Evanescent or fugacious thrust deflector
An ablative thruster includes a nozzle configured to control a flow of thrust from the satellite. The ablative thruster also includes an ablative surface inside of the nozzle, configured to deflect the thrust at a predefined angle. The ablative surface is configured to ablate-away, leaving un-deflected thrust for a majority of the burn.
1 . An apparatus, comprising:
a nozzle configured to control a flow of thrust from the apparatus; and
an ablative material inside of or attached to the nozzle, the ablative material configured to initially deflect the thrust at a predefined angle, wherein
the ablative material is configured to ablate-away, leaving un-deflected thrust for a majority of the burn,
the ablative material comprises a hole in the center and the hole is positioned axially to an un-deflected thrust direction of the nozzle,
the ablative material together with the hole are configured to act as a timing feature, increasing a flow of thrust through the hole as the hole ablates away.
2 . The apparatus of claim 1 , wherein the flow of thrust is a rocket exhaust plume, wherein initially deflecting the thrust at a predefined angle creates a torque that spins the apparatus before the hole is enlarged by ablation by the rocket exhaust plume.
3 . The apparatus of claim 1 , wherein the nozzle is manufactured by way of machining, additive manufacturing, three dimensional (3D) printing, or casting or injection molding.
4 . An apparatus, comprising:
a nozzle configured to control a flow of thrust from the apparatus; and
an ablative material inside of or attached to the nozzle, the ablative material configured to initially deflect the thrust at a predefined angle through a plurality of curved vanes, wherein
the ablative material being configured to ablate-away, leaving un-deflected thrust for a majority of the burn,
wherein the ablative material comprises a hole in the center and the hole is positioned axially to an un-deflected thrust direction of the nozzle,
the ablative material together with the hole are configured to act as a timing feature, increasing a flow of thrust through the hole as the hole ablates away.
5 . The apparatus of claim 4 , wherein the flow of thrust is a rocket exhaust plume, wherein initially deflecting the thrust at a predefined angle through a plurality of curved vanes creates a torque that spins the apparatus before the hole is enlarged by ablation by the rocket exhaust plume.
6 . The apparatus of claim 5 , wherein the nozzle is manufactured by way of machining, additive manufacturing, three dimensional (3D) printing, or casting or injection molding.