Laminated rack assembly for powered motion of aircraft seats
A rack is made from a plurality of laminated layers. Each layer defines an alignment feature that allows all of the layers to be affixed to a base plate of an aircraft seat assembly and align the teeth of the rack to within five ten-thousandths of an inch. The rack includes a straight portion and a curved portion such that a pinion gear on the aircraft seat assembly can move the aircraft seat assembly along tracks with straight and curved portions.
1. A rack for engaging a pinion gear, the rack comprising:
a plurality of layers, each layer defining:
at least a straight portion and a curved portion; and
a plurality of teeth configured to align each of the plurality of layers, wherein:
each of the plurality of layers except for a topmost layer and a bottommost layer define weight saving portions comprising slots cut out of an interior of the layer; and
the weight saving portions of neighboring layers in the plurality of layers do not overlap.
2. The rack of claim 1 , wherein each of the plurality of layers further defines a plurality of alignment features configured to align the teeth of each layer to within five ten-thousandths of an inch.
3. The rack of claim 2 , wherein each of the plurality of alignment features comprises a connection hole configured to receive a fastener to affix the plurality of layers to a base plate.
4. The rack of claim 1 , wherein the weight saving portions are disposed a defined distance away from any of the alignment features.
5. The rack of claim 1 , wherein:
the plurality of layers comprises a first set of layers comprising a first material and a second set of layers comprising a second material: and
the first set of layers and the second set of layers are interleaved.
6. An aircraft seat assembly comprising:
a base plate defining a plurality of tracks, each comprising at least a straight portion and a curved portion;
an aircraft seat having a plurality base plate engaging elements, each configured to engage a corresponding track;
a pinion gear driven by a motor connected to the aircraft seat; and
a rack for engaging the pinion gear disposed on the base plate, the rack comprising:
a plurality of layers, each layer defining:
at least a straight portion and a curved portion conforming to the straight portion and the curved portion of the base plate tracks; and
a plurality of teeth configured to align each of the plurality of layers,
wherein:
the pinion gear is configured to drive the rack and move the aircraft seat from a first orientation corresponding to the straight portion of the rack and base plate tracks to a second orientation corresponding to the curved portion of the rack and base plate tracks;
each of the plurality of layers except for a topmost layer and a bottommost layer define weight saving portions comprising slots cut out of an interior of the layer; and
the weight saving portions of neighboring layers in the plurality of layers do not overlap.
7. The aircraft seat assembly of claim 6 , wherein each of the plurality of layers further defines a plurality of connection holes configured to receive a fastener to affix the plurality of layers to the base plate and align the teeth of each layer to within five ten-thousandths of an inch.
8. The aircraft seat assembly of claim 6 , wherein the weight saving portions are disposed a defined distance away from any of the connection holes.
9. The aircraft seat assembly of claim 6 , wherein:
the plurality of layers comprises a first set of layers comprising a first material and a second set of layers comprising a second material: and
the first set of layers and the second set of layers are interleaved.
10. The aircraft seat assembly of claim 9 , wherein:
the first set of layers comprises steel; and
the second set of layers comprises aluminum.