of thermal expansion

机译:低导热系数和低热膨胀系数的陶瓷材料

摘要

Compositions having the general formula (Ca.sub.x Mg.sub.1-x) Zr.sub.4 (PO.sub.4).sub.6 where x is between 0.5 and 0.99 are produced by solid state and sol-gel processes. In a preferred embodiment, when x is between 0.5 and 0.8, the MgCZP materials have near-zero coefficients of thermal expansion. The MgCZPs of the present invention also show unusually low thermal conductivities, and are stable at high temperatures. Macrostructures formed from MgCZP are useful in a wide variety of high- temperature applications. In a preferred process, calcium, magnesium, and zirconium nitrate solutions have their pH adjusted to between 7 and 9 either before or after the addition of ammonium dihydrogen phosphate. After dehydration to a gel, and calcination at temperatures in excess of 850° C. for approximately 16 hours, single phase crystalline MgCZP powders with particle sizes ranging from approximately 20 nm to 50 nm result. The MgCZP powders are then sintered at temperatures ranging from 1200° C. to 1350° C. to form solid macrostructures with near-zero bulk coefficients of thermal expansion and low thermal conductivities. Porous macrostructures of the MgCZP powders of the present invention are also formed by combination with a polymeric powder and a binding agent, and sintering at high temperatures. The porosity of the resulting macrostructures can be adjusted by varying the particle size of the polymeric powder used.
机译:通过固态法和溶胶-法制备具有通式(Ca x Mg 1-x)Zr 4(PO 4)6的组合物,其中x在0.5至0.99之间。凝胶过程。在一个优选的实施方案中,当x在0.5和0.8之间时,MgCZP材料具有接近零的热膨胀系数。本发明的MgCZP还显示出异常低的热导率,并且在高温下稳定。由MgCZP形成的宏观结构可用于多种高温应用。在优选的方法中,在添加磷酸二氢铵之前或之后,将钙,镁和锆的锆溶液的pH调节至7至9。脱水成凝胶后,在超过850°C的温度下煅烧约16小时,得到粒径为约20 nm至50 nm的单相结晶MgCZP粉末。然后将MgCZP粉末在1200℃至1350℃的温度范围内烧结以形成具有接近零的热膨胀系数和低热导率的固体宏观结构。本发明的MgCZP粉末的多孔宏观结构还通过与聚合物粉末和粘合剂结合并在高温下烧结而形成。所得宏观结构的孔隙率可通过改变所用聚合物粉末的粒径来调节。

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