200100 ⎘
Reactor fuel elements and their assemblies; Selection of substances for use as reactor fuel elements; Assemblies of a number of fuel elements in the form of a rigid unit; Bundles of parallel pin-, rod-, or tube-shaped fuel elements Coats or envelopes for the bundles
Sub-classes:Fuel Assembly and Method for Producing Fuel Assembly
#2MANDREL-WOUND, SPLINED MONOLITHIC FUEL ASSEMBLY CORE, FUEL ASSEMBLY AND REACTOR INCORPORATING SAME, AND METHODS OF MANUFACTURE
#3CARBIDE-BASED FUEL ASSEMBLY FOR THERMAL PROPULSION APPLICATIONS
#4FUEL BUNDLE WITH TWISTED RIBBON FUEL RODLETS FOR NUCLEAR THERMAL PROPULSION APPLICATIONS, STRUCTURES FOR MANUFACTURE, AND METHODS OF MANUFACTURE
#5Channel box and fuel assembly
#6Nuclear reactor core support system providing radial and axial support
#7Additive manufacturing of complex objects using refractory matrix materials
#8Fuel assembly with outer channel including reinforced sidewall and non-reinforced sidewall
#9Carbide-based fuel assembly for thermal propulsion applications
#10OPTIMIZED NUCLEAR FUEL CORE DESIGN FOR A SMALL MODULAR REACTOR
#11Method of configuring sidewalls of an outer channel of a fuel assembly
#12Additive manufacturing of complex objects using refractory matrix materials
#13Deposition of integrated protective material into zirconium cladding for nuclear reactors by high-velocity thermal application
#14Method of making a nuclear reactor fuel duct
#15Nuclear reactor assembly having a reversible weldless connection between a casing and an element inserted therein
#16Fuel channel assembly and fuel bundle for a nuclear reactor
#17Optimized nuclear fuel core design for a small modular reactor
#18Fuel channel for a nuclear boiling water reactor
#19Channel box
#20Method of making a joint between sapphire parts
#21Deposition of integrated protective material into zirconium cladding for nuclear reactors by high-velocity thermal application
#22Optimized fuel assembly channels and methods of creating the same
#23Fuel channel for a nuclear power boiling water reactor
#24Deposition of integrated protective material into zirconium cladding for nuclear reactors by high-velocity thermal application
#25Nuclear fuel assembly design
#26Fuel assembly
#27Method and apparatus for a fret resistant fuel rod for a light water reactor (LWR) nuclear fuel bundle
#28Deposition of integrated protective material into zirconium cladding for nuclear reactors by high-velocity thermal application
#29Nuclear fuel assembly body and a nuclear fuel assembly with such a body
#30NUCLEAR FUEL ASSEMBLY AND NUCLEAR REACTOR COMPRISING AT LEAST ONE SUCH ASSEMBLY
#31Flow tripping device
#32Zirconium alloy material
#33Optimized fuel assembly channels and methods of creating the same
#34Fuel assembly
#35FUEL CHANNEL ARRANGED TO BE COMPRISED BY A FUEL ELEMENT FOR A FISSION REACTOR
#36Method of forming a silicon carbide material, and structures including the material
#37Multi-layer fuel channel and method of fabricating the same
#38FUEL ROD WITH WEAR-INHIBITING COATING
#39Expanded nuclear fuel channel
#40Precursor formulation of a silicon carbide material
#41LWR flow channel with reduced susceptibility to deformation and control blade interference under exposure to neutron radiation and corrosion fields