Claims
- 1. A process for the production of coated nuclear fuel particles in a fluidized bed employing a coating gas and a carrier gas and in which the coating consists of pyrolytic carbon substantially free of radial uniformly disposed and alternating property gradients comprising holding constant the ratio of the amount of coating gas per unit of time to the coating surface area,
- wherein the ratio of the amount of coating gas per unit of time to the coating surface area is kept constant by drawing off a part of the particules from the fluidized bed during the coatings to hold the total particle surface area constant; thereby keeping the speed of growth the same during the entire coating time and also over the entire coating zone of the fluidized bed and thereby maintaining the fluctuations of the speed of growth within boundaries which boundary speeds are related each to a lower and an upper value of the Bacon Anisotropy Factor wherein said coating step is undertaken in a tube with a conical bottom equipped with nozzles for introducing the coating gas into the tube from the nozzles wherein the ratio of the working tube cross section to nozzle cross section is .ltoreq.150 and the ratio of the volume of the fluidized particles to the volume of the coating zone is .ltoreq.1.
- 2. Coated fuel particles produced by the process of claim 1 having a pyrolytic carbon coating layer substantially free of radial uniformly disposed and alternating property gradients and having a substantially constant Bacon Anisotropy Factor.
- 3. A process for the production of coated nuclear fuel particles in a fluidized bed employing a coating gas and a carrier gas and in which the coating consists of pyrolytic carbon substantially free of radial uniformly disposed and alternating property gradients comprising holding constant the ratio of the amount of coating gas per unit of time to the coating surface area,
- wherein the ratio of the amount of coating gas per unit of time to the coating surface area is kept constant by increasing the rate of feed of the coating gas with increase in coating surface area; thereby keeping the speed of growth the same during the entire coating time and also over the entire coating zone of the fluidized bed and thereby maintaining the fluctuations of the speed of growth within boundaries which boundary speeds are related each to a lower and an upper value of the Bacon Anistropy Factor wherein said coating step is undertaken in a tube with a conical bottom equipped with nozzles for introducing the coating gas into the tube from the nozzles wherein the ratio of the working tube cross section to nozzle cross section is .ltoreq.150 and the ratio of the volume of the fluidized particles to the volume of the coating zone is .ltoreq.1.
- 4. Coated fuel particles produced by the process of claim 3, having a pyrolytic carbon coating layer substantially free of radial uniformly disposed and alternating property gradients and having a substantially constant Bacon Anisotropy Factor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2036545 |
Jul 1970 |
DT |
|
Parent Case Info
This is a continuation-in-part of application Ser. No. 162,225 filed July 13, 1971 and now abandoned.
US Referenced Citations (3)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
162225 |
Jul 1971 |
|