INNOVATIVE TECHNOLOGIES INTERNATIONAL, INC. — Department of Energy SBIR Phase I: 30b

INNOVATIVE TECHNOLOGIES INTERNATIONAL, INC. — SBIR Phase I award from Department of Energy.

Amount
$149,971
Agency
Department of Energy
Program / Phase
SBIR · Phase I
Topic
30b
Solicitation
DE-FOA-0001771
NAICS
Place of performance
VA
Period
2018-07-02 → 2019-04-01

Description

Past DOE SBIR programs have shown that accident-tolerant cladding like silicon carbide (SiC) fuel rod cladding can be a durable, less reactive alternative for zirconium alloy cladding for light water reactors. The higher temperature performance and increased safety potential of accident tolerant fuel rod cladding during a loss of coolant accident (LOCA) is expected to both improve the sustainability of the existing fleet of commercial light water reactors and serve as a key building block for future generation reactors.Grid-to-rod fretting is one of the leading causes of fuel rod failure in modern pressurized water reactor (PWR) fuel assemblies. SiC cladding, being significantly harder than the zirconium alloys currently used for PWR & BWR fuel rod cladding, should be less prone to fuel rod failure due to fretting if used in conjunction with metallic spacer grids. In fact, it is so hard that the opposite problem now becomes a significant concern; that the vibrating fuel rod will wear away the spring contacts and stops on the zirconium alloy intermediate spacer grids and PWR flow mixing grids, thereby compromising the fundamental positioning function of those grids. Also, attaching zirconium alloy spacer grids to the guide tubes in a PWR can be a challenge if those guide tubes are likewise converted to SiC.Although ongoing efforts have rightly placed priority on proving the accident-tolerant fuel rod cladding viable, concerns over the potential fretting and structural integrity issues associated with the accident- tolerant fuel assembly need to be addressed and resolved in parallel to ensure that implementation is not delayed. An all-SiC structure also simplifies the assembly process for PWR fuel assemblies.The purpose of this project is to develop the manufacturing processes required for a SiC grid assembly. 3D CAD models of a grid assembly concept will be developed. Existing processes for fabrication of SiC fuel rod cladding will be modified as needed to fabricate tubes and flat pieces for grid assemblies. A grid assembly fixture will be developed and one or more grid assemblies will be fabricated. The assemblies will then be characterized and tested. Based on the Phase I results, the processes will be refined and additional analyses and tests will be performed that include full-scale flow tests and irradiation tests.