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Mechanically, Thermally, and Chemically Robust High-Temperature Ceramic Composites

Sector: Chemical (Industrial) • Location: West Lafayette, Indiana, United States of America

Source: Department of Energy (DOE)

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The purpose of this project is to increase the thermal-to-electrical conversion efficiency of concentrating solar power systems by developing new mechanically robust, thermally conductive, and thermally cyclable ceramic composites used to make chloride salt heat exchangers and piping. Currently, no cost-effective solution exists for either of these components at high temperatures. These composites

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The project “Mechanically, Thermally, and Chemically Robust High-Temperature Ceramic Composites” is an infrastructure initiative in the Chemical (Industrial) sector, located in West Lafayette, Indiana, United States of America. Taiyo aggregates data on it from Department of Energy (DOE).

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Description

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The purpose of this project is to increase the thermal-to-electrical conversion efficiency of concentrating solar power systems by developing new mechanically robust, thermally conductive, and thermally cyclable ceramic composites used to make chloride salt heat exchangers and piping. Currently, no cost-effective solution exists for either of these components at high temperatures. These composites will be stiffer and stronger than nickel-based superalloys at 550 to 750 Celsius and also resistant to corrosion by supercritical carbon dioxide air, and heat transfer and storage fluids, such as molten chlorides. The team will also test the manufacturability of these robust ceramic composites in complex shapes via scalable, low-cost forming and thermal treatments.

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